姓名:张伟
性别:女
学历:博士
职称:副研究员
工作单位:中国科学院南海海洋研究所
教育情况:
2009.09-2012.06 中国科学院南海海洋研究所,环境科学,博士
2006.09-2009.06 广东海洋大学&中国水产科学院南海水产研究所,水产养殖,硕士
2000.09-2004.06 天津农学院,水产养殖,学士
工作经历:
2016.12-至今 中国科学院南海海洋研究所,副研究员
2012.07-2016.11 中国科学院南海海洋研究所,助理研究员
2015.08-2016.01 香港科技大学,生物系,访问学者
2012.03-2012.05 香港科技大学,生物系,研究助理
2010.08-2011.01 香港科技大学,生物系,研究助理
所受奖项:
2017/05 广州市珠江科技新星
2012/12 中国科学院院长优秀奖
2012/06 中国科学院优秀博士毕业生
主要研究方向:
主要从事海洋生态毒理学研究。类金属元素砷不仅是首要的环境污染物,也是海产品砷超标等食品安全问题的元凶之一。针对砷在海洋鱼贝类体内高富集现象,利用先进理论模型与实验技术(放射性同位素示踪等),解析了“为什么海洋生物具有高砷富集能力”这一关键科学问题。
主要擅长海洋生态学和海洋生态毒理学领域。
代表性著作:
1. Zhang W, Wang W-X, Zhang L, 2017. Prey-specific determination of arsenic bioaccumulation and transformation in a marine benthic fish. Science of the Total Environment, 586, 296-303.
2. Zhang W, Wang W-X, Zhang L, 2016. Comparison of bioavailability and biotransformation of inorganic and organic arsenic to two marine fish. Environmental Science &Technology, 50, 2413-2423.
3. Zhang W, Guo Z Q, Zhou Y Y et al. 2016. Comparative contribution of trophic transfer and biotransformation on arsenobetaine bioaccumulation in two marine fish. Aquatic Toxicology, 179, 65-71.
4. Zhang W#, Chen L Z#, Zhou Y Y et al. 2016. Biotransformation of inorganic arsenic in a marine herbivorous fish Siganus fuscescens after dietborne exposure. Chemosphere, 147, 297-304.
5. Zhang W, Zhang Y H, Zhang L, et al. 2016. Bioaccumulation of metals in tissues of seahorses collected from coastal China. Bulletin of Environmental Contamination and Toxicology, 96, 281-288.
6. Zhang W, Guo Z Q, Zhou Y Y et al. 2015. Biotransformation and detoxification of inorganic arsenic in Bombay oyster (Saccostrea cucullata). Aquatic Toxicology, 158, 33–40.
7. Zhang W, Wang W-X, Zhang L. 2013. Arsenic speciation and spatial and interspecies differences of metal concentrations in mollusks and crustaceans from a South China estuary. Ecotoxicology, 22, 671–682.
8. Zhang W, Huang L M, Wang W-X. 2012. Biotransformation and detoxification of inorganic arsenic in a marine juvenile fish Terapon jarbua after waterborne and dietary exposures. Journal of Hazardous Materials, 221–222, 162–169.
9. Zhang W, Wang W-X. 2012. Large-scale spatial and interspecies differences in trace elements and stable isotope in marine wild fish from Chinese waters. Journal of Hazardous Materials, 215–216, 65–74.
10. Zhang W, Huang L M, Wang W-X. 2011. Arsenic bioaccumulation in a marine juvenile fish Terapon jarbua. Aquatic Toxicology, 105, 582–588.
11. Zhou Y Y, Zhang W, Guo Z Q, et al. 2017. Effects of salinity and copper co-exposure on copper bioaccumulation in marine rabbitfish Siganus oramin. Chemosphere, 168, 491-500.
12. Guo Z Q, Zhang W, Du Sen, et al. 2016. Developmental patterns of copper bioaccumulation in a marine fish model Oryzias melastigma. Aquatic Toxicology, 170, 216-222.
13. Guo Z Q, Zhang W, Du Sen, et al. 2016. Feeding reduces waterborne Cu bioaccumulation in a marine rabbitfish Siganus oramin. Environmental Pollution, 208, 580-589.
14. Guo Z Q, Zhang W, Zhou Y Y, et al. 2015. Feeding ratio and frequency affects cadmium bioaccumulation in black sea bream Acanthopagrus schlegeli.Aquaculture Environment Interactions, 7, 135–145.
Zhu A J, Zhang W, Xu Z Z, et al. 2013. Methylmercury in fish from the South China Sea: Geographical distribution and biomagnification. Marine Pollution Bulletin, 77, 437–444.