江雪艳 | |||||||||||||||
职称: | 副教授 |
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个人邮箱: | jeanjxy@ouc.edu.cn | ||||||||||||||
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研究领域或方向: | |||||||||||||||
海洋同位素化学 1. 河流、河口、近岸的铀、钍、镭等天然放射性同位素的含量、分布、形态以及它们的迁移、转化、归宿和对环境的影响。 2. 海洋沉积物及间隙水中的氧化还原敏感元素的含量、迁移转化及对氧化还原环境的指示意义。 3. 水体中胶体态物质的粒度分布和组成。 | |||||||||||||||
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教育与研究经历: | |||||||||||||||
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主持或参与的项目: |
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1.莱州湾南岸地下卤水高浓度溶解铀的形成及其氧化还原环境的重建(NSFC41876077);国家自然科学基金面上项目;起止年月:2019.01-2022.12;经费74.4万元;主持。 2.天然及人造洪水对黄河口铀的存在形态及入海通量的影响(NSFC41376085);国家自然科学基金面上项目;起止年月:2014.01-2017.12;经费:85万元;主持。 3.镭同位素示踪风暴潮对莱州湾南岸地下卤水影响的研究(ZR2011DM010);山东省自然科学基金面上项目;起止年月:2011.07-2014.07; 经费:7万元;主持。 4.东海陆架边缘海域水团结构及其向黑潮的物质输出研究(NSFC41530965);经费来源:国家自然科学基金重点项目;起止年月:2016.01-2020.12,经费359万;参与。 5.海底地下水排放对黄河口营养盐的贡献(NSFC 41576075);国家自然科学基金面上项目;起止年月:2016.01-2019.12,经费81.6万;参与。 6.多参数示踪调水调沙影响下的黄河口海底地下水排放过程(NSFC 41206064);国家自然科学基金青年基金;起止年月:2013.01-2015.12,经费25万元;参与。 7.长江口及邻近海域底边界层生物地球化学过程研究(NSFC40920164004);国家自然科学基金重点项目;起止年月:2010.01-2013.12,经费150万;参与。 8.中国东海典型边缘海沉积物中硫的早期成岩循环及制约因素(NSFC41076045);国家自然科学基金面上 项目;起止年月:2010.01-2013.12,经费50万;参与。 | |||||||||||||||
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学术成果: |
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1.Yude Ni, Xueyan Jiang*, Xihuang Zhong, Tianwei Shang. Uranium isotopes in optimal multi-parameter (OMP) analysis: unraveling water masses mixing in the northwest pacific. Ocean Dynamics, 2026, 76: 21. https://doi.org/10.1007/s10236-026-01773-z. 2.Wenwen Zhang, Xihuang Zhong, Xueyan Jiang*, Tong Zhang, Chunxia Meng. Partitioning of various uranium forms and quantification of the influencing factors to their behaviors in estuarine sediments. Environmental Pollution, 2025, 372:126087. https://doi.org/10.1016/j.envpol.2025.126087. 3.Jiahong Xi, Xihuang Zhong, Tong Zhang, Yu Zhen, Li Zou, Xueyan Jiang*. Interactions Between Bacteria and Several Redox-Sensitive Metals (Fe, Mn, U) in the Sediments of the Yellow River Estuary Wetland, China. Estuaries and Coasts, 2024, 47: 981-993. Doi: 10.1007/s12237-024-01338-7. 4.Xihuang Zhong, Chengzhen Zhou, Xia Yin, Tong Zhang, Jiahong Xi, Bochao Xu, Xueyan Jiang*. Tidal inundation and plant growth/decay impact redox-sensitive metal geochemistry and fluxes in salt marsh porewater[J]. Science of The Total Environment, 2024, 912: 169091. Doi: 10.1016/j.scitotenv.2023.169091 5.Xiao Liu, Xueyan Jiang*, Qian Liu, Juanjuan Sui. Impacts of Water-Sediment Regulation Scheme on Chromophoric Dissolved Organic Matter in the Lower Yellow River. Journal Of Ocean University of China. 2024, 23:455-466. Doi: 10.2139/ssn.4165547. 6.Zhen Cui, Guangquan Chen*, Shenliang Chen, Hongjun Yu, Keke Chen, Baichuan Ran, Tengfei Fu, Wenzhe Lyu, Yancheng Wang, Xueyan Jiang, Xihuang Zhong. Groundwater salinization under the influence of paleo sea-level fluctuation: a case study in southern Laizhou Bay, China[J]. Frontiers in Marine Science, 2024, 10: 1302064. Doi: 10.3389/fmars.2023.1302064 7.Tong Zhang, Xueyan Jiang*, Qian Liu, Tianwei Shang, Xihuang Zhong, Chunxia Meng. Changes of active particulate uranium under the Water-Sediment Regulation Scheme in the lower Yellow River: Potential impact to the uranium flux into the global ocean[J]. Marine Pollution Bulletin, 2023, 192: 115014. Doi: 10.1016/j.marpolbul.2023.115014 8.Xihuang Zhong, Xueyan Jiang*, Huijun He, Wenwen Zhang, Chunxia Meng. Application of sequential extraction for analyzing source and sink of uranium in Huanghe River sediments, China[J]. Journal of Oceanology and Limnology, 2023, 41(3): 936-946. Doi: 10.1007/s00343-022-1410-0 9.Tianwei Shang, Xueyan Jiang*, Chenqing Yu. 234U/238U as a potential tracer for tracking water masses mixing in the northern East China Sea[J]. Acta Oceanologica Sinica, 2021, 40(4): 23-31. Doi: 10.1007/s13131-021-1773-7 10.尹霞, 李思琦, 尚天微, 江雪艳, 甄毓*. 黄河口潮间带沉积物细菌群落结构特征[J]. 生态学报, 2021, 41 (21): 8496-8506. DOI: 10.5846/stxb202008022013 11. Tiantian Ge , Yuejun Xue , Xueyan Jiang, Li Zou, Xuchen Wang. Sources and radiocarbon ages of organic carbon in different grain size fractions of Yellow River-transported particles and coastal sediments. Chemical Geology, 2021, 534, doi.org/10.1016/j.chemgeo.2019.119452 12. Zhang Kun, Zou Li*, Dai Qunying, Wang Jian*, Jiang Xueyan, and Liang Shengkang. Impact of Water-Sediment Regulation on Variations of Amino Acids in the Middle-Lower Yellow River, China. J. Ocean Univ. China (Oceanic and Coastal Sea Research), 2020, 19 (2): 369-376. 13. Disong Yang, Bochao Xu*, William Burnett, Zhigang Yu, Xueyan Jiang, Xiaojie Zhang, Shibin Zhao, Dong Xia. Radium isotopes-suspended sediment relationship in a muddy river. Chemosphere, 2019, 214, 250-258. 14. Qian Liu, Xueyan Jiang*, Juanjuan Sui, Laodong Guo, Bochao Xu, Chunxia Meng.Role of suspended particulate matter in regulating the hehavior of dissolved uranium in the Yellow Ricver Estuary. Estuaries and Coasts, 2018, 41(6), 1667-1678. doi.org/10.1007/s12237-018-0392-9 15. 于臣青,江雪艳*,孟春霞,隋娟娟,刘倩. 调水调沙对黄河下游溶解铀含量及入海通量的影响. 海洋学报, 2018, 40(10):209-218. 16. Xiaoyi GUO, Bochao XU*, Zhigang YU, Xiuqin LI, Haiming NAN, Huimin JIAN, Xueyan JIANG, Shaobo DIAO, Maosheng GAO. Radium Isotopes Assess Water Mixing Processes and Its Application in the Pearl River Estuary. Chinese Journal of Oceanology and Limnology, 2017,35(5), 1108-1116。 doi.org/10.1007/s00343-017-6069 -6. 17. Xia D., Yu Z., Xu B.*, Gao M., Mi T., Jiang X., Yao P.. Variations of hydrodynamics and submarine groundwater discharge in the Yellow River Estuary under the influence of the Water Sediment Regulation Scheme. Estuaries and Coasts,2016,39:333–343. DOI 10.1007/s12237-015-9994-7. 18. 隋娟娟, 江雪艳*, 许博超, 于志刚. 黄河干流铀同位素的沿程变化及入海通量.海洋环境科学,2016,36(3):349-356. 19. Bochao XU*, Disong YANG, William C. Burnett, Xiangbin Ran, Zhigang YU, Maosheng GAO, Shaobo DIAO, Xueyan JIANG. Artificial water sediment regulation scheme influences morphology, hydrodynamics and nutrient behavior in the Yellow River estuary, Journal of Hydrology, 2016, 539: 102-112. 20.Sui Juanjuan, Yu Zhigang, Jiang Xueyan*, Xu Bochao. Behavior and budget of dissolved uranium in the lower reaches of the Yellow (Huanghe) River: Impact of Water–Sediment Regulation Scheme. Applied Geochemistry, 2015, 61: 1-9 21. Xu B., Bianchi T., Allison M., Dimova N., Wang H., Zhang L., Diao S., Jiang X., Zhen Y., Yao P., Chen H., Yao Q., Dong W., Sui J., Yu Z.. Using multi-radiotracer techniques to better understand sedimentary dynamics of reworked muds in the Changjiang River Estuary and inner shelf of East China Sea, Marine Geology, 2015, 370, 76-86. 22.Sui Juanjuan, Yu Zhigang, Xu Bochao, Dong Wenhua, Xia Dong, Jiang Xueyan*. Concentrations and fluxes of dissolved uranium in the Yellow River estuary: seasonal variation and anthropogenic impact (Water-Sediment Regulation Scheme). Journal of Environmental Radioactivity, 2014,128: 38-46. 23. Xu Bochao, Xia Dong, William Burnett, Natasha Dimova, Wang Houjie, Zhang Longjun, Gao Maosheng, Jiang Xueyan, Yu Zhigang. Natural 222Rn and 220Rn indicate the impact of the Water–Sediment Regulation Scheme (WSRS) on submarine groundwater discharge in the Yellow River estuary, China. Applied Geochemistry, 2014, 51, 79-85. 24. Bochao Xu, Natasha Dimova, Liang Zhao, Xueyan Jiang, ZhigangYu. Determination of water ages and flushing rates using short-lived radium isotopes in large estuarine system, the Yangtze River Estuary, China. Estuarine, Coastal and Shelf Science, 2013, 121: 61-68 25. Bochao Xu, William Burnett, Natasha Dimova, Shaobo Diao, Tiezhu Mi, Xueyan Jiang, ZhigangYu. Hydrodynamics in the Yellow River Estuary via radium isotopes: ecological perspectives. Continental Shelf Research, 2013, 66: 19-28. 26. Xueyan Jiang, Zhigang Yu*, Teh-Lung Ku, Xinglun Kang, Wei Wei, and Hongtao Chen. Distribution of uranium isotopes in the main channel of Yellow River (Huanghe), China. Continental Shelf Research, 2009, 29(4):719-727. 27. Jiang Xueyan, Yu Zhigang*,Ning Jinsong, Chen Hongtao, Mi Tiezhu. Study of the redox condition of underground brine system along the southern coast of Laizhou Bay, China. Chinese Journal of Oceanology and Limnology, 2008, 26(2): 222-228. 28. Xueyan Jiang, Zhigang Yu*, Teh-Lung Ku, Xinglun Kang, Wei Wei, and Hongtao Chen. Behavior of uranium in the Yellow River Plume (Yellow River Estuary). Estuaries and Coasts, 2007, 30(6): 919-926. 29. Jiang Xueyan, Yu Zhigang*,Ning Jinsong, Chen Hongtao, Mi Tiezhu. Genesis of underground brine along south coast of Laizhou Bay: hydrochemical characteristics. Chinese Journal of Oceanology and Limnology, 2006, 24(4): 435-442. | |||||||||||||||
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