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Ozone Research & Evidence

Ozone (O3) is a powerful oxidizing gas that inactivates bacteria, viruses, fungi, and spores. Because it acts as a gas, it penetrates porous materials and enclosed cavities that liquid disinfectants and sprays cannot reach. Below is a summary of independent, peer-reviewed and government-funded research.

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The Ozone Evidence File

Stop losing jobs to “does that stuff actually work?” — hand your client the research instead. Los Alamos, Penn State, PLOS ONE, and more, distilled onto two pages.

🔬 30+ studies
🏛️ 15+ institutions
📄 2 pages
⏱️ 25+ years

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Spore Deactivation & Biodefense

Ozone gas effectively kills bacterial spores in high-humidity environments — established through U.S. Department of Energy–funded work and later cited in national biodefense decontamination literature.
Currier et al., Los Alamos National Laboratory (DOE-funded), 1999.

Gaseous ozone achieved a ≥6-log reduction of Bacillus anthracis and Bacillus subtilis spores on real building materials — including carpet, wood, and wallboard — at 9,000 ppm.
PLOS ONE, 2020. DOI: 10.1371/journal.pone.0233291

Airborne Bacteria

High airborne ozone concentrations are bactericidal against E. coli and Staphylococcus aureus, with efficiency rising as relative humidity increases.
Kowalski W.J., Bahnfleth W.P., Whittam T.S., International Ozone Association, 1998 (Pennsylvania State University).

Viruses (Including SARS-CoV-2)

Gaseous ozone inactivates both enveloped and non-enveloped viruses. Published work reported up to ~90% inactivation of SARS-CoV-2 after 60 minutes at 1 ppm; reviews rank viruses as more susceptible to ozone than bacteria, yeast, or spores.
Yano et al., 2020. Reviewed in Critical Reviews in Environmental Science and Technology, 2022.

Mold, Fungi & Food Safety

Gaseous ozone inactivates fungi and foodborne bacterial biofilms — including Listeria monocytogenes and Pseudomonas fluorescens — and is specifically recommended for treating confined spaces in the absence of personnel.
Frontiers in Microbiology / NCBI PMC6120990.

Ozone is a broad-spectrum antimicrobial active against bacteria, fungi, viruses, protozoa, and spores; its action is particularly effective in air at high relative humidity.
University of Florida review (citing Kim et al. 2000, Kowalski et al. 1998).

Why Airflow — Not Just Output — Determines Results

Because ozone works as a gas, its reach depends on how it is moved through a space. A high-CFM industrial blower creates positive pressurization — driving ozone-laden air under pressure into wall cavities, ductwork, under flooring, and deep into porous materials where odor, mold, and bacteria actually live. This is the operating principle behind the Vertical Horizontal Tornado‘s 1,850 CFM blower.

Important — How to Read This Page. These findings come from independent researchers, universities, and government agencies and are presented for educational purposes. The cited studies used a range of ozone sources, concentrations, and exposure times, and do not constitute testing, validation, or endorsement of any specific product. Bio3Blaster performance claims are based on real-world field testing using calibrated Eco-Sensors equipment and operator feedback; they have not been independently evaluated by a laboratory or government agency. Ozone is hazardous to breathe — use in unoccupied spaces only and ventilate fully before re-entry.
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