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副教授

198709月生

博士

南京师范大学环境学院1B831


联系方式

电子邮箱:ljn006@126.com

办公室:南京师范大学仙林校区环境学院E313

通信地址:南京市栖霞区文苑路1


教育背景

2014.102017.09,日本东京农工大学,应用化学,博士学位

2011.092014.06,中国环境科学研究院,环境科学,硕士学位

2006.09–2010.06,济南大学,环境工程,学士学位


研究经历

2019.11-至今,南京师范大学,环境学院

2019.04-2019.08,日本国立环境研究所资源循环与固废研究中心,特别研究员

2017.04-2019.03,日本东京农工大学,学术振兴会(JSPS)特别研究员


主要研究方向

土壤/固废重金属污染化学、风险管控及修复效果评估


获奖情况

2017年国家优秀自费留学生奖学金


承担(参与)的主要科研项目

[1] 日本学术振兴会(JSPS)特别研究基金(17J07673),建筑工事挖掘土壤砷的溶出潜能评价及人为天然来源判定法开发,主持,2017.042019.03

[2] 日本环境省基金(5-1606),微观分析与溶出试验联用判定土壤污染物的人为天然来源,参与,2016.042019.03


近期发表论文、专利

[1] JN Li, Y Hashimoto, S Riya, A Terada, H Hou, Y Shibagaki, M Hosomi*. Removal and immobilization of heavy metals in contaminated soils by chlorination and thermal treatment on an industrial scale. Chemical Engineering Journal, 2019, 359: 385392.

[2] JN Li, T Kosugi, S Riya, Y Hashimoto, H Hou, A Terada, M Hosomi*. Investigations of water-extractability of As in excavated urban soils using sequential leaching tests: Effect of testing parameters. Journal of Environmental Management, 2018, 217: 297304.

[3] JN Li, H Hou*, M Hosomi. Sorption-desorption of Sb(III) in different soils: Kinetics and effects of the selective removal of hydroxides, organic matter, and humic substances. Chemosphere, 2018, 204: 371377.

[4] JN Li, T Kosugi, S Riya, Y Hashimoto, H Hou, A Terada, M Hosomi*. Pollution potential leaching index as a tool to assess water leaching risk of arsenic in excavated urban soils. Ecotoxicology and Environmental Safety, 2018, 147: 7279.

[5] JN Li, T Kosugi, S Riya, Y Hashimoto, H Hou, A Terada, M Hosomi*. Use of batch leaching tests to quantify arsenic release from excavated urban soils with relatively low levels of arsenic. Journal of Soils and Sediments, 2017, 17: 21362143.

[6] JN Li, T Kosugi, S Riya, Y Hashimoto, H Hou, A Terada, M Hosomi*. Potential for leaching of arsenic from excavated rock after different drying treatments. Chemosphere, 2016, 154: 276282.

[7] JN Li#, Y Wei#, L Zhao, J Zhang, YX Shangguan, FS Li, Hong Hou*. Bioaccessibility of antimony and arsenic in highly polluted soils of the mine area and health risk assessment associated with oral ingestion exposure. Ecotoxicology and Environmental Safety, 2014, 110: 308315.

[8] T Itabashi, JN Li, Y Hashimoto*, M Ueshima, H Sakanakura, T Yasutaka, Y Imoto, M Hosomi. Speciation and fractionation of soil arsenic from natural and anthropogenic sources: chemical extraction, SEM and micro-XRF/XAFS investigation. Environmental Science & Technology, 2019, 53: 14186−14193.

[9] Y Wei#, Q Su#, ZJ Sun, YQ Shen, JN Li, XL Zhu, H Hou*, ZP Chen, FC Wu*. The role of arbuscular mycorrhizal fungi in plant uptake, fractions, and speciation of antimony. Applied Soil Ecology, 2016, 107: 244250.

[10] Y Wei, ZP Chen, FC Wu, JN Li, YX Shangguan, FS Li, QR Zeng, H Hou*. Diversity of arbuscular mycorrhizal fungi associated with a Sb accumulator plant, ramie (Boehmeria nivea), in an active Sb mining. Journal of Microbiology and Biotechnology, 2015, 25(8): 12051215.

[11] H Hou*, N Yao, JN Li, Y Wei, L Zhao, J Zhang, FS Li. Migration and leaching risk of extraneous antimony in three representative soils of China: Lysimeter and batch experiments. Chemosphere, 2013, 93(9): 19801988.


下一条:李慧明

南京师范大学环境学院,中国南京市文苑路1号 邮编:210023 School of Environment, Nanjing Normal University, No.1, Wenyuan Road, Nanjing, China, 210023 

联系电话:(025)85891455;传真:(025)85891455;Email:envi@njnu.edu.cn