Resources

ClarosTechUV™ TFA Destruction Results White Paper thumbnail

Rapid TFA Destruction at Scale: Destroying Ultra-Short Chain PFAS in a Single Pass with ClarosTechUV™
Field results demonstrated >99% TFA destruction and throughputs exceeding 25,000 gallons (100 m3) per day
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ClarosTechUV™ MPCA Lake Elmo White Paper thumbnail

Scalable PFAS Destruction in Foam-Fractionated Groundwater Using ClarosTechUV™
Study of Contaminated Water from the Lake Elmo, Minnesota Groundwater Remediation Site
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Oxidative Transformation of Nafion-Related Fluorinated Ether Sulfonates: Comparison with Legacy PFAS Structures and Opportunities of Acidic Persulfate Digestion for PFAS Precursor Analysis
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ClarosTech PFAS Destruction
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PFAS Solutions for Regulatory Compliance
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ClarosLabs Brochure 2026

ClarosLabs PFAS Detection & Analytical Services
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Key PFAS Research & Resources

Key EPA Actions to Address PFAS

Learn what EPA is doing to address PFAS, research and resources, benchmarks for compliance. https://www.epa.gov/pfas/key-epa-actions-address-pfas


Minnesota Pollution Control Agency: Minnesota’s PFAS Blueprint

Minnesota requires a strategic, coordinated approach to protecting families and communities from these ubiquitous substances. https://www.pca.state.mn.us/air-water-land-climate/minnesotas-pfas-blueprint


PFAS Are Still Forever (and Not Your Best Friend)

Key considerations for evaluating PFAS destruction technologies, from the Natural Resources Defense Council. https://www.nrdc.org/bio/anna-reade/pfas-are-still-forever-and-not-your-best-friend


The Global Threat from the Irreversible Accumulation of Trifluoroacetic Acid (TFA)

Hans Peter H. Arp et al. Environmental Science & Technology Volume 58/Issue 45 October 30, 2024 https://pubs.acs.org/doi/10.1021/acs.est.4c06189


Poly- and perfluoroalkyl substances destruction via advanced reduction processes: assessing scientific and commercial progress and prospects

Erika Houtz et al. Current Opinion in Chemical Engineering Volume 44, June 2024 https://doi.org/10.1016/j.coche.2024.101022


Oxidative Transformation of Nafion-Related Fluorinated Ether Sulfonates: Comparison with Legacy PFAS Structures and Opportunities of Acidic Persulfate Digestion for PFAS Precursor Analysis

Zekun Liu et al. Environmental Science & Technology Vol 58/Issue 14 March 25, 2024 https://pubs.acs.org/doi/10.1021/acs.est.3c06289


Is removal and destruction of perfluoroalkyl and polyfluoroalkyl substances from wastewater effluent affordable?

Alison L. Ling, et al. Water Environment Research Volume 96, Issue 1 22 January 2024 https://doi.org/10.1002/wer.10975


Per‐ and Polyfluoroalkyl Substance Toxicity and Human Health Review: Current State of Knowledge and Strategies for Informing Future Research 

Suzanne E. Fenton et al. Environmental Toxicology and Chemistry, Volume 40, Issue 3, March 2021, Pages 606–630, https://doi.org/10.1002/etc.4890


PFAS Exposure Pathways for Humans and Wildlife: A Synthesis of Current Knowledge and Key Gaps in Understanding

Amila O. De Silva et al. Environmental Toxicology and Chemistry, Volume 40, Issue 3, 1 March 2021, Pages 631–657, https://doi.org/10.1002/etc.4935


Man-Made Chemicals and Potential Health Risks: EPA Has Completed Some Regulatory-Related Actions for PFAS

GAO-21-37 Published: Jan 27, 2021. Publicly Released: Mar 01, 2021. https://www.gao.gov/products/gao-21-37


Understanding and Managing the Potential By-Products of PFAS Destruction

John Horst, et al. Advances in Remediation Solutions March 16, 2020 https://doi.org/10.1111/gwmr.12372


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The PFAS Problem

PFAS, or “forever chemicals,” are used in countless products and don’t break down naturally. With growing environmental concern and stricter regulation, the challenge of removing PFAS is global—and urgent.