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Indhold leveret af Adeline Lopez and NIEHS Superfund Research Program. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af Adeline Lopez and NIEHS Superfund Research Program eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.
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Fighting Fluorine with Fluorine: New Materials Remove PFAS from Groundwater

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Manage episode 362356626 series 3017470
Indhold leveret af Adeline Lopez and NIEHS Superfund Research Program. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af Adeline Lopez and NIEHS Superfund Research Program eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.
Researchers funded by the NIEHS Superfund Research Program (SRP) created a novel class of materials that can attract and remove per- and polyfluoroalkyl substances (PFAS) from water. According to the authors, the new technology — called Fluor Mop — can be regenerated, reused, and is potentially less expensive than current remediation strategies.
  continue reading

158 episoder

Artwork
iconDel
 
Manage episode 362356626 series 3017470
Indhold leveret af Adeline Lopez and NIEHS Superfund Research Program. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af Adeline Lopez and NIEHS Superfund Research Program eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.
Researchers funded by the NIEHS Superfund Research Program (SRP) created a novel class of materials that can attract and remove per- and polyfluoroalkyl substances (PFAS) from water. According to the authors, the new technology — called Fluor Mop — can be regenerated, reused, and is potentially less expensive than current remediation strategies.
  continue reading

158 episoder

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