教师简介
姓名:沈墨海 职务: 职称:副教授 电子邮箱:mohaishen@163.com;mhshen@htu.edu.cn | ||
个人简历 | ||
沈墨海,2015年获得中国科学院生态环境研究中心环境科学博士学位,同年加入Betway官方客服环境学院。环境科学科与工程专业硕士生导师。主要研究方向为新型污染物环境过程与效应。具体开展多环境介质中不同形态和来源有机质和细颗粒物对微纳塑料、纳米材料和阻燃剂等新型污染物的污染物环境迁移、转化和生物效应的影响研究。主持承担国家自然科学基金、国家博士后面上项目等各类项目6项,以第一/通讯作者在Water Res.、J. Hazard. Mater.、Sci. Total Environ.等环境科学领域国际顶级期刊发表SCI论文十余篇。 | ||
教育/工作经历 | ||
2023.04-至今 Betway官方客服环境学院 副教授 2015.07-2023.04 Betway官方客服环境学院 讲师 2011.09-2015.07 中国科学院生态环境研究中心 博士 2008.09-2011.07 北京师范大学大学环境学院 硕士 2003.09-2007.07 武汉理工大学资环学院 学士 | ||
研究领域 | ||
新型污染物环境过程与效应 | ||
主要学术及社会兼职 | ||
1. Journal of Hazardous Materials ,Chemosphere等SCI期刊审稿人 | ||
科研项目情况 | ||
[1] 国家自然科学基金青年项目,水环境中微塑料与溶解性有机质复合光转化及迁移行为研究,21806030, 2019.01-2021.12,主持 [2] 中国博士后科学基金面上项目,水环境中微塑料与污水有机质复合光转化及迁移行为研究,2018M642756,2019.01-2020.12,主持 [3] 河南省高等学校重点科研项目,水体天然有机质异质性对石墨烯类纳米材料迁移行为的影响研究,16A610002,2016.01-2017.12,主持 [4] 国家自然科学基金重点项目,水环境中纳米材料形态的分析新方法,转化机制及生物效应,21337004,2014.01-2018.12,参加 [5] 国家自然科学基金仪器专项基金项目,纳米材料多维分离纯化系统的研制,21227012,2013.01-2016.12,参加。 | ||
代表性论文 | ||
[1] Mohai Shen, Wenwen Song, Xinyue Shi, Shaojie Wang, Hui Wang, Jing Liu, Wanwan Jin, Shunli Fan*, Zhiguo Cao*. New Insights into Physicochemical Properties of Different Particulate Size-fractions and Dissolved Organic Matter Derived from Biochars and Their Sorption Capacity for Phenanthrene. Journal of Hazardous Materials. 2022, 434: 128867-128876 [2]Mohai Shen, Meihui Ren, Yange Wan, Fangfang Shen, Ruojin Du, Lijun Quan, Ya Wei, Tingting Zhang⁎, Jinghua Li, Guangxuan Yan, Jianbiao Peng, Zhiguo Cao*. Identifying dust as the dominant source of exposure to heavy metals for residents around battery factories in the Battery Industrial Capital of China. Science of the total environment, 2021, 765, 144375 [3]Mohai Shen*, Xiao Hai, Yaxin Shang, Chuanrong Zheng, Peiwen Li, Yao Li, Wanwan Jin, Danlin Li, Yajuan Li, Jingyi Zhao, Hengtao Lei, Hui Xiao, Yunbei Li, Guangxuan Yan, Zhiguo Cao, Qingwei Bu. Insights into aggregation and transport of graphene oxide in aqueous and saturated porous media: Complex effects of cations with different molecular weight fractionated natural organic matter. Science of the Total Environment, 2019, 656: 843-851 [4] Sujuan Yu, Mohai Shen, Shasha Li, Yueju Fu, Dan Zhang, Huayi Liu, Jingfu Liu*. Aggregation kinetics of different surface-modified polystyrene nanoparticles in monovalent and divalent electrolytes. Environmental Pollution. 2019, 255(2): 113302-113311 [5] Sujuan Yu, Jingfu Liu*, Yongguang Yin, Mohai Shen. Interactions between engineered nanoparticles and dissolved organic matter: A review on mechanisms and environmental effects. Journal of Environmental Sciences, 2018, 63: 198-217 (Review) [6] Zhiguo Cao, Leicheng Zhao, Meng, Xiaotu Liu, Peipei Wu, Xinyi Fan, Shihua Wang, Jianye Jie, Zheng Miao, Xiaopeng Xu, Mohai Shen*, Qingwei Bu*, Amplification effect of haze on human exposure to halogenated flame retardants in atmospheric particulate matter and the corresponding mechanism. Journal of Hazardous Materials, 2018, 359: 491-499 [7]Mohai Shen, Yongguang Yin, Andy Booth, Jingfu Liu*. Effects of molecular weight-dependent physicochemical heterogeneity of natural organic matter on the aggregation of fullerene nanoparticles in mono- and di-valent electrolyte solutions. Water Research, 2015, 71:11-20 [8] Mohai Shen,Xiaoxia Zhou,Xiaoya Yang,JingboChao,Rui Liu,Jingfu Liu*. Exposure medium: key in identifying free Ag+ as the exclusive species of silver nanoparticles with acute toxicity to Daphnia magna. Scientific Reports, 2015, 5:9674-9674 [9] Mohai Shen, Xinghui Xia *, Yawei Zhai,Xiaotian Zhang,Xiuli Zhao, Pu Zhang. Influence of carbon nanotubes with preloaded and coexisting dissolved organic matter on the bioaccumulation of polycyclic aromatic hydrocarbons to Chironomus plumosus larvae in sediment. Environmental Toxicology and Chemistry, 2014, 33(1):182-189 [10] Mohai Shen, Xinghui Xia *, Fan Wang,Pu Zhang,Xiuli Zhao. Influences of multiwalled carbon nanotubes and plant residue chars on bioaccumulation of polycyclic aromatic hydrocarbons by Chironomus plumosus larvae in sediment. Environmental Toxicology and Chemistry, 2012, 31(1):202-209 |