William A. Mitch, Ph.D.
Affiliations: | 2003 | University of California, Berkeley, Berkeley, CA, United States | |
2013 | Yale University, New Haven, CT | ||
2013- | Civil and Environmental Engineering | Stanford University, Palo Alto, CA |
Area:
Environmental Engineering, Sanitary and Municipal Engineering, Chemical EngineeringWebsite:
https://cee.stanford.edu/people/william-mitchGoogle:
"William Armistead Mitch" OR "William A Mitch"Cross-listing: Envirotree
Parents
Sign in to add mentorDavid L. Sedlak | grad student | 2003 | UC Berkeley | |
(Prevention of the formation of N-nitrosodimethylamine (NDMA) during wastewater chlorination.) |
Children
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Publications
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Lau SS, Feng Y, Gu AZ, et al. (2023) Cytotoxicity Comparison between Drinking Water Treated by Chlorination with Postchloramination versus Granular Activated Carbon (GAC) with Postchlorination. Environmental Science & Technology |
Suh MJ, Simpson AM, Mitch WA. (2023) Purified Chlorine Dioxide as an Alternative to Chlorine Disinfection to Minimize Chlorate Formation During Postharvest Produce Washing. Environmental Science & Technology. 57: 12063-12071 |
Zhao J, Payne EM, Liu B, et al. (2023) Making waves: Opportunities and challenges of applying far-UVC radiation in controlling micropollutants in water. Water Research. 241: 120169 |
Galdi SM, Szczuka A, Shin C, et al. (2022) Dissolved Methane Recovery and Trace Contaminant Fate Following Mainstream Anaerobic Treatment of Municipal Wastewater. Acs Es&T Engineering. 3: 121-130 |
Shin C, Szczuka A, Liu MJ, et al. (2022) Recovery of Clean Water and Ammonia from Domestic Wastewater: Impacts on Embodied Energy and Greenhouse Gas Emissions. Environmental Science & Technology |
Leonard LT, Vanzin GF, Garayburu-Caruso VA, et al. (2022) Disinfection byproducts formed during drinking water treatment reveal an export control point for dissolved organic matter in a subalpine headwater stream. Water Research X. 15: 100144 |
Zhang Z, Chuang YH, Szczuka A, et al. (2021) Corrigendum to Pilot-scale evaluation of oxidant speciation, 1,4-dioxane degradation and disinfection byproduct formation during UV/hydrogen peroxide, UV/free chlorine and UV/chloramines advanced oxidation process treatment for potable reuse'[Water Research, Volume 164, 1 November 2019, 114939]. Water Research. 208: 117868 |
Smith DW, Islam M, Furst KE, et al. (2021) Chlorine taste can increase simulated exposure to both fecal contamination and disinfection byproducts in water supplies. Water Research. 207: 117806 |
Suh MJ, Mitch WA. (2021) Sunlight-Driven Chlorate Formation during Produce Irrigation with Chlorine- or Chloramine-Disinfected Water. Environmental Science & Technology |
Xu J, Zheng X, Feng Z, et al. (2021) Organic wastewater treatment by a single-atom catalyst and electrolytically produced HO. Nature Sustainability. 4: 233-241 |