Mold
C-POLAR and NanoFlashing™ questions, with the company’s answers and the sources they come from.
Last reviewed: .
Which fungi does the Validation page list as tested?
The Validation page lists four fungi as tested: Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans.
The numbered report the company can cite for fungal spores is this. Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, tested a VOLZ PROsyntex PLUS PM1 70 filter medium against Aspergillus brasiliensis and Aspergillus niger under ISO 13629-2:2014. The Validation page names the institutions that tested the pathogens, and a report is cited here by number where it carries one. The Mold page states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. A reported result applies to the sample that was tested, under the conditions named in the report that recorded it and under its standard where the report names one.
Source: C-POLAR — Validation, https://cpolar.tech/validation/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/; Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026
- C-POLAR — Mold
Does a fungal claim distinguish spores from other fungal material?
The company's published wording is fungal spores, and the fungi tested are named.
The company names the organisms that were tested. On the Validation page the viruses are SARS-CoV-2, human coronavirus 229E, Coxsackievirus B6, bovine coronavirus, pseudo-type SARS-CoV-2, influenza A H3N2 and Phi6 bacteriophage; the bacteria are Staphylococcus aureus, Klebsiella pneumoniae, Escherichia coli, Pseudomonas aeruginosa and Enterococcus faecalis; the fungi are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” The test article, the organism, the method, the control, the conditions, the contact time, the sample and the endpoint identified in a report are the limits of what that report shows. Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, tested a VOLZ PROsyntex PLUS PM1 70 filter medium against Aspergillus brasiliensis and Aspergillus niger under ISO 13629-2:2014.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014
What test shows that captured bacteria and mould spores are not released from the filter downstream?
The company publishes no measurement of captured material coming back off a NanoFlashing™ filter into the air.
The company's position rests on the destruction of organisms held on the filter. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. The organisms were Staphylococcus aureus and Klebsiella pneumoniae under ISO 20743, and bacteriophage Phi6 under ISO 18184. Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, tested a VOLZ PROsyntex PLUS PM1 70 filter medium against Aspergillus brasiliensis and Aspergillus niger under ISO 13629-2:2014. Each is a contact test on the filter medium against an untreated control; it is not an airborne result, and it does not measure what leaves a filter in use. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The Validation page also reports measurements in four buildings where NanoFlashing™ was installed. At a public hospital in Vancouver, two identical towers were compared, one on conventional medical grade filters and one on NanoFlashing™, and bioaerosols were measured at the NanoFlashing™ supply vent; the page says these were independently measured with MicronView's 405 nm Bio-fluorescent Air Monitoring System. Each is one building over one period, and it is not a result for another building.
Source: C-POLAR — Validation, https://cpolar.tech/validation/; Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc., section 2.6; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026; Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014
- C-POLAR — Viruses
- C-POLAR — Mold
Would it remove airborne fungal fragments after a mould problem has been repaired?
C-POLAR publishes no result for fungal fragments; the fungi the Validation page lists as tested are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans.
The named air records are LMS Technologies, Report LMS#9904, 28 April 2025, a single-pass fractional efficiency test on a 24 × 24 × 2 in. pleated air filter in an ASHRAE 52.2 test duct, in accordance with standard LMS aerosol test procedures, and LMS Technologies, Report 6847, 5 November 2024, ASHRAE 52.2-2017 with Appendix J, on a 24 × 24 × 30 in. pocket filter, and Eurovent Certita Certification, Certificate No. 15.06.011 under ISO 16890, and each one covers the article and the conditions printed in it. Report 6847 is on a 24 × 24 × 30 in. pocket filter and Certificate No. 15.06.011 on a ten-pocket bag filter, not on a flat panel filter, and a rating belongs to the construction that was tested and to the conditions in the report. The label states: “This filter treats the air that passes through it.” It also states: “It works alongside ventilation and cleaning, not in place of them.” The label states: “Results in a building depend on the system, the airflow, and how well the filter fits its track.” The filter captures airborne particles mechanically and by electrostatic attraction.
The Validation page names what was tested, the conditions and the institutions, and it names the air-filter and safety records by institution and number; a result covers what that test named. The Terms of Use state: “A reported result describes only what the identified test found.” Certificate No. 15.06.011 can be looked up at source in the Eurovent Certita Certification certified product directory.
Source: NanoFlashing™ Air Filter label; C-POLAR — Validation, https://cpolar.tech/validation/; C-POLAR — Terms of Use, section 3, https://cpolar.tech/terms/; Eurovent Certita Certification certified product directory, read 19 September 2026, https://www.eurovent-certification.com/.
Reviewed on .
Sources
Can a filter address a continuing source of dampness or mould growth in a wall?
A filter acts on the air that passes through it, and it does not reach a surface or a source.
The label states: “This filter treats the air that passes through it.” It also states: “It works alongside ventilation and cleaning, not in place of them.” The label states: “Results in a building depend on the system, the airflow, and how well the filter fits its track.” The filter captures airborne particles mechanically and by electrostatic attraction.
The Validation page names what was tested, the conditions and the institutions, and it names the air-filter and safety records by institution and number; a result covers what that test named.
Source: NanoFlashing™ Air Filter label; C-POLAR — Validation, https://cpolar.tech/validation/.
Reviewed on .
Sources
- NanoFlashing™ Air Filter label
- C-POLAR — Validation
What result does the Validation page report for viruses, bacteria and fungal spores?
The Validation page reports: “Independent testing shows NanoFlashing™ destroys up to 99.99% of a broad spectrum of viruses, bacteria and fungal spores through a physical mechanism.”
It names the conditions tested and the institutions that tested them, and each result belongs to the article named in its own report and to its standard where the report names one. The mechanism is set out in the company’s statements: “The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge.” The numbered reports behind the pathogen section include these. Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, tested a nonwoven filter medium against influenza A virus (H3N2) under ISO 18184:2014. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, tested a VOLZ PROsyntex PLUS PM1 70 filter medium against Aspergillus brasiliensis and Aspergillus niger under ISO 13629-2:2014. The Guangdong report records a logarithm of antiviral activity of 4.34 for that nonwoven filter medium under ISO 18184:2014. ISO 18184 measures virus recovered from treated textile against an untreated control; it is a contact test on the medium, not an airborne or in-use result. The TZÚ report records antibacterial activity values of A = 6.4 against Staphylococcus aureus and A = 4.4 against Klebsiella pneumoniae under ISO 20743, absorption method, and an antiviral activity value of Mv = 3.30 against bacteriophage Phi6 under ISO 18184, for that MERV 15A filter medium. An activity value is a difference against an untreated control fabric. It is not a percentage destroyed and not an airborne result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The IVAMI report records an antifungal activity value of 4.40 for each strain on that filter medium, by the plate-count absorption method under ISO 13629-2:2014, against an untreated control; it is a contact test on the medium, not an airborne or in-use result. Hong Kong Metropolitan University, Test Report IRITS202112110001, 11 December 2021, tested a spunlace nonwoven against Staphylococcus aureus, Escherichia coli and Pseudomonas aeruginosa with reference to BS EN ISO 20743:2013 (transfer method), after accelerated ageing to ASTM F1980-16 for 64 days at 60 °C, and reported: “No significant deterioration of antimicrobial activity was observed after accelerated aging”. It is a contact test on fabric, not an air-filter or airborne result. Two further reports carry no number. Tampere University, Department of Virology, report dated 1 April 2021, tested a treated material against human coronavirus 229E and Coxsackievirus B6. Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, report dated 29 April 2021, tested a treated material under ISO 18184. For Harvard Medical School, Massachusetts General Hospital and the University of Minnesota, the citable record is the peer-reviewed paper: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, September 2024, doi 10.1128/spectrum.04097-23. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested. Scientific Reports (2023) 13:13947 compared a C-POLAR treated filter with an untreated spunlace nonwoven filter against an aerosolised pseudotyped virus. The conditions the Validation page lists as tested are heavy dust loaded, fast air flow, used filter for 1 year, after 60 washes, after 2 years of storage, and after 60C for 64 days. A reported result applies to the sample that was tested, under the conditions named in the report that recorded it and under its standard where the report names one.
Source: C-POLAR — Validation, https://cpolar.tech/validation/; C-POLAR Technologies, Inc. — Statement of Regulatory Status for NanoFlashing™ Air Filter, 11 September 2026; Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026; Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026; Hong Kong Metropolitan University, Test Report IRITS202112110001, 11 December 2021; Tampere University, Department of Virology, report dated 1 April 2021; Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, report dated 29 April 2021; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, September 2024, doi 10.1128/spectrum.04097-23, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Scientific Reports (2023) 13:13947; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR Technologies, Inc. — Statement of Regulatory Status for NanoFlashing™ Air Filter, 11 September 2026
- Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026
- Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026
- Tampere University, Department of Virology, report dated 1 April 2021
- Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, report dated 29 April 2021
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, September 2024, doi 10.1128/spectrum.04097-23
- Scientific Reports (2023) 13:13947
- Hong Kong Metropolitan University, Test Report IRITS202112110001, 11 December 2021
- C-POLAR — Viruses
- C-POLAR — Mold
Does the Tampere result measure capture or destruction?
The company has not published which endpoint the Tampere University testing measured.
Tampere University, Department of Virology, report dated 1 April 2021, tested a treated material against human coronavirus 229E and Coxsackievirus B6. It carries no report number, and the organisms it covered are human coronavirus 229E and Coxsackievirus B6, not SARS-CoV-2.
The company's position is that the filter is intended to destroy the viruses, bacteria and fungal spores it captures, that it destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge, and that the filter captures airborne particles mechanically and by electrostatic attraction. The Validation page names Tampere University, Finland among the institutes that tested NanoFlashing™, and the Viruses page names it among those that tested the viruses listed there. Enquiries go to [email protected].
Source: C-POLAR — Validation (https://cpolar.tech/validation/), C-POLAR — Viruses (https://cpolar.tech/contaminants/viruses/) and C-POLAR — Contact (https://cpolar.tech/contact/); Tampere University, Department of Virology, report dated 1 April 2021. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Viruses
- C-POLAR — Contact
- Tampere University, Department of Virology, report dated 1 April 2021
Does a claim about a virus refer to an infectious endpoint or only detection of genetic material?
The company has not published, on its pages, which endpoint each test measured.
The peer-reviewed publication behind the technology is Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, doi:10.1128/spectrum.04097-23. The Terms of Use state: “A reported result describes only what the identified test found.” Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, tested a nonwoven filter medium against influenza A virus (H3N2) under ISO 18184:2014. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. ISO 18184 measures virus recovered from treated textile against an untreated control; it is a contact test on the medium, not an airborne or in-use result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The Validation page names the institutes that tested NanoFlashing™, and the endpoint a given test measured is in that test’s own report. Enquiries go to [email protected]. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/), C-POLAR — Terms of Use (https://cpolar.tech/terms/) and C-POLAR — Contact (https://cpolar.tech/contact/); Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- C-POLAR — Contact
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- C-POLAR — Viruses
- C-POLAR — Mold
Does a result for one strain support the broader species wording used in a claim?
A result for one strain is a result for that strain, and the company names each organism it tested.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. On the Validation page the viruses are SARS-CoV-2, human coronavirus 229E, Coxsackievirus B6, bovine coronavirus, pseudo-type SARS-CoV-2, influenza A H3N2 and Phi6 bacteriophage; the bacteria are Staphylococcus aureus, Klebsiella pneumoniae, Escherichia coli, Pseudomonas aeruginosa and Enterococcus faecalis; the fungi are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. It reports activity values against Staphylococcus aureus and Klebsiella pneumoniae under ISO 20743, and against bacteriophage Phi6 under ISO 18184. An activity value is a difference against an untreated control fabric. It is not a percentage destroyed and not an airborne result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, tested a VOLZ PROsyntex PLUS PM1 70 filter medium against Aspergillus brasiliensis and Aspergillus niger under ISO 13629-2:2014. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” The test article, the organism, the method, the control, the conditions, the contact time, the sample and the endpoint identified in a report are the limits of what that report shows. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014
- C-POLAR — Viruses
- C-POLAR — Mold
Is evidence for an enveloped virus being extended to non-enveloped viruses?
The viruses tested are named one by one, and each result belongs to the virus it was run on.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The company names the organisms that were tested. On the Validation page the viruses are SARS-CoV-2, human coronavirus 229E, Coxsackievirus B6, bovine coronavirus, pseudo-type SARS-CoV-2, influenza A H3N2 and Phi6 bacteriophage; the bacteria are Staphylococcus aureus, Klebsiella pneumoniae, Escherichia coli, Pseudomonas aeruginosa and Enterococcus faecalis; the fungi are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans. Tampere University, Department of Virology, report dated 1 April 2021, tested a treated material against human coronavirus 229E and Coxsackievirus B6. Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, tested a nonwoven filter medium against influenza A virus (H3N2) under ISO 18184:2014. ISO 18184 measures virus recovered from treated textile against an untreated control; it is a contact test on the medium, not an airborne or in-use result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” The test article, the organism, the method, the control, the conditions, the contact time, the sample and the endpoint identified in a report are the limits of what that report shows. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Tampere University, Department of Virology, report dated 1 April 2021; Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Tampere University, Department of Virology, report dated 1 April 2021
- Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014
- C-POLAR — Viruses
- C-POLAR — Mold
Does evidence concerning vegetative bacteria support wording about bacterial spores?
The company names the bacteria tested, and it publishes no separate result for bacterial spores.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The company names the organisms that were tested. On the Validation page the viruses are SARS-CoV-2, human coronavirus 229E, Coxsackievirus B6, bovine coronavirus, pseudo-type SARS-CoV-2, influenza A H3N2 and Phi6 bacteriophage; the bacteria are Staphylococcus aureus, Klebsiella pneumoniae, Escherichia coli, Pseudomonas aeruginosa and Enterococcus faecalis; the fungi are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. It reports activity values against Staphylococcus aureus and Klebsiella pneumoniae under ISO 20743, and against bacteriophage Phi6 under ISO 18184. An activity value is a difference against an untreated control fabric. It is not a percentage destroyed and not an airborne result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” The test article, the organism, the method, the control, the conditions, the contact time, the sample and the endpoint identified in a report are the limits of what that report shows. The company's published wording names fungal spores, and it does not name bacterial spores. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- C-POLAR — Viruses
- C-POLAR — Mold
Can loss of viability be mistaken for removal of allergenic material?
No. Destroying a captured organism is not the same as removing allergenic material, and the company keeps the two apart: its pages state that NanoFlashing™ attracts and captures pollen, and its Statement of Classification states that the filter is intended to destroy the viruses, bacteria and fungal spores it captures.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The filter captures airborne particles mechanically and by electrostatic attraction. NanoFlashing™ attracts negatively charged particles through electrostatic attraction. Once attracted, the particle is captured by NanoFlashing™. When a captured pollutant has a fragile structure, NanoFlashing™ destroys it on contact through a physical mechanism. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The company publishes no allergen measurement. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — NanoFlashing™ (https://cpolar.tech/nanoflashing/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23.
Reviewed on .
Sources
- C-POLAR — NanoFlashing™
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
Does the claimed effect address residual toxins independently of organism viability?
The company's claim is about the organism captured by the charge, and it publishes nothing about toxins.
The company's position is that the filter is intended to destroy the viruses, bacteria and fungal spores it captures, that it destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested. The Terms of Use state: “A reported result describes only what the identified test found.”
Source: C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23.
Reviewed on .
Sources
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
Does a public target list distinguish organisms actually evaluated from organisms mentioned only as examples?
Yes.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The Validation page lists the organisms under the heading of what was tested, together with the institutes that tested them. The company names the organisms that were tested. On the Validation page the viruses are SARS-CoV-2, human coronavirus 229E, Coxsackievirus B6, bovine coronavirus, pseudo-type SARS-CoV-2, influenza A H3N2 and Phi6 bacteriophage; the bacteria are Staphylococcus aureus, Klebsiella pneumoniae, Escherichia coli, Pseudomonas aeruginosa and Enterococcus faecalis; the fungi are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans. Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, tested a nonwoven filter medium against influenza A virus (H3N2) under ISO 18184:2014. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. It reports activity values against Staphylococcus aureus and Klebsiella pneumoniae under ISO 20743, and against bacteriophage Phi6 under ISO 18184. Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, tested a VOLZ PROsyntex PLUS PM1 70 filter medium against Aspergillus brasiliensis and Aspergillus niger under ISO 13629-2:2014. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” The test article, the organism, the method, the control, the conditions, the contact time, the sample and the endpoint identified in a report are the limits of what that report shows. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014
Does the evidence concern contaminants on the material or contaminants leaving the complete product?
The laboratory testing concerns the material and the filter, and the Validation page also reports measurements in four buildings where NanoFlashing™ was installed.
At a public hospital in Vancouver, two identical towers were compared, one on conventional medical grade filters and one on NanoFlashing™, and bioaerosols were measured at the NanoFlashing™ supply vent. The other three were measured before and after the air handling unit filters were changed to NanoFlashing™. The Validation page says these were independently measured with MicronView's 405 nm Bio-fluorescent Air Monitoring System. Each is one building over one period, and it is not a result for another building. The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The Terms of Use state: “A test of C-POLAR material, a component, or a prototype does not establish the performance of a finished product that incorporates it. Construction, processing, storage, wear, cleaning, other components, and actual use may change the result.” They also state: “Use evidence, specifications, instructions, and warnings specific to the actual finished product and use.” Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, tested a nonwoven filter medium against influenza A virus (H3N2) under ISO 18184:2014. ISO 18184 measures virus recovered from treated textile against an untreated control; it is a contact test on the medium, not an airborne or in-use result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The label for the NanoFlashing™ Air Filter states: “Results in a building depend on the system, the airflow, and how well the filter fits its track.” On what leaves the filter, the company's position is that the air leaving the filter has had nothing added to it. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Terms of Use (https://cpolar.tech/terms/); NanoFlashing™ Air Filter label; C-POLAR — Validation, https://cpolar.tech/validation/; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Terms of Use
- NanoFlashing™ Air Filter label
- C-POLAR — Validation
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014
- C-POLAR — Viruses
- C-POLAR — Mold
Is a claim of reduced regrowth supported separately from an immediate test result?
The company's claim is that the filter is intended to destroy the viruses, bacteria and fungal spores it captures, and its Validation page contrasts this with conventional filters, on which captured microbes remain viable for weeks to months; it publishes no separate regrowth test.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The company's position, set out in section 2.6 of its Statement of Classification, is bounded. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. Among the conditions tested listed on the Validation page is a used filter for 1 year. The Terms of Use state: “A reported result describes only what the identified test found.” The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
Can physical damage seen in an image establish loss of infectivity by itself?
No. The company does not offer an image as proof that an organism has lost its infectivity.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” They also state: “Images and descriptions may show concepts or prototypes. They are not specifications, instructions, validation reports, recommendations, warranties, offers, promises, or commitments.” The Validation page names the organisms tested and the institutions that tested them. An image is not the evidence. Each numbered report the company cites is named in text with its institution and number, not only shown in a picture.
Source: C-POLAR — Terms of Use (https://cpolar.tech/terms/) and C-POLAR — Validation (https://cpolar.tech/validation/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23.
Reviewed on .
Sources
- C-POLAR — Terms of Use
- C-POLAR — Validation
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
Does a claimed broad-spectrum effect rely on a biologically justified scope rather than a long target list?
The published claim rests on a physical mechanism and on the organisms named as tested, not on the length of a list.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The company names the organisms that were tested. On the Validation page the viruses are SARS-CoV-2, human coronavirus 229E, Coxsackievirus B6, bovine coronavirus, pseudo-type SARS-CoV-2, influenza A H3N2 and Phi6 bacteriophage; the bacteria are Staphylococcus aureus, Klebsiella pneumoniae, Escherichia coli, Pseudomonas aeruginosa and Enterococcus faecalis; the fungi are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans. Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, tested a nonwoven filter medium against influenza A virus (H3N2) under ISO 18184:2014. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. It reports activity values against Staphylococcus aureus and Klebsiella pneumoniae under ISO 20743, and against bacteriophage Phi6 under ISO 18184. Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, tested a VOLZ PROsyntex PLUS PM1 70 filter medium against Aspergillus brasiliensis and Aspergillus niger under ISO 13629-2:2014. Each result belongs to the organism, the article and the standard named in its report. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” The test article, the organism, the method, the control, the conditions, the contact time, the sample and the endpoint identified in a report are the limits of what that report shows. The charge does not act on organisms only; the filter captures airborne particles mechanically and by electrostatic attraction, and in single-pass laboratory testing it captured pine-needle smoke and ultrafine particles better than the control filter, and smoke is neither a pest nor alive. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, ISO 13629-2:2014
Are findings for a harmless test surrogate identified as surrogate evidence?
The company names each organism tested, including Phi6 bacteriophage, bovine coronavirus and pseudo-type SARS-CoV-2, and it does not label any of them as standing in for another.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. On the Validation page the viruses are SARS-CoV-2, human coronavirus 229E, Coxsackievirus B6, bovine coronavirus, pseudo-type SARS-CoV-2, influenza A H3N2 and Phi6 bacteriophage; the bacteria are Staphylococcus aureus, Klebsiella pneumoniae, Escherichia coli, Pseudomonas aeruginosa and Enterococcus faecalis; the fungi are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. Its virus result is against bacteriophage Phi6 under ISO 18184. A published paper, Scientific Reports (2023) 13:13947, compared a C-POLAR treated filter with an untreated spunlace nonwoven filter against an aerosolised pseudotyped virus. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” The test article, the organism, the method, the control, the conditions, the contact time, the sample and the endpoint identified in a report are the limits of what that report shows. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; Scientific Reports (2023) 13:13947. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- Scientific Reports (2023) 13:13947
Does a claim about a newly named variant rely on direct evidence or an extrapolation?
The company names the viruses tested, and a newly named variant that is not on that list was not among them.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The company names the organisms that were tested. On the Validation page the viruses are SARS-CoV-2, human coronavirus 229E, Coxsackievirus B6, bovine coronavirus, pseudo-type SARS-CoV-2, influenza A H3N2 and Phi6 bacteriophage; the bacteria are Staphylococcus aureus, Klebsiella pneumoniae, Escherichia coli, Pseudomonas aeruginosa and Enterococcus faecalis; the fungi are Aspergillus fumigatus, Aspergillus brasiliensis, Aspergillus niger and Candida albicans. Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, tested a nonwoven filter medium against influenza A virus (H3N2) under ISO 18184:2014. Tampere University, Department of Virology, report dated 1 April 2021, tested a treated material against human coronavirus 229E and Coxsackievirus B6. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The Terms of Use state: “A reported result describes only what the identified test found.” The test article, the organism, the method, the control, the conditions, the contact time, the sample and the endpoint identified in a report are the limits of what that report shows. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014; Tampere University, Department of Virology, report dated 1 April 2021. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Guangdong Detection Center of Microbiology, Report 2020FM20686R01E, 13 August 2020, ISO 18184:2014
- Tampere University, Department of Virology, report dated 1 April 2021
Could an assay's response to the material be mistaken for a change in the biological endpoint?
The company has not published the methods behind its results on its pages.
The peer-reviewed publication behind the technology is Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, doi:10.1128/spectrum.04097-23. The Terms of Use state: “A reported result describes only what the identified test found.” Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. An activity value is a difference against an untreated control fabric. It is not a percentage destroyed and not an airborne result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The Validation page names the institutes that tested NanoFlashing™, and the endpoint a given test measured is in that test’s own report. Enquiries go to [email protected]. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/), C-POLAR — Terms of Use (https://cpolar.tech/terms/) and C-POLAR — Contact (https://cpolar.tech/contact/); Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- C-POLAR — Contact
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- C-POLAR — Viruses
- C-POLAR — Mold
Is a report's stated biological endpoint preserved accurately in every public summary?
The company has not published a test-by-test summary of endpoints on its pages.
The peer-reviewed publication behind the technology is Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, doi:10.1128/spectrum.04097-23. The Terms of Use state: “A reported result describes only what the identified test found.” Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. An activity value is a difference against an untreated control fabric. It is not a percentage destroyed and not an airborne result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The Validation page names the institutes that tested NanoFlashing™, and the endpoint a given test measured is in that test’s own report. Enquiries go to [email protected]. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Validation (https://cpolar.tech/validation/), C-POLAR — Terms of Use (https://cpolar.tech/terms/) and C-POLAR — Contact (https://cpolar.tech/contact/); Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- C-POLAR — Terms of Use
- C-POLAR — Contact
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- C-POLAR — Viruses
- C-POLAR — Mold
Does the evidence support the word sterilise rather than a narrower reduction claim?
The company does not use the word sterilise.
Its wording is bounded, as section 2.6 of its Statement of Classification sets it out. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The filter captures airborne particles mechanically and by electrostatic attraction. The Terms of Use state: “A reported result describes only what the identified test found.” A statement about what happens on the filter is not a statement about a room, a surface or an instrument. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. An activity value is a difference against an untreated control fabric. It is not a percentage destroyed and not an airborne result. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — NanoFlashing™ (https://cpolar.tech/nanoflashing/) and C-POLAR — Terms of Use (https://cpolar.tech/terms/); Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — NanoFlashing™
- C-POLAR — Terms of Use
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, ISO 20743 and ISO 18184
- C-POLAR — Viruses
- C-POLAR — Mold
Can a product claim distinguish limiting contamination of the filter from protecting its users?
Yes: the company's claim that the filter is intended to destroy the viruses, bacteria and fungal spores it captures is a claim about what happens on the filter, and C-POLAR has published no clinical study, and no laboratory result it publishes has been shown to produce a real-world health outcome.
The core science is peer-reviewed and published: Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, co-authored by 31 scientists from 18 research institutions. The company's position is that the filter is intended to destroy the viruses, bacteria and fungal spores it captures, and that it destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. The label for the NanoFlashing™ Air Filter states: “This filter treats the air that passes through it. It is not a medical device and is not intended to diagnose, treat, cure or prevent disease. It works alongside ventilation and cleaning, not in place of them.” The Terms of Use state: “A laboratory reduction in a virus, bacterium, fungus, particle, or other endpoint does not establish a clinical benefit, fewer infections, disease prevention or treatment, or improved health.” The paper reports laboratory results on SARS-CoV-2 in contact with treated textile, on aerosolised bovine coronavirus passed through a test filter in a wind tunnel, and on bacterial viability on treated textiles; each result belongs to the article that was tested.
Source: C-POLAR — Terms of Use (https://cpolar.tech/terms/); NanoFlashing™ Air Filter label, and Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.; C-POLAR — Validation, https://cpolar.tech/validation/; Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology, https://journals.asm.org/doi/10.1128/spectrum.04097-23.
Reviewed on .
Sources
- C-POLAR — Terms of Use
- NanoFlashing™ Air Filter label
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- C-POLAR — Validation
- Gong, Or, Sze et al., Microbiology Spectrum 12(9), e0409723, American Society for Microbiology
Do the germs caught in the filter get blown back into the air in my house?
The Validation page states that on a conventional filter, captured microbes “remain viable on the filter for weeks to months and are released back into the air,” and that NanoFlashing™ “won’t.”
The filter captures airborne particles mechanically and by electrostatic attraction. The Validation page’s sentence rests on the destruction of the organisms held on the filter. The filter is intended to destroy the viruses, bacteria and fungal spores it captures. It destroys them on direct contact with the positive electric charge, by physical means, and only while the organism is captured by the positive electric charge. Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026, a laboratory accredited to ISO/IEC 17025, tested a MERV 15A filter medium under ISO 20743 and ISO 18184. The organisms were Staphylococcus aureus and Klebsiella pneumoniae under ISO 20743, and bacteriophage Phi6 under ISO 18184. Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026, tested a VOLZ PROsyntex PLUS PM1 70 filter medium against Aspergillus brasiliensis and Aspergillus niger under ISO 13629-2:2014. Each is a contact test on the filter medium against an untreated control; it is not an airborne result, and it does not measure what leaves a filter in use. The Viruses page shows airborne virus at 1.3 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the virus, and destroys it.” The Mold page shows airborne mold spores at 1.6 m/s airflow, NanoFlashing™ beside a control, and states: “NanoFlashing™ captures the mold, and destroys it.” The Mold page also states that researchers at Massachusetts General Hospital and Harvard Medical School, in a study with funding from the U.S. National Institutes of Health, tested NanoFlashing™ with more than 100 million live, dry spores driven in by fast-moving air. The Validation page also reports measurements in four buildings where NanoFlashing™ was installed. At a public hospital in Vancouver, two identical towers were compared, one on conventional medical grade filters and one on NanoFlashing™, and bioaerosols were measured at the NanoFlashing™ supply vent; the page says these were independently measured with MicronView's 405 nm Bio-fluorescent Air Monitoring System. Each is one building over one period, and it is not a result for another building.
Source: C-POLAR — Validation, https://cpolar.tech/validation/; Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc., sections 2.5 and 2.6; Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026; Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026; C-POLAR — Viruses, https://cpolar.tech/contaminants/viruses/; C-POLAR — Mold, https://cpolar.tech/contaminants/mold/. A copy may be made available on our review of the request.
Reviewed on .
Sources
- C-POLAR — Validation
- Statement of Classification for the NanoFlashing™ Air Filter, NF Technical Products Inc.
- Textile Testing Institute – Brno (TZÚ), Test Report AZL 26/0757-02, 3 July 2026
- Instituto Valenciano de Microbiología, Report D/26/B0483, 6 August 2026
- C-POLAR — Viruses
- C-POLAR — Mold
More questions on this subject
Biological claims and evidence limits
- Once the filter has caught a virus or bacteria, can it come loose and go back into the room?
- Your site says ordinary filters release the microbes they catch back into the air. Does a NanoFlashing filter release them too?
- Does NanoFlashing kill the virus that causes COVID?
- Has NanoFlashing been tested against SARS-CoV-2, the COVID-19 virus?
- Does NanoFlashing work against flu viruses?
- Would NanoFlashing work against bird flu or the next pandemic virus?
- Does NanoFlashing kill good bacteria too, not just the bad ones?
- Isn't killing all bacteria a bad thing? Most bacteria are harmless.
- Is NanoFlashing™ an antimicrobial treatment?
- How can a filter destroy viruses without a chemical?
- Is there any direct structural or microscopic evidence of what happens to an organism at the moment of destruction, beyond “physical means, direct contact, while captured”?
What a buyer wants removed
Evidence and its limits
- Does a laboratory reduction establish a clinical benefit?
- Do research results establish fewer infections or improved health?
- Has anyone measured what comes back off a used NanoFlashing filter into the air?
- Is C-POLAR a scam?
- Who tested NanoFlashing, and were they independent?
Research design and selection bias
- Does the evidence behind the percentage claim cover every product on which the claim appears?
- Can I examine the complete methods, controls, raw results and uncertainty behind the central performance claim?
- Were capture and loss of biological activity measured separately, and how are their results distinguished?
- What comparison shows the contribution of the described property rather than the untreated supporting material?
- How were the tested organisms chosen, and what justifies the breadth of the resulting claim?
- Is evidence from a textile antibacterial method being extended to a different endpoint or product type?
- Which sample identifiers establish that the submitted report concerns the marketed version of the material?
- Which full report, method, endpoint and conditions support the precise central percentage on the current label?
- Which limitations in the complete studies would materially change a reader's understanding of the headline performance statement?
- Were different production dates represented in the test samples?
- Were comparison products purchased independently or supplied by their manufacturers?
- Did the comparator have equivalent physical dimensions and media mass?
- Were test samples preselected using a screening test unavailable to ordinary customers?
- Does the study use an independently chosen reference material?
- Can a single unusually successful sample dominate the advertised result?
- Were all tested product versions reported, including versions later abandoned?
- Could packaging or transport differences explain differences between submitted samples?