Langping Wu
Affiliations: | 2019-2021 | University of Toronto, Toronto, ON, Canada |
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Publications
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Suchana S, Wu L, Passeport E. (2023) Compound-Specific Carbon, Hydrogen, and Nitrogen Isotope Analysis of Nitro- and Amino-Substituted Chlorobenzenes in Complex Aqueous Matrices. Analytical Chemistry. 95: 6801-6809 |
Rodgers TFM, Wu L, Gu X, et al. (2022) Stormwater Bioretention Cells Are Not an Effective Treatment for Persistent and Mobile Organic Compounds (PMOCs). Environmental Science & Technology. 56: 6349-6359 |
Wu L, Suchana S, Flick R, et al. (2021) Carbon, hydrogen and nitrogen stable isotope fractionation allow characterizing the reaction mechanisms of 1H-benzotriazole aqueous phototransformation. Water Research. 203: 117519 |
Lian S, Wu L, Nikolausz M, et al. (2019) H and C isotope fractionation analysis of organophosphorus compounds for characterizing transformation reactions in biogas slurry: Potential for anaerobic treatment of contaminated biomass. Water Research. 163: 114882 |
Wu L, Moses S, Liu Y, et al. (2019) A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis. Analytica Chimica Acta. 1064: 56-64 |
Liu J, Wu L, Kümmel S, et al. (2018) Carbon and hydrogen stable isotope analysis for characterizing the chemical degradation of tributyl phosphate. Chemosphere. 212: 133-142 |
Wu L, Verma D, Bondgaard M, et al. (2018) Carbon and hydrogen isotope analysis of parathion for characterizing its natural attenuation by hydrolysis at a contaminated site. Water Research. 143: 146-154 |
Passeport E, Zhang N, Wu L, et al. (2018) Aqueous photodegradation of substituted chlorobenzenes: Kinetics, carbon isotope fractionation, and reaction mechanisms. Water Research. 135: 95-103 |
Wu L, Chládková B, Lechtenfeld OJ, et al. (2017) Characterizing chemical transformation of organophosphorus compounds by (13)C and (2)H stable isotope analysis. The Science of the Total Environment. 615: 20-28 |
Wu L, Kümmel S, Richnow HH. (2017) Validation of GC-IRMS techniques for δ(13)C and δ(2)H CSIA of organophosphorus compounds and their potential for studying the mode of hydrolysis in the environment. Analytical and Bioanalytical Chemistry |