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汕头大学理学院导师教师师资介绍简介-王振

本站小编 Free考研考试/2021-05-28






王振 [ 教授 ] 海洋生物研究所 管理个人简历



性别:


出生日期:


职务:


学术兼职:


社会兼职:


电话:86-


手机:


传真:86-


E-mail:zhenwang@stu.edu.cn




学历简介:
PhD 2011-5 至 2015-11 The University of Hong Kong
MPhil 2007-9 至 2010-6 Shantou University & Third Institute of Oceanography
BSc 2003-9 至 2007-7 Qingdao Agricultural University



工作经历:
2019-9 至 现在 Shantou University, Shantou, China; Professor
2017-12 至 2019-8 Jinan University, Guangzhou, China; Associate Professor
2016-1 至 2017-10 Baylor University, TX, USA; Postdoctoral Fellow



主要研究兴趣: Ecotoxicology, Risk Assessment, Marine Ecology, Eco-Microbiology, Comparative Toxicology, Green Chemistry


研究成果:


[1] Su, T., Lian, D., Bai, Y., Wang, Y.Y.L., Zhang, D.*, Wang, Z.*, You, J., 2021. The feasibility of the zebrafish embryo as a promising alternative for acute toxicity tests using various fish species: A critical review. Science of the Total Environment.
[2]Garman, E.M*, Schlekat, C.E., Middleton, E., Merrington, G., Peters, A., Smith, R., Stauber, J.L., Leung, K.M., Gissi, F., Binet, M.T., Adams, M.S., Gillmore, M.L., Golding, L.A., Jolley, D., Wang, Z., Reichelt-Brushett, A. 2020, Development of a bioavailability-based risk assessment framework for nick in Southeast Asia and Melanesia. Integrated Environmental Assessment and Management. DOI: 10.1002/ieam.4384.
[3] Gissi, F.*, Wang, Z., Batley, G., Leung, K.M.Y., Schlekat, C.E., Garman, E.R., Stauber, J.L., 2020. Deriving a chronic guideline value for nickel in tropical and temperate marine waters. Environmental Toxicology and Chemistry. 2020, 39(12), 2540-2551.
[4] Wang, Z.*, Yeung, K.W.Y., Zhou, G.J., Yung, M.M.N., Schlekat, C.E., Garman, E.R., Gissi, F., Stauber, J.L., Middleton, E.T., Wang, Y.Y.L., Leung, K.M.Y.*, 2020. Acute and chronic toxicity of nickel on freshwater and marine tropical aquatic organisms. Ecotoxicology and Environmental Safety. 206: 111373.
[5 ] Fink, R.#, Wang, Z.#, Oder, M., Brooks, B.W.*;Balancing chemical function with reduced environmental health hazards: A joint probability approach to examine antimicrobial product efficacy and mammalian toxicity;Journal of Cleaner Production, 2020, 262: 121323. (# co-first authorship);
[6 ] Wang, Z., Berninger, J.P., You, J.*, Brooks, B.W.;One uncertainty factor does not fit all: Identifying mode of action and species specific acute to chronic ratios for aquatic life;Environmental Pollution, 2020, 262: 114262;
[7 ] Wang, Z., Dinh, D., Scott, W.C., Williams, E.S., Ciarlo, M., DeLeo, P., Brooks, B.W.*;Critical review and probabilistic health hazard assessment of cleaning product ingredients in all-purpose cleaners, dish care products, and laundry care products;Environment International, 2019, 125: 399-417;
[8 ] Wang, Z., Brooks, B.W., Zeng, E.Y., You, J.*;Comparative mammalian hazards of neonicotinoid insecticides among exposure durations;Environment International, 2019, 125: 9-24;
[9 ] Wang, Z.*, Ho, K.K.Y., Zhou, G.J., Yeung, K.W.Y., Leung, K.M.Y.*;Effects of silver and zinc on tropical freshwater organisms: Implications on temperate-to-tropic extrapolation and water quality guidelines;Chemosphere, 2019, 225: 897-905;
[10 ] Wang, Z.*, Liu, G.C.S., Burton, G.A., Jr., Leung, K.M.Y.*;Thermal extremes can intensify chemical toxicity to freshwater organisms and hence exacerbate their impact to the biological community;Chemosphere, 2019, 224: 256-264;
[11 ] Wang, Z.*, Kwok, K.W.H., Leung, K.M.Y.;Comparison of temperate and tropical freshwater species’ acute sensitivities distributions to chemicals: An update;Integrated Environmental Assessment and Management, 2019, 15(3): 352-363;
[12 ] Xiong, J.J., Wang, Z., Ma, X., Li, H.Z., You, J.*;Occurrence and risk of neonicotinoid insecticides in surface water of a rapidly developing city (Guangzhou, China): The application of polar organic chemical integrative sampler;Science of the Total Environment, 2019, 648: 1305-1312;
[13 ] Wang, Z., Scott, W.C., Williams, E.S., Ciarlo, M., DeLeo, P., Brooks, B.W.*;Identification of novel uncertainty factors and thresholds of toxicological concern for health hazard and risk assessment: Application to cleaning product ingredients;Environment International, 2018, 113: 357-376;
[14 ] Mu, Y.S.#, Wang, Z.#, Wu, F.C.*, Zong, B.Q., Yang, M.R., Sun, F.H., Feng, C.L., Jin, X.W., Leung, K.M.Y.*, Giesy, J.P.;Model for predicting toxicities of metals and metalloids in coastal marine environments worldwide;Environmental Science & Technology, 2018, 52(7): 4199-4206. (# co-first authorship);
[15 ] Shi, J.C., Li, X., He T.T., Wang, J.Z., Wang, Z., Li, P., Lai, Y.Z., Sanganyado, E., Liu, W.H.*;Integrated assessment of heavy metal pollution using transplanted mussels in eastern Guangdong, China;Environmental Pollution, 2018, 243: 601-609;
[16 ] DeLeo, P.C.*, Ciarlo, M., Pacelli, C., Greggs, W., Williams, E.S., Scott, W.C., Wang, Z., Brooks, B.W.;Cleaning product ingredient safety – What is the current state of availability of information regarding ingredients in products and their function?;ACS Sustainable Chemistry & Engineering, 2018, 6(2): 2094-2102;
[17 ] Saari, G.N., Wang, Z., Brooks, B.W.*;Revisiting inland hypoxia: diverse exceedances of dissolved oxygen thresholds for freshwater aquatic life;Environmental Science and Pollution Research, 2018, 25(4): 3139-3150;
[18 ] Obiakor, M.O., Tighe, M., Wang, Z., Ezeonyejiaku, C.D., Pereg, L., Wilson, S.C.*;The relative sensitivity of freshwater species to antimony(III): Implications for water quality guidelines and ecological risk assessments;Environmental Science and Pollution Research, 2017, 24(32): 25276-25290;
[19 ] Wang, Z.*, Meador, J.P., Leung, K.M.Y.*;Metal toxicity to freshwater organisms as a function of pH: A meta-analysis;Chemosphere, 2016, 144: 1544-1552;
[20 ] Wang, Z., Leung, K.M.Y.*;Effects of unionised ammonia on tropical freshwater organisms: Implications on temperate-to-tropic extrapolation and water quality guidelines;Environmental Pollution, 2015, 205: 240-249;
[21 ] Jin, X.W.*, Liu, F., Wang, Y.Y., Zhang, L.S., Li, Z., Wang, Z.J., Giesy, J.P., Wang, Z.;Probabilistic ecological risk assessment of copper in Chinese offshore marine environments from 2005 to 2012;Marine Pollution Bulletin, 2015, 94(1-2): 96-102;
[22 ] Wang, Z., Kwok, K.W.H., Lui, G.C.S., Zhou, G.J., Lee, J.S., Lam, M.H.W., Leung, K.M.Y.*;The difference between temperate and tropical saltwater species’ acute sensitivity to chemicals is relatively small;Chemosphere, 2014, 105: 31-43;
[23 ] Zhou, G.J.*, Wang, Z., Lau, E.T.C., Xu, X.R., Leung, K.M.Y.*;Can we predict temperature-dependent chemical toxicity to marine organisms and set appropriate water quality guidelines for predicting marine ecosystems under different thermal scenarios?;Marine Pollution Bulletin, 2014, 87(1-2): 11-21;
[24 ] Zheng, S.L.*, Chen, B., Wang, Z., Qiu, X.Y., Yu, X.G., Freestone, D., Liu, Z.H., Huang, H., Yu, W.W., Xu, X.Z.;Reproductive toxic effects of sublethal cadmium on the marine polychaete Perineris nuntia;Ecotoxicology and Environmental Safety, 2010, 73(6): 1196-120;
[25 ] Wang Z., Jin X.W.*, Wang Z.J.;Taxon-specific sensitivity differences of copper to aquatic organisms;Asian Journal of Ecotoxicology, 2014, 9: 640-646. (In Chinese);
[26 ] Wang, Z., Zheng, S.L.*, Liu, W.H., Chen, B., Liu, Z.H., Huang, H., Yu, W.W., Ma, Z.Y.;Acute toxic effects of the water accommodated fraction of crude oil on Hapalogenys nitens zygotes and larvae;Journal of Oceanography in Taiwan Strait, 2010, 29: 367-372. (In Chinese);






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