郭占荣
博士
教授
厦门大学 海洋与地球学院
Dr.
Guo,Zhanrong
Professor
Tel:
13110924816
Fax:
Email:
gzr@xmu.edu.cn
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个人履历
Brief CV
- 1988-2000, 中国地质科学院水文地质环境地质研究所
- 2001-2002, 厦门大学海洋与环境学院 博士后
- 2003-至今, 厦门大学 海洋与地球学院 海洋地质系
研究方向
Research Interests
- 长期从事地下水的研究。放射性同位素示踪海底地下水排泄、水体表观年龄及混合速率,潮汐作用下的海岸带地下水循环及其数值模拟,地下河口的咸淡水混合作用及其地球化学过程,基于原位、高分辨率技术的河口及海岸沉积物-孔隙水系统中的元素生物地球化学过程。
代表性论文
Selected Publications
- Kinetic exchange of remobilized phosphorus related to phosphorus-iron-sulfur biogeochemical coupling in coastal sediment. Water Resources Research, 2019, 55: 025941.
- Cyclical patterns and (im)mobilization mechanisms of phosphorus in sediments from a small creek estuary: Evidence from in situ monthly sampling and indoor experiments. Water Research, 2020, 171:115479.
- Remobilization and hypoxia-dependent migration of phosphorus at the coastal sediment-water interface. Journal of Hazardous Materials, 2021, 411:125078.
- Bioavailability, (im)mobilization kinetics, and spatiotemporal patterns of arsenic and cadmium in surficial sediments of a river–estuary–coast system. Journal of Hydrology, 2022, 612: 128140.
- Effects of manganese, iron and sulfur geochemistry on arsenic migration in the estuarine sediment of a small river in Xiamen, Southeast China. Environmental Pollution, 2022, 293:118570.
- Integrated effects of bioturbation, warming and sea-level rise on mobility ofsulfide and metalloids in sediment porewater of mangrove wetlands. Water Research, 2023, 233: 119788.
刘建辉、黄磊、袁晓婕、李开培、章斌、马志勇、刘洁、王博、潘峰、李志伟、庄振杰、蔡宇、吴锦烨、傅雨瑶、吴昕迪、张苡粼、吴辛杰、张晓婷、惠必鹏、李玉蕊、王子强、徐佳楠
1. 国家自然科学基金:近岸海域的海底地下水排泄及其海洋生态环境效应研究
2. 国家自然科学基金:多种方法研究胶州湾的海底地下水排泄
3. 国家自然科学基金:海底地下水排泄(SGD)的地球化学过程、物质输送及其对海洋的贡献和影响
4. 国家自然科学基金:福建前湖湾的海底地下水排泄及其水循环过程研究
5. 福建省自然科学基金:闽江物质输送对闽江口及其邻近海域的影响研究
国土资源部科学技术成果奖:一等奖、二等奖、三等奖各1项。
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Bioavailability, (im)mobilization kinetics, and spatiotemporal patterns of arsenic and cadmium in surficial sediments of a river–estuary–coast system. Journal of Hydrology, 2022, 612:128140.
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Kinetic characteristics of mobile Mo associated with Mn, Fe and S redox geochemistry in estuarine sediments. Journal of Hazardous Materials, 2021, 418:126200.
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Metal/metalloid and phosphorus characteristics in porewater associated with manganese geochemistry: A case study in the Jiulong River Estuary, China.Environmental Pollution,2019,255:113-134.
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Effects of manganese, iron and sulfur geochemistry on arsenic migration in the estuarine sediment of a small river in Xiamen, Southeast China. Environmental Pollution, 2022, 293:118570
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Remobilization and hypoxia-dependent migration of phosphorus at the coastal sediment-water interface. Journal of Hazardous Materials, 2021, 411:125078.
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Effects of tide and season changes on the iron-sulfur-phosphorus biogeochemistry in sediment porewater of a mangrove coast.Journal of Hydrology,2018,568:686-702.
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Potential pollution assessment of labile trace metals in Xixi River estuary ediments in Xiamen, China. Journal of Contaminant Hydrology, 2022, 250:104055.
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Cyclical patterns and (im)mobilization mechanisms of phosphorus in sediments from a small creek estuary: Evidence from in situ monthly sampling and indoor experiments. Water Research, 2020,171:115479.
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Geochemical behavior of phosphorus and iron in porewater in a mangrove tidal flat and associated phosphorus input into the ocean, Continental Shelf Research,2017,150:65-75.
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Distribution characteristics and release mechanisms of Pb in surface sediments in different aquatic environments. Journal of Contaminant Hydrology, 2020, 235:103704.
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18O and 226Ra in the Minjiang River estuary, China and their hydrological implications. Estuarine, Coastal and Shelf Science,2016,173:93-101.
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High-resolution imaging of labile P & S in coastal sediment: Insight into the kinetics of P mobilization associated with sulfate reduction. Marine Chemistry,2020, 225:103851.
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The evaluation of submarine groundwater discharge in Jiaozhou Bay based on 222Rn mass balance. Acta Geoscientica Sinica,2015,36(2):237-244.
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Kinetic exchange of remobilized phosphorus related to phosphorus-iron-sulfur biogeochemical coupling in coastal sediment. Water Resources Research, 2019,55:025941.
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Water apparent ages and submarine groundwater discharge of Jiaozhou Bay indicated by radium isotope tracers. Oceanologia et Limnologia Sinica,2015,46(1):88-95.
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Characteristics of radium desorption from sediments in the salt water environment. Acta Geoscientica Sinica,2014,35(5):582-588.
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Estimating submarine groundwater discharge in the Jiaozhou Bay using radium isotopes. Indian Journal of Geo-Marine Sciences,2014,43(10):1811-1819.
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An Analysis of the Interaction between River Water, Groundwater and Seawater in Minjiang River Estuary Region, Fujian Province, Based on Stable Isotopes D and 18O, Acta Geoscientica Sinica.2013,34(2):213-222.
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Characterization of Dissolved Organic Matter in Groundwater from the Coastal Dagu River Watershed, China Using Fluorescence Excitation-Emission Matrix Spectroscopy, Spectroscopy and Spectral Analysis,2013,33(9):2460-2465.
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Distribution characteristics of radium and determination of transport rate in the Min River estuary mixing zone.Journal of Jilin University-Earth Science Edition.2013,43(6):1966-1971.
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Tracing submarine groundwater discharge and associated nutrient fluxes into Jiaozhou Bay by continuous 222Rn measurements. Earth Science-Journal of China University of Geosciences.2013,38(5):1073-1080.
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Utility of radium isotopes for evaluating residence time and submarine groundwater discharge to Wuyuan Bay,Earth Science-Journal of China University of Geosciences.2013,38(3):599-606.
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Assessment of submarine groundwater discharge into the Wuyuan bay via continuous Radon-222 measurements, Advances in Water Science.2012,23(2):263-270.
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Estimating groundwater discharge into Minjiang River estuary based on stable isotopes deuterium and oxygen-18, Advances in Water Science.2012,23(4):539-548.
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Estimating submarine groundwater discharge to the Jiulong River estuary using Ra isotopes,Advances in Water Science.2011,22(1):118-125.
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