同济大学
导师风采
王锐
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个人信息

Personal Information

  • 副教授
  • 导师类别:硕士,博士生导师
  • 性别: 女
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:环境科学与工程学院
  • 所属专业: 环境科学
  • 邮箱 : wangr@tongji.edu.cn
  • 工作电话 : -

个人简介

Personal Profile

2008年获南京大学环境学院学士学位,2012年获香港科技大学生命科学部博士学位,2013年入职同济。研究工作长期聚焦汞等有毒金属生物地球化学与生态毒理学,尤其关注水生生态系统中汞等金属污染物的环境行为、生物累积与食物链传递,入选2014年度上海市晨光计划、入选2022年度上海市青年科技启明星计划。


  • 研究方向Research Directions
水生生态系统污染物的生物地球化学循环
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
近五年科研项目

(1)国家自然科学基金面上项目:长江口咸淡水混合多因素联控下的汞原位转化及其生物累积响应(42176152),2022.01-2025.12,项目负责人

(2)国家重点研发计划“长江黄河等重点流域水资源与水环境综合治理”专项项目:长江下游流域污染源数据库与风险源分布热点图,2021.12-2024.11,项目负责人

(3)上海市科委青年科技启明星项目:长江口汞的入海通量、原位转化与风险溯源,2023.04-2026.03,项目负责人

(4)同济大学学科交叉联合攻关首批示范项目:微生物介导有机碳转化对河口沉积物微量元素多相态转化与界面迁移的影响,2021.08-2023.07,项目负责人

(5)三峡集团长江大保护专项课题:长江泥沙环境效应调查及分析研究,2019.11-2022.10,项目负责人

(6)国家海底科学观测系统项目研发课题:海洋浮游生物观测技术与设备在东海海域应用可靠性与数据质量方法研究—以浮游生物在线成像与分类系统观测技术研究为例,2018.01-2020.01,项目负责人

(7)上海市晨光计划项目:鱼体中硒-汞拮抗效应及其分子机制研究(14CG17),2015.1-2017.12,项目负责人

(8)中国-瑞典合作项目:长三角地区化学品污染胁迫与风险研究(Chemstrres-YRD),2014.01-2018.12,项目参与人

(9)中国-瑞典合作项目:汞管理研究框架(SMaRef),2014.01-2018.12,项目参与人


代表性研究成果

Liang, Y., Wang, R*, Sheng, G.D., Pan, L., Lian, E., Su, N., Tang, X., Yang, S., Yin, D. Geochemical controls on the distribution and bioavailability of heavy metals in sediments from Yangtze River to the East China Sea: Assessed by sequential extraction versus diffusive gradients in thin-films (DGT) technique. Journal of Hazardous Materials. 2023, 452, 131253.

Cao, F., Yang, S., Yin, D., Wang, R*. Geochemical controls on the distribution of total mercury and methylmercury in sediments and porewater from the Yangtze River Estuary to the East China Sea. Science of the Total Environment. 2023, 892, 164737.

Li, P., Wang, R*, Kainz, M.J., Yin, D. Algal density controls the spatial variations in Hg bioconcentration and bioaccumulation at the base of the pelagic food web of Lake Taihu, China. Environmental Science & Technology. 2022, 56, 14528-14538.

Zheng, S., Wang, R*, Kainz, M.J., Liu, C., Li, P., Li, Z., Yan, H., Yin, D. How Phytoplankton Biomass Controls Metal(loid) Bioaccumulation in Size-fractionated Plankton in Anthropogenic-impacted Subtropical Lakes: A comprehensive Study in the Yangtze River Delta, China. Water Research. 2022, 224, 119075.

Liu, C., Wang, R*, Gao, H., Wu, X., Yin, D. Transport of trace metals and their bioaccumulation inzooplankton from Changjiang (Yangtze River) to the East China Sea. Science of the Total Environment. 2022, 851,158156.

Zou, C., Wang, R*, Yin, D. Mercury and selenium bioaccumulation in wild commercial fish in the coastal East China Sea: selenium benefits versus mercury risks. Marine Pollution Bulletin. 2022, 180, 113754.

Wang, R., Zhang, C., Huang, X., Zhao, L., Yang, S., Struck, U., Yin, D*. Distribution and source of heavy metals in the sediments of the coastal East China Sea: Geochemical controls and typhoon impact. Environmental Pollution. 2020, 260, 113936.

Su, T., Lin, X., Huang, Q., Jiang, D., Zhang, C., Zhang, X., Dingle, C., Goodale, E., Que, P., Wang, R*., Liu, Y*. Mercury exposure in sedentary and migratory Charadrius plovers distributed widely across China, Environmental Science and Pollution Research, 2020, 27, 4236-4245.

Zhao, L., Wang, R.*, Zhang, C., Yin, D., Yang, S., Huang, X. Geochemical controls on the distribution of mercury and methylmercury in sediments of the coastal East China Sea. Science of the Total Environment, 2019, 667, 133-141.

Wang, R., Wang, W.-X*. Diet-specific trophic transfer of mercury in tilapia (Oreochromis niloticus): Biodynamic perspective. Environmental Pollution, 2018, 234, 288-296.

Wang, R.; Hua, M., Yu, Y.; Zhang, M.; Xian, Q.; Yin D*. Evaluating the effects of allelochemical ferulic acid on Microcystis aeruginosa by pulse-amplitude-modulated (PAM) fluorometry and flow cytometry. Chemosphere2016,147, 264-271.

Li, X.; Yin, D.; Yin, J.; Chen, Q.; Wang, R.*. Dietary selenium protect against redox-mediated immune suppression induced methylmercury exposure. Food and Chemical Toxicology. 2014, 72, 169-177.

Li, X.; Yin, D.; Li, J.; Wang, R.*. Protective effects of selenium on mercury induced immunotoxic effects in mice by way of concurrent drinking water exposure. Archives of Environmental Contamination and Toxicology. 2014, 67, 104-114.

Wang, R.; Feng, X.; Wang, W.-X*. In vivo mercury methylation and demethylation in freshwater tilapia quantified by mercury stable isotopes. Environmental Science & Technology. 2013, 47, 7949-7957.

Wang, R.; Wang, W.-X*. Contrasting mercury accumulation patterns in tilapia (Oreochromis Niloticus) and implications on somatic growth dilution. Aquatic Ecotoxicology. 2012,114-115, 23-30.

Wang, R.; Wang, W.-X*. Importance of speciation in understanding mercury bioaccumulation in tilapia controlled by salinity and dissolved organic matter. Environmental Sciences and Technology. 2011,44,7964-7969.

Wang, R.; Wong, M.-H.; Wang, W.-X*. Coupling of methylmercury uptake with respiration and water pumping in freshwater tilapia Oreochromis niloticus. Environmental Toxicology and Chemistry. 2011, 30, 2142-2147.

Wang, R.; Wong, M.-H.; Wang, W.-X*. Mercury exposure in the freshwater tilapia Oreochromis niloticus. Environmental Pollution. 2010, 158, 2694-2701.


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