Uploaded April 2026 | Updated September 2026, 2 weeks ago
Scientists have developed a nanomaterial-based adsorbent using molecular cages embedded in mesoporous silica that can remove up to 98% of PFAS, the persistent "forever chemicals," from water. This technology targets short-chain PFAS resistant to traditional treatments and maintains high efficacy over multiple reuse cycles, offering a new approach to water purification.
Source Article:
onlinelibrary.wiley.com/doi/10.1002/anie.202526027
#technology #breakthrough #environment #discovery #shorts
My Patreon:π patreon.com/DrBenMiles
My Instagram: instagram.com/drbenmiles
My TikTok: tiktok.com/@drbenmiles
My Newsletter: drbenmiles.substack.com
My Merch: rockstarscientist.org
π Linktree: https://linktr.ee/drbenmiles
MY GEAR
π· Sony A7III amzn.to/3OWrmGd
π Sigma 402965 16 mm F1.4 amzn.to/49BNJdq
π€ Shure SM7B amzn.to/4sF3ngx
π€ Zoom H4n Pro amzn.to/3OXsklB
π€ Sennheiser AVX amzn.to/4geWnBi
Scientists have developed a nanomaterial-based adsorbent using molecular cages embedded in mesoporous silica that can remove up to 98% of PFAS, the persistent "forever chemicals," from water. This technology targets short-chain PFAS resistant to traditional treatments and maintains high efficacy over multiple reuse cycles, offering a new approach to water purification.
Source Article:
onlinelibrary.wiley.com/doi/10.1002/anie.202526027
#technology #breakthrough #environment #discovery #shorts
My Patreon:π patreon.com/DrBenMiles
My Instagram: instagram.com/drbenmiles
My TikTok: tiktok.com/@drbenmiles
My Newsletter: drbenmiles.substack.com
My Merch: rockstarscientist.org
π Linktree: https://linktr.ee/drbenmiles
MY GEAR
π· Sony A7III amzn.to/3OWrmGd
π Sigma 402965 16 mm F1.4 amzn.to/49BNJdq
π€ Shure SM7B amzn.to/4sF3ngx
π€ Zoom H4n Pro amzn.to/3OXsklB
π€ Sennheiser AVX amzn.to/4geWnBi










