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Calgon Carbon Reactivation Study Shows Removal and Destruction of PFAS

By Calgon Carbon Corporation - Dec 06, 2022, 11:33 AM ET
Last Updated - Apr 29, 2024, 09:18 PM EDT
Kuraray_Building
“The single-biggest conclusion from the study is that PFAS compounds are effectively removed from spent carbon through the reactivation process, as well as showing greater than 99.99% destruction of PFAS through our furnace and abatement system,” explained Rebecca DiStefano, Senior Applications Engineer at Calgon Carbon

A new study by Calgon Carbon Corporation (“Calgon Carbon”), a wholly owned subsidiary of Kuraray Co., Ltd. (TYO: 3405) (“Kuraray”), has provided a definitive response to a persistent question about the fate of PFAS during reactivation of activated carbon. Reactivation is a high temperature thermal process that is commonly used by municipalities and industrial users to recycle their used activated carbon and destroy contaminants it has removed.

Pittsburgh, PA, Dec. 06, 2022 (GLOBE NEWSWIRE) -- A new study by Calgon Carbon Corporation (“Calgon Carbon”), a wholly owned subsidiary of Kuraray Co., Ltd. (TYO: 3405) (“Kuraray”), has provided a definitive response to a persistent question about the fate of PFAS during reactivation of activated carbon. Reactivation is a high temperature thermal process that is commonly used by municipalities and industrial users to recycle their used activated carbon and destroy contaminants it has removed.  

“The single-biggest conclusion from the study is that PFAS compounds are effectively removed from spent carbon through the reactivation process, as well as showing greater than 99.99% destruction of PFAS through our furnace and abatement system,” explained Rebecca DiStefano, Senior Applications Engineer at Calgon Carbon.

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Remediation-The Journal of Environmental Cleanup Costs, Technologies, & Techniques, featured the findings of Calgon Carbon’s study in a peer-reviewed article published in the autumn issue of the esteemed quarterly journal that focuses on the practical applications of remediation techniques and technologies.

“The data detailed in our article effectively demonstrated the removal of PFAS compounds from granular activated carbon (GAC) and greater than 99.99% destruction of PFAS compounds through the furnace and off-gas abatement system,” said DiStefano, the lead author of the Remediation article.

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