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个人简介

中国科学院南京土壤研究所副研究员、硕士生导师。2002年本科毕业于安徽师范大学环境科学学院,2009年硕士毕业于安徽农业大学资源与环境学院,2012年毕业于中国科学院南京土壤研究所,获理学博士学位。2017年赴美国特拉华大学进行短期访问。2012年7月参加工作

研究领域

磷素循环及环境效应

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

[1]. Wang Y, Yuan J H, Chen H, Zhao X, Wang D J, Wang S Q*, Ding S M*. Small-scale interaction of iron and phosphorus in flooded soils with rice growth. Science of The Total Environment, 2019, 669, 911-919. [2].Zhu W B, Zhao X, Wang S Q, Wang Y*. Inter-annual variation in P speciation and availability in the drought-rewetting cycle in paddy soils. Agriculture, Ecosystems & Environment, 2019, 286: 106652. [3]. Wang Y, Chen H, Wang L, Zhu W B, Yuan J H, Deb P. Jaisi, Zhao X, Wang S Q*. Using diffusive gradients in thin films technique for in situ measuring labile phosphorus around Oryza sativa L. roots in flooded paddy soils. Pedosphere, 2019, Accept. [4]. Wang, Y., Zhao X, Guo ZY, Jia ZJ., Wang SQ*, Ding K*, Response of soil microbes to a reduction in phosphorus fertilizer in rice-wheat rotation paddy soils with varying soil P levels. Soil &Tillage Research, 2018, 181: 127-135. [5].Wang Y, Liu LH, Fang GD*, Wang L*, Kengara F. O., Zhu CY, The mechanism of 2-chlorobiphenyl oxidative degradation by nanoscale zero-valent iron in the presence of dissolved oxygen. Environmental Science and Pollution Research, 2018, 25(3): 2265-2272. [6]. Yuan J H, Wang L, Wang S Q, Wang Y*, Wang H Y*, Chen H, Zhu W B. The use of biologically based phosphorus fractions to evaluate soil P availability in reduced P‐input paddy soils. Soil Use and Management, 2018, 34(3), 326-334. [7]. Wang H, Nie Y, Butterly, C. R, Wang L*, Wang Y*. Fertilization alters microbial community composition and functional patterns by changing the chemical nature of soil organic carbon: A field study in a Halosol. Geoderma, 2017, 292, 17-24. [8]. Wang Y, Zhao, X., Wang, L., Zhao, P. H., Zhu, W. B., Wang SQ*, Phosphorus fertilization to the wheat-growing season only in a rice-wheat rotation in the Taihu Lake region of China, Field Crops Research, 2016, 198: 32-39. [9].Wang Y, Zhao X, Wang L, Jing SZ, Zhu WB, Lu YN, Wang SQ*, A five-year P fertilization pot trial for wheat only in a rice-wheat rotation of Chinese paddy soil: interaction of P availability and microorganism, Plant and Soil, 2016, 399(1): 305-318. [10]. Wang Y, Wang L, Wang YJ, Fang GD, Zhou DM*, Measuring the bioavailability of polychlorinated biphenyls to earthworms in soil enriched with biochar or activated carbon using triolein-embedded cellulose acetate membrane, Journal of Soils and Sediments, 2016, 16: 527-536. [11]. Dang F, Wang WX, Zhong H, Wang SQ, Zhou DM*, Wang Y*, Effects of phosphate on trace element accumulation in rice (Oryza sativa L.): A 5-year phosphate application study, Journal of Soils and Sediments, 2016, 16(5): 1440-1447. [12]. Wang Y, Zhao X, Wang L, Wang YJ, Li W, Wang SQ*, Xing GX, The regime and P availability of omitting P fertilizer application for rice in rice/wheat rotation in the Taihu Lake Region of southern China, Journal of Soils and Sediments, 2015, 15: 844-853. [13]. Wang Y, Hu YT, Zhao X*, Wang SQ*, Xing GX, Comparisons of biochar properties from wood material and crop residues at different temperatures and residence times, Energy & Fuels, 2013, 27: 5890-5899. [14].Wang Y, Wang YJ, Wang L, Fang GD, Cang L, Herath HMSK, Zhou DM*, Reducing the bioavailability of PCBs in soil to plant by biochars assessed with triolein-embedded cellulose acetate membrane technique, Environmental Pollution, 2013, 174: 250-256. [15]. Wang Y, Wang L, Fang GD, Herath HMSK, Wang YJ, Cang L, Zhou DM*, Enhanced PCBs sorption on biochars as affected by environmental factors: Humic acid and metal cations, Environmental Pollution, 2013, 172: 86-93. [16].Wang Y, Zhou DM*, Wang YJ, Wang L, Cang L, Automatic pH control system enhance the dechlorination of 2,4,4'-Trichlorobiphenyl and extracted PCBs from soil by nanoscale Fe0 and Pd/Fe0, Environmental Science and Pollution Research, 2012, 19: 448-457 [17]. Wang Y, Zhou DM*, Wang YJ, Zhu XD, Jin SY, Humic acid and metal ions accelerating the dechlorination of 4-chlorobiphenyl by nanoscale zero-valent iron, Journal of Environmental Sciences, 2011, 23(8): 1286-1292 [18]. Fan GP, Wang Y, Fang GD, Zhu XD, Zhou DM*, Review of chemical and electrokinetic remediation of PCBs contaminated soils and sediments. Environmental Science: Processes & Impacts, 2016, 18(9): 1140-1156. [19]. Fang G, Gao J., Liu C, Dionysiou DD, Wang Y, Zhou DM, Key role of persistent free radicals in hydrogen peroxide activation by biochar: implications to organic contaminant degradation, Environmental Science & Technology, 2014, 48(3): 1902-1910. [20]. Fang GD, Dionysiou DD, Wang Y, Al-Abed SR, Zhou DM, Sulfate radical-based degradation of polychlorinated biphenyls: effects of chloride ion and reaction kinetics, Journal of Hazardous Materials, 2012, 227: 394-401.

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