Weilin Huang
Affiliations: | Drexel University, Philadelphia, PA, United States |
Area:
Environmental Engineering, Environmental Sciences, Soil Science AgricultureGoogle:
"Weilin Huang"Cross-listing: E-Tree
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Publications
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Li J, Yang X, Zhang Z, et al. (2020) Aggregation kinetics of diesel soot nanoparticles in artificial and human sweat solutions: Effects of sweat constituents, pH, and temperature. Journal of Hazardous Materials. 403: 123614 |
Liu Y, Huang Z, Zhou J, et al. (2020) Influence of environmental and biological macromolecules on aggregation kinetics of nanoplastics in aquatic systems. Water Research. 186: 116316 |
Li D, Zhong Y, Zhu X, et al. (2020) Enhanced reactivity of iron monosulfide towards reductive transformation of tris(2-chloroethyl) phosphate in the presence of cetyltrimethylammonium bromide. Environmental Pollution (Barking, Essex : 1987). 262: 114282 |
Duan Z, Zhang W, Lu M, et al. (2020) Magnetic Fe3O4/activated carbon for combined adsorption and Fenton oxidation of 4-chlorophenol Carbon. 167: 351-363 |
Li Y, Li J, Wang D, et al. (2019) Denitrifying Microbial Community Structure and bamA Gene Diversity of Phenol Degraders in Soil Contaminated from the Coking Process. Applied Biochemistry and Biotechnology |
Gao K, Jiang M, Guo C, et al. (2019) Reductive dissolution of jarosite by a sulfate reducing bacterial community: Secondary mineralization and microflora development. The Science of the Total Environment. 690: 1100-1109 |
Liu Y, Hu Y, Yang C, et al. (2019) Aggregation kinetics of UV irradiated nanoplastics in aquatic environments. Water Research. 163: 114870 |
Qiao J, Li X, Li F, et al. (2019) Humic substances facilitate arsenic reduction and release in flooded paddy soil. Environmental Science & Technology |
Xia D, Yi X, Lu Y, et al. (2019) Dissimilatory iron and sulfate reduction by native microbial communities using lactate and citrate as carbon sources and electron donors. Ecotoxicology and Environmental Safety. 174: 524-531 |
Fan C, Guo C, Zeng Y, et al. (2019) The behavior of chromium and arsenic associated with redox transformation of schwertmannite in AMD environment Chemosphere. 222: 945-953 |