Hongyin Zhang, Ph.D.
Affiliations: | 2013 | Civil and Environmental Engineering | University of Rhode Island, Providence, RI, United States |
Area:
Environmental Engineering, Environmental Sciences, Environmental HealthGoogle:
"Hongyin Zhang"Cross-listing: Envirotree
Parents
Sign in to add mentorVinka Oyanedel-Craver | grad student | 2013 | University of Rhode Island | |
(Application of silver nanoparticles in drinking water purification.) |
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Publications
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Guo W, Zhang H, Zhang X, et al. (2017) Preparation of nanoparticle and nanowire mixed pastes and their low temperature sintering Journal of Alloys and Compounds. 690: 86-94 |
Chen SF, Zhang H. (2014) Stability and sedimentation of silver nanoparticles in the presence of monovalent, divalent and trivalent electrolyte solutions. Water Science and Technology : a Journal of the International Association On Water Pollution Research. 70: 361-6 |
Chen SF, Zhang H, Lin QY. (2013) Effect of different water conditions on dissolution of nanosilver. Water Science and Technology : a Journal of the International Association On Water Pollution Research. 68: 1745-50 |
Zhang H, Oyanedel-Craver V. (2013) Comparison of the bacterial removal performance of silver nanoparticles and a polymer based quaternary amine functiaonalized silsesquioxane coated point-of-use ceramic water filters. Journal of Hazardous Materials. 260: 272-7 |
Rayner J, Zhang H, Schubert J, et al. (2013) Laboratory investigation into the effect of silver application on the bacterial removal efficacy of filter material for use on locally produced ceramic water filters for household drinking water treatment Acs Sustainable Chemistry and Engineering. 1: 737-745 |
Zhang H, Smith JA, Oyanedel-Craver V. (2012) The effect of natural water conditions on the anti-bacterial performance and stability of silver nanoparticles capped with different polymers. Water Research. 46: 691-9 |
Zhang H, Oyanedel-Craver V. (2012) Evaluation of the disinfectant performance of silver nanoparticles in different water chemistry conditions Journal of Environmental Engineering (United States). 138: 58-66 |