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个人简介

教育经历 2003.09-2006.07 中国科学院,生态环境研究中心 博士 2000.09-2003.07 长安大学,环境学院 硕士 1996.09-2000.07 西安建筑科技大学,冶金学院 学士 工作经历 2018.08 - 北京大学环境科学与工程学院 特聘研究员(新体制长聘) 2015.03-2015.06 法国巴黎地球物理研究所 访问教授 2011.08-2018.07 北京大学环境科学与工程学院 副教授 2010.03-2010.08 美国华盛顿大学 访问学者 2008.11-2011.07 北京大学环境科学与工程学院 讲师 2006.10-2008.11 北京大学环境学院 博士后

研究领域

饮用水安全保障理论与技术 (1)环境光量子效应基础理论 (2)基于光谱技术的表征新方法与新仪器 (3)天然有机物(NOM)与污染物迁移转化机制 (4)碘污染与碘代类消毒副产物生成机制、健康风险 (5)水质净化新技术与新材料

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

(1) Yan M.Q.*, Han X.Z., Zhang C.Y., 2017. Investigating the features in differential absorbance spectra of NOM associated with metal ion binding: A comparison of experimental data and TD-DFT calculations for model compounds. Water Res 124, 496-503. (2) Yan M.Q.*, Korshin G., 2014. Comparative examination of effects of binding of different metals on chromophores of dissolved organic matter. Environ Sci Technol 48, 3177-3185. (3) Yan, M.Q.*, Korshin, G.V., Claret, F., Croué, J.P., Fabbricino, M., Gallard, H., Schäfer, T., Benedetti, M.F., 2014. Effects of charging on the chromophores of dissolved organic matter from the Rio Negro basin. Water Res 59, 154-164. (4) Yan M.Q.*, Korshin G., Chang H.S., 2014. Examination of disinfection by-products (DBPs) formation in source waters: A study using Log-transformed differential spectra. Water Res 50: 179-188. (5) Yan M.Q.*, Wang D.S., Korshin G., Benedetti M.F., 2013. Quantifying metal ions binding onto dissolved organic matter using log-transformed absorbance spectra. Water Res 47(7): 2603–2611. (6) Yan M.Q.*, Li M.Y., Roccaro P., Korshin G, 2016. Ternary model of the speciation of I/Br/Cl- trihalomethanes formed in chloraminated surface waters. Environ Sci Technol 50, 4468-4475. (7) Ma J., Yan M.Q.*, Kuznetsov A.M., Masliy A.N., Ji, G., Korshin G.V., 2015. Rotating ring-disk electrode and quantum chemical study of the electrochemical reduction of monoiodoacetic acid and iodoform. Environ Sci Technol 49, 13542-13549. (8) Zhou Y.X., Yan M.Q.*, Liu R.P., Wang D.S., Qu J.H., 2017. Investigating the effect of hardness cations on coagulation: The aspect of neutralisation through Al(III)-DOM binding. Water Res 115, 22-28. (9) Yan M.Q., Wang D.S.*, Ni J.R., Qu J.H., Chow C.W.K., 2008. Enhanced coagulation for high alkalinity and micro-polluted water: The third way through coagulant optimization. Water Res 42(8-9): 2278-2286. (10) Yan M.Q.*, Wang D.S.*, Qu J.H., Ni J.R., Chow C.W.K., Liu H.L., 2008. Mechanism of natural organic matter removal by polyaluminum chloride: Effect of coagulant particle size and hydrolysis kinetics. Water Res 42(13): 3361-3370.

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