导师介绍

汪玉

2023-01-29 分享到:

汪玉,安徽安庆人,中国科学院南京土壤研究所副研究员,博士,硕士生导师。2012年获得中科院研究生院理学博士学位,同年留中科院南京土壤所工作至今。主要从事土壤磷素循环及其农业与生态环境效应研究。以第一/通讯作者在Nature Geoscience、Geoderma、Soil & Tillage Research等地学和土壤学领域权威刊物上发表论文30余篇;参与编写专著5部,编制行业标准1项(排名7/23)。主持3项国家自然科学基金项目、3项国家重点研发计划子课题、2项中科院先导专项子课题等。

研究领域:环境土壤学,土壤养分循环

欢迎环境科学、土壤学、生态学等专业的学生报考。

联系方式:wangyu@issas.ac.cn

科研项目:

[1]  国家自然科学面上基金项目,生物炭介导稻田土壤铁氧化物结合态磷的转化机制研究(42277026),2023/01-2026/12,主持;

[2]  国家重点研发计划项目课题,氮磷迁移多尺度过程与污染防控决策平台(2021YFD1700802),2021/05-2025/12,研究骨干;

[3]  中国科学院A类战略性先导科技专项示范区,稻作农田土壤地力保持与提质增效模式(XDA28090300),2021/09-2026/08,研究骨干;

[4]  长江生态环境保护修复城市驻点跟踪研究任务,宣城市长江水生态环境保护研究,2022/01-2023/12,主持;

[5]  中国科学院南京土壤研究所“十四五”自主部署项目,土壤健康体系的化学计量调控与功能提升(ISSASIP2201),2022/10-2024/10,研究骨干;

[6]  国家自然科学面上基金项目,太湖稻麦轮作区磷肥减施土壤磷素周转特征与供给机制(41671304),2017/01-2020/12,主持;

[7]  国家重点研发计划项目课题,长江流域水旱轮作种植体系磷肥高效利用与损失阻控途径(2017YFD0200206),2017/07-2020/12,研究骨干;

[8]  国家重点基础研究发展计划(973计划)课题,支撑高产群体的关键土壤过程及动态调控机理(2015CB150403),2015/01-2019/12,研究骨干;

[9]  中国科学院先导专项B课题,土壤磷素转化及其与碳氮耦合的微生物过程(XDB15020402),2014/06-2019/05,研究骨干;

[10]  国家自然科学青年基金项目,纳米零价铁降解PCBs污染土壤过程中的氧化作用及机制(21307141),2014.01-2016.12,主持。

代表论著:

1.  Wang Y#, Huang YY#, Song L, Yuan JH, Li W, Zhu YG, Chang SX, Luo YQ, Ciais P, Pe?uelas J, Wolf J, Cade BJ, Hu SJ, Wang L, Wang DJ, Yuan ZW, Wang YJ, Zhang JS, Tao Y, Wang SQ, Liu G, Yan XY, Zhu CW*. Reduced phosphorus availability in paddy soils under atmospheric CO2 enrichment. Nature Geoscience, 2023.

2.  Chen H, Yuan JH, Chen GL, Zhao X, Wang SQ, Wang DJ, Wang L, Wang YJ, Wang Y*. Long-term biochar addition significantly decreases rice rhizosphere available phosphorus and its release risk to the environment. Biochar, 2022, 4, 54.

3.  Yuan JH, Wang Y*, Zhao X, Chen H, Chen GL, Wang SQ*. Seven years of biochar amendment has a negligible effect on soil available P and a progressive effect on organic C in paddy soils. Biochar, 2022, 4(1): 1-13.

4.  Chen GL, Yuan JH, Chen H, Zhao X, Wang SQ, Zhu YY, Wang Y*. Animal manures promoted soil phosphorus transformation via affecting soil microbial community in paddy soil. Science of the Total Environment, 2022, 831: 154917.

5.  Yu X, Tong DL, Wang Y*, Wang DJ, Xu L, Li B, Sun WT. Long-term rice cultivation promoted microbial mineralization of organic P in a black soil. Soil Science Society of America Journal, 2022, 2: 1-12.

6.  Wang Y, Chen H, Wang L, Zhu WB, Yuan JH, Jaisi DP, Zhao X, Wang SQ*. Using diffusive gradients in thin films technique for in-situ measuring of labile phosphorus around Oryza sativa L. roots in flooded paddy soils. Pedosphere, 2021, 31(1): 76–82.

7.  Zhu WB, Zhao X, Wang SQ, Wang Y*. Inter-annual variation in P speciation and availability in the drought-rewetting cycle in paddy soils. Agriculture, Ecosystems & Environment, 2019, 286: 106652.

8.  Wang Y, Yuan JH, Chen H, Zhao X, Wang DJ, Wang SQ*, Ding SM*. Small-scale interaction of iron and phosphorus in flooded soils with rice growth. Science of The Total Environment, 2019, 699: 911-919.

9.  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.

10.  Wang HY, Nie Y, Butterly C R, Wang L*, Chen QH, Tian W, Song BB, Xi YG, 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.

11.  Wang Y, Zhao X, Wang L, Zhao PH, Zhu WB, 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.

12.  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.