Deeply honored to be recognized with the 2025 ACS ES&T Engineering Annual Reviewer Award. Wishing the journal continued growth and impact.
https://t.co/4FGtIyi21S
Our new paper on @WaterRes_J harnesses the power of machine learning to build predictive models that decode the efficiency and mechanisms of RNS reactions with micropollutants. https://t.co/96Gcf191bQ
Dive into safer waters! 🏊♀️ Our latest research explores how far-UVC (UV222) technology can effectively break down irritating organic chloramines in swimming pools.
https://t.co/I6yhQeCeFr
Our new findings reveal a sustainable solution for water purification: Far-UVC (UV222) technology effectively degrades chlorite and micropollutants without chemicals, aligning with global sustainability goals to ensure safer drinking water. @EnvSciTech
https://t.co/aFK8kr0rhL
New paper is online: Seawater supercharges UV/PMS disinfection: salty halogens blast fungal spores 5x faster than fresh water—nature’s chemistry turbocharges clean water tech!
https://t.co/Cp8B1NM8yh
#milestone I’ve just submitted my 100th review for ACS, primarily for @EnvSciTech . I appreciate the editors’ trust and the opportunity to contribute. This journey has been incredibly rewarding—through it, I’ve gained valuable insights and grown as a reviewer.
Excited to share our latest publication in @EnvSciTech demonstrating reactive species generation from far-UVC photolysis of NOM: https://t.co/gPrM7VPAYO
Honored to join the Environmental Science & Technology Early Career Editorial Board! Looking forward to contributing to this prestigious journal.
https://t.co/ALaH2apYYK
Check out our new paper on @WaterRes_J about DOM-mediated photosensitized activation of oxidants for emerging contaminant control: https://t.co/d7SVvw4WNp
Our new paper on ES&T reports the role of reactive nitrogen species on pesticide degradation and nitrogenous byproduct formation 👇https://t.co/N2QzTs1SRU
Check out our new paper on @EnvSciTech for the effective control of disinfection byproducts in potable reuse by Far-UVC-driven AOPs https://t.co/Mo4kyYhajU
A research team led by @765452268 of @hkust demonstrate that switching the #UVradiation source from conventional low-pressure UV to far-UVC increases the UV fluence-based concentration of #HydroxylRadicals in the UV/peracetic acid process.
ES&T Letters: https://t.co/FYNcYE5wUz
Check out our new paper on the control of micropollutants in water by Far-UVC photolysis of peracetic acid on ES&T Letters 👇👇👇https://t.co/dRBMG2j0aC
How to take advantage of the EfOM and residual disinfectants in wastewater effluent for sustainable micropollutant control? Find the answer in our new ES&T paper! https://t.co/4TmuOUpQfW