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个人简介

2009.07-至今昆明理工大学环境科学与工程学院,教授博导; 2014.03-2015.04 美国麻省大学农学院,环境土壤科学,博士后; 2010.09-2012.12 昆明理工大学环境科学与工程学院,博士; 2007.08- 2008.11 中国汽车要闻(China Business Update)美国总部; 2006.11-2007.08 美国麻省大学环境土壤化学实验室; 2006.05-2006.08 德国海因里希·伯尔基金会华盛顿办公室; 2004.11-2006.11 德国海因里希·伯尔基金会北京办事处(环境项目主管); 2002.09-2005.06 北京大学环境学院,环境信息系统,硕士研究生; 1998.09-2002.07 武汉大学资源与环境学院,环境化学,理学学士。

研究领域

生物炭的环境效应 持久性污染物的环境行为

近期论文

查看导师新发文章 (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.Wu M, Pan B, Zhang D, Ning P. The sorption of organic contaminants on biochars derived from sediments with high organic carbon content. Chemosphere. 2013, 90(2): 782-788. 2.Wu M, Wang XJ, Luo DG. Application of MODIS satellite data in monitoring water quality parameters of Chaohu Lake in China. Environmental Monitoring and Assessment. 2009, 148(1-4): 255-264. 3.Chang ZF, Tian LP, Li FF, Zhou YW, Wu M*, Steinberg CEW, Dong XD, Pan B, Xing BS. Benzene polycarboxylic acid - A useful marker for condensed organic matter, but not for only pyrogenic black carbon. Science of The Total Environment. 2018, 626: 660-667. 4.Chang ZF, Tian LP, Wu M*, Dong XD, Peng J, Pan B. Molecular markers of benzene polycarboxylic acids in describing biochar physiochemical properties and sorption characteristics. Environmental Pollution. 2018, 237: 541-548. 5.Zhou DD, Ghosh S, Zhang D, Liang N, Dong XD, Wu M*, Pan B. Role of Ash Content in Biochar for Copper Immobilization. Environmental Engineering Science. 2016, 33(12): 962-969. 6.Guo HY, Li H, Liang N, Chen FY, Liao SH, Zhang D, Wu M*, Pan B. Structural benefits of bisphenol S and its analogues resulting in their high sorption on carbon nanotubes and graphite. Environmental Science and Pollution Research. 2016, 23(9): 8976-8984. 7.Dong XD, Wang C, Li H, Wu M*, Liao SH, Zhang D, Pan B. The sorption of heavy metals on thermally treated sediments with high organic matter content. Bioresource Technology. 2014, 160: 123-128. 8.Zhou DD, Chen BF, Wu M*, Liang N, Zhang D, Li H, Pan B. Ofloxacin sorption in soils after long-term tillage: The contribution of organic and mineral compositions. Science of the Total Environment. 2014, 497: 665-670. 9.Wu D, Li H, Zhang D, Wu M*. To measure the absorbance at 328nm by ultraviolet-visible spectrophotometer - an alternative pathway to measure the activity of Acetyl Cholinesterase. Advanced Materials Research. 2014, 887-888: 657-660.

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