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香港科技大学深圳研究院

海洋环境实验室

Email: laicl@ust.hk

电话:0755-33552820

地址:广东省深圳市南山区科技园高新区南区粤兴一道9号香港科大深圳产学研大楼7楼716

发表论文

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研究成果-2016年

发布时间:2017-05-05 浏览次数:50

Xu X, Wang W-X*. 2016. Mercury exposure and source tracking in distinct marine-caged fish farm in

Southern China. Environmental Pollution

Wang X, Wang W-X*. 2016. Homeostatic regulation of copper in a marine fish simulated by a

physiologically based pharmacokinetic model. Environmental Pollution 218: 1245-1254.

Pan K, Wang W-X*. 2016. Radiocesium uptake, trophic transfer, and exposure in three estuarine fish

with contrasting feeding habits. Chemosphere 163:499-507.

Xu L, Ji C, Wu H, Tan Q, Wang W-X. 2016. A comparative proteomic study on the effects of metal

pollution in oysters Crassostrea hongkongensis. Marine Pollution Bulletin.

Dang F, Wang W-X, Zhong H, Wang S, Zhou D, Wang Y. 2016. Effects of phosphate on trace element

accumulation in rice (Oryza sativa L.): A 5-year phosphate application study. Journal of Soils and

Sediment. 16: 1440-1447.

Fan W, Liu LL, Peng R, Wang W-X*. 2016. High bioconcentration of titanium dioxide nanoparticles in

Daphnia magna determined by kinetic approach. Science of the Total Environment 569/570: 1124-

1231.

Ji C, Wang Q, Wu HF, Tan QG, Wang W-X. 2016. A metabolomics study on the biological effects of

metal pollutions in oysters Crassostrea sikamea. Marine Pollution Bulletin 102: 216-222.

Wang J, Wang W-X*. 2016. Novel insights into iron regulation and requirement in marine medaka

Oryzias melastigma. Scientific Reports 6: 26615; doi: 10.1038/srep26615

Liu X, Wang W-X*. 2016. Antioxidant and detoxification responses of oysters Crassostrea

hongkongensis in a multi-metal contaminated estuary. Environmental Toxicology and

Chemistry. 35: 2798–2805.

Liu X, Wang W-X*. 2016. Physiological and cellular responses of oysters Crassostrea hongkongensis

in a multi-metal contaminated estuary. Environmental Toxicology and Chemistry.

Zhou L, Tan Y, Huang L, Wang W-X*. 2016. Enhanced utilization of organic phosphorus in a marine

diatom Thalassiosira weissflogii: a possible mechanism for aluminum effect under P limitation. Journal

of Experimental Marine Biology and Ecology 478: 77-85.

Wang WH, Wang W-X*. 2016. Phase partitioning of trace metals in a contaminated estuary influenced

by industrial effluent discharge. Environmental Pollution 214, 35-44

Cao C, Wang W-X*. 2016. Bioaccumulation and metabolomics response in oysters Crassostrea

hongkongensis impacted by different levels of metal pollution. Environmental Pollution 216: 156-165.

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.

Pan K, Tan QG, Wang W-X*. 2016. Two-compartment kinetic modeling of radiocesium accumulation in

marine bivalves under hypothetical regimes. Environmental Science & Technology 50: 2677-2684.

Yin R, Feng X, Zhang J, Pan K, Wang W-X, Li XD. 2016. Using mercury isotopes to understand the

bioaccumulation of Hg in the subtropical Pearl River Estuary, South China. Chemosphere 147: 173-

179.

Xu X, Zhang QG, Wang W-X*. 2016. Linking mercury, carbon, and nitrogen stable isotopes in Tibetan

biota: implications for using mercury stable isotopes as source tracers. Scientific Reports 6: 25394;

doi: 10.1038/srep25394

Peng X, Liu FJ, Wang W-X*. 2016. Organ-specific accumulation, transportation and elimination of

methylmercury and inorganic mercury in a low Hg accumulating fish. Environmental Toxicology and

Chemistry 35: 2074-2083.

Wang W-X*. 2016. Bioaccumulation and Biomonitoring. In: Marine Ecotoxicology: Current Knowledge

and Future Issues. Edited by Blasco J, Chapman P, Campana O, Hampel M. Elsevier. (Invited Book

Chapter).

Qiu YW, Wang W-X*. 2016. Comparison of mercury bioaccumulation between wild and mariculture

food chains from a subtropical bay of Southern China. Environmental Geochemistry and Health 38:

39-49.

Liu X, Wang W-X*. 2016. Time changes in biomarker responses in two species of oyster transplanted

into a metal contaminated estuary. Science of the Total Environment 544: 281-290.