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Professor

Gender:Female

Alma Mater:吉林大学

Education Level:Doctor graduate

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教授,硕士/博士生导师,吉林大学唐敖庆学者英才教授,吉林大学水资源与环境研究所副所长。自然资源部“寒区地下水环境演变与调控”创新团队骨干。长期从事水文地球化学和地下水资源评价与管理等方面的教学和科研工作主要研究方向:(1)地下水与环境演变机制;(2)地表水与地下水交互作用;(3地下水资源评价与管理近年来,围绕国家和地方对水资源安全、粮食安全和能源安全等方面的重大战略需求,在环境-水文地质领域主持包括国家重点研发计划课题/专题、国家自然科学基金区域创新发展联合基金、面上基金以及国家水体污染控制与治理科技重大专项子课题等国家、省部级项目在内的科研项目40余项,参与编写专著5部;完成的科研成果获省部级以上科技奖励4项Environmental Science & Technology》、 《Water Research》、《Water Resources Research》、《Journal of Hydrology》等期刊上在发表科研论文100余篇,其中SCI检索论文60余篇。

联系方式:dongweihong@jlu.edu.cn

主要代表作

1. Weihong Dong*, et al.. From Physical Architecture to Ecosystem Function: Tillage Exerts Indirect Control on Nitrogen Transformation by Restructuring Preferential Flow Paths, Environmental Science & Technology2026:60 (2), 1886-1899 .

2. Weihong Dong*, et al.. Managed aquifer recharge and extraction effects on groundwater level and quality dynamics in a typical temperate semi-arid fissured karst system A multi-method quantitative study[J]. Hydrology and Earth System Sciences, 2025, 29(20): 5213-5231. 

3. Weihong Dong*, et al.. Preferential Flow-Induced Changes in Microbial Communities and Nitrogen Cycling Dynamics in the Vadose Zone. Environmental Science & Technology2025,59(128):14485-14496, doi:10.1021/acs.est.5c03358.

4. Weihong Dong*, et al.. Experimental study on the influence mechanism of freeze–thaw action on the preferential flow pattern in vadose zone, Journal of Hydrology, 2025, 660: 133389.

5.  Weihong Dong*, et al.. Effect mechanisms of hematite and goethite on naphthalene biodegradation, insight from electron transfer and microbial gene expression. Journal of Cleaner Production2025, 486:144496.           

doi: https://doi.org/10.1016/j.jclepro.2024.144496.

6. Weihong Dong*, et al.. Hydrological drivers of maize productivity: A new analytical framework [J]. Journal of Hydrology: Regional Studies, 2025, 62.

7.  Weihong Dong*, et al.. Overload of dissolved organic matter (DOM) in riparian infiltration zone increasing the pollution risk of naphthalene, insight from the competitive inhibition of naphthalene biodegradation by DOM, Water Research,2024,264,122251.

8. Weihong Dong*, et al.. Influence mechanisms of dissolved organic matter and iron minerals on naphthalene attenuation during river infiltration. Science of the Total Environment,2024,956:177410. doi: https://doi.org/10.1016/j.scitotenv.2024.177410 

9. Weihong Dong*, et al.. Groundwater vulnerability assessment of typical covered karst areas in northern China based on an improved COPK method. Journal of Hydrology, 2023,624,129904.

10. Weihong Dong*, et al..Mise-a-la-masse method, tracer tests and cave detection analysis of underground-river karst-conduit distribution and structure: a case study of the Dafengdong conduits in Guizhou Province, China. Hydrogeology Journal, 2023,3.

11Weihong Dong*, et al.. Function of Fe(III) in naphthalene adsorption on typical clay minerals and humic acid complexes. Journal of Environmental Chemical Engineering2022. 10, 108271  doi:10.1016/j.jece.2022.108271.

12. Weihong Donget al. Adsorption/desorption of naphthalene and phenanthrene in a binary competitive system in the riparian zone. Environmental Geochemistry and Health. 2022. doi:10.1007/s10653-021-01147-y.

13. Weihong Dong*, et al.. Isotope method to identify and quantify organic pollutant biodegradation during natural attenuation monitoring. Journal of Chemical Technology and Biotechnology, 2022, 97 (11): 3132-3143. DOI 10.1002/jctb.7180.

14. Weihong Dong*, et al.. A system dynamics model to simulate the water-energy-food nexus of resource-based regions: A case study in Daqing City, China. Science of the Total Environment, 2022.2.1 doi: 10.1016/j.scitotenv.2021.150497

15 Weihong Dong*et al. Experimental study on the biodegradation of naphthalene and phenanthrene by functional bacterial strains in the riparian soil of a binary system. Ecotoxicology and Environmental Safety2021, 223. doi:112603. 10.1016/j.ecoenv.2021.112603.

16Weihong Dong*, et al.. Influencing mechanisms of siderite and magnetite, on naphthalene biodegradation: Insights from degradability and mineral surface structure. Journal of Environmental Management. 2021. 299. doi:10.1016/j.jenvman.2021.113648.

17. Weihong Dong*, et al.. Study on Factors Affecting Corn Yield Based on the Cobb-Douglas Production Function. Agricultural Water Management, 2020, 228:1-11. 18. Weihong Dong*, et al. A Bayesian-based integrated approach for identifying groundwater contamination sources. Journal of Hydrology2019579501-516. 

19. Weihong Dong*, et al. Assessment and validation of confined aquifer vulnerability based on the VEBHAT method: a case study in Heilongjiang Province, northeastern China. Hydrogeology Journal, 2019,27(7): 2551-2561.

20. Weihong Dong*, et al. Application of a loose coupling model for assessing the impact of land‑cover changes on groundwater recharge in the Jinan spring area, China. Environmental Earth Sciences, 2019, 78: 382.  doi.org/10.1007/s12665-019-8388-8).  

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近年主要科研项目

1. 国家自然科学基金区域创新发展联合基金项目 气候变化与人类活动影响下松嫩平原西部地下水环境演变机制与风险管控(2024-2027年)主持

2. 国家重点研发计划项目,地下水水源地环境安全与可持续利用技术体系-地下水水源地饮用水源安全评价技术专题2024年-2028年),主持。

3. 国家自然科学基金面上项目 高铁负荷的河岸入渗带内低环类多环芳烃的自然衰减机理研究 2019-2023年)  主持

4.国家重点研发计划项目,场地污染多要素全过程监测筛选技术研究,2018-2022年)课题主持.

5.贵州省科技厅,鱼洞河流域闭坑煤矿“采空空间”酸性水形成机理及影响因素研究,2021-2023年),主持.

6.国家重点开发计划项目 东北粮食主产区水-能源-粮食纽带关系及保障技术,2017- 2020年),专题主持

7.国家自然科学基金青年项目,傍河水源地地下水开采影响下潜流带典型多环芳烃迁移转化机理研究2015-2017年),主持

8.横向项目“锰三角”松桃县寨英镇龙洞排水井地下水锰污染溯源调查评估。2024-2026年),主持

9.国家自然科学基金重点基金项目,季节性冻土区湖水-地下水交互带水热传输-氮磷生物地球化学过程耦合机理研究,2023-2027子课题负责人

10.横向项目济南市趵突泉泉域岩溶地下水多水源量质管控技术研究,2023-2025主持.

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团队成员

[1]自然资源部高层次科技创新人才工程科技创新团队

[2]吉林省中青年科技创新卓越团队

联系方式:dongweihong@jlu.edu.cn


Research Group

[1]Name of Research Group:地下水环境演变机制与调控

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