Masakazu Kanematsu, Ph.D.

Affiliations: 
2011 Civil and Environmental Engineering University of California, Davis, Davis, CA 
Area:
Environmental Engineering, Geochemistry, Environmental Sciences
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Thomas M Young grad student 2011 UC Davis
 (Arsenate removal by a goethite-based adsorbent: Application of the extended triple layer modeling and extensive column tests.)
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Publications

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Leven A, Vlassopoulos D, Kanematsu M, et al. (2018) Characterization of manganese oxide amendments for in situ remediation of mercury-contaminated sediments. Environmental Science. Processes & Impacts
Vlassopoulos D, Kanematsu M, Henry EA, et al. (2018) Manganese(iv) oxide amendments reduce methylmercury concentrations in sediment porewater. Environmental Science. Processes & Impacts
Perdrial N, Vázquez-Ortega A, Wang G, et al. (2018) Uranium speciation in acid waste-weathered sediments: The role of aging and phosphate amendments Applied Geochemistry. 89: 109-120
Kanematsu M, Perdrial N, Um W, et al. (2014) Influence of phosphate and silica on U(VI) precipitation from acidic and neutralized wastewaters. Environmental Science & Technology. 48: 6097-106
Abid AD, Kanematsu M, Young TM, et al. (2013) Arsenic removal from water using flame-synthesized iron oxide nanoparticles with variable oxidation states. Aerosol Science and Technology : the Journal of the American Association For Aerosol Research. 47: 169-176
Kanematsu M, Young TM, Fukushi K, et al. (2013) Arsenic(III, V) adsorption on a goethite-based adsorbent in the presence of major co-existing ions: Modeling competitive adsorption consistent with spectroscopic and molecular evidence Geochimica Et Cosmochimica Acta. 106: 404-428
Kanematsu M, Young TM, Fukushi K, et al. (2012) Individual and combined effects of water quality and empty bed contact time on As(V) removal by a fixed-bed iron oxide adsorber: implication for silicate precoating. Water Research. 46: 5061-70
Kanematsu M, Young TM, Fukushi K, et al. (2011) Quantification of the effects of organic and carbonate buffers on arsenate and phosphate adsorption on a goethite-based granular porous adsorbent. Environmental Science & Technology. 45: 561-8
Kanematsu M, Young TM, Fukushi K, et al. (2010) Extended triple layer modeling of arsenate and phosphate adsorption on a goethite-based granular porous adsorbent. Environmental Science & Technology. 44: 3388-94
Chen W, Erker BT, Kanematsu M, et al. (2010) Disposal of Arsenic-Laden Adsorptive Media: Economic Analysis for California Journal of Environmental Engineering. 136: 1082-1088
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