人物經歷
1998年9月—2002年6月,馬瑞就讀於中國地質大學(武漢)環境工程專業,畢業並獲得學士學位。
2002年9月—2007年6月,就讀於中國地質大學(武漢)環境工程專業,畢業並獲得博士學位。
2007年11月—2009年12月,在
美國阿拉巴馬大學(The University of Alabama System)地質系(Department of Geology)從事博士後研究工作。
2010年1月—2010年12月,擔任美國阿拉巴馬大學地質系研究助理教授(Research Assistant Professor)。
2011年1月—2011年12月,擔任中國地質大學(武漢)環境學院副教授。
2012年1月,擔任中國地質大學(武漢)環境學院教授。
2019年10月—2020年9月,在
威斯康星大學麥迪遜分校(University of Wisconsin–Madison)地球科學系(Department of Geoscience)做學術訪問。
主要成就
科研成就
馬瑞的研究領域為:地下水流、熱遷移和溶質反應遷移耦合過程數值模型;地下非均質介質中污染物反應遷移機理及模型;寒區水文地質和生物地球化學過程;水文地質過程對碳循環的驅動機制。
馬瑞先後主編學術專著1部,參編3部;參編中國學科發展戰略研究報告2部;參編國家規劃教材1部和“地下水名著譯叢”1部。
[1] 馬瑞,王雲權,孫自永,胡順, 等. 2023. 乾旱半乾旱區內陸河流域地表水與地下水相互作用及其生態效應. 北京: 科學出版社. ISBN: 9787030736215.
[2] Ma, R & Y Wang. 2020. Groundwater sustainability in cold and arid regions. In: Mukherjee, A, B Scanlon, A Aureli, S Langan, H Guo & A McKenzie (eds), Global Groundwater: Source, Scarcity, Sustainability, Security and Solutions. Elsevier. ISBN: 9780128181720.
[3] Ma, R, C Zheng & C Liu. 2012. Groundwater Impacts of Radioactive Wastes and Associated Environmental Modeling Assessment. In: Meyers, R A (ed), Encyclopedia of Sustainability Science and Technology. Springer. ISBN: 978-0-387-89469-0.
[4] Ma R, C Zheng, H Prommer & J Greskowiak. 2011. Modeling field-scale uranium mass transfer at the Hanford IFRC site. In: Wang, Y, S Ge, M C Hill & C Zheng (eds), Calibration and Reliability in Groundwater Modeling: Managing Groundwater and the Environment, IAHS Publication 341. IAHS Press. ISBN: 9781907161155.
馬瑞先後在Water Resources Research、Journal of Geophysical Research: Atmosphere、Journal of Hydrology、Annual Review of Environment and Resources、Earth System Science Data等期刊發表論文90餘篇。
[1] Ma, R, K Chen, C B Andrews, S P Loheide, A H Sawyer, X Jiang, M A Briggs, P G Cook, S M Gorelick, H Prommer, B R Scanlon, Z Guo & C Zheng*. 2024. Methods for Quantifying Interactions Between Groundwater and Surface Water. Annual Review of Environment and Resources, 49.
[2] Hu, S, K Meng, R Ma*, Z Sun, Z Wang, M Ge, L Zeng & L Yin. 2024. The potential risk of soil salinization on vegetation restoration by ecological water conveyance project in Qingtu Lake Wetland, northwestern China. Land Degradation & Development, 35: 1296-1307.
[3] Hu, Y, R Ma*, Z Sun, Y Zheng, Z Pan & L Zhao. 2023. Groundwater Plays an Important Role in Controlling Riverine Dissolved Organic Matter in a Cold Alpine Catchment, the Qinghai–Tibet Plateau. Water Resources Research, 59: e2022WR032426.
[4] Yin, M, R Ma*, Y Zhang, J Lin, Z Guo & C Zheng. 2023. Competitive control of multiscale aquifer heterogeneity on solute transport in an alluvial aquifer. Journal of Hydrology, 616: 128819.
[5] Qiao, S, R Ma*, Z Sun, Y Wang & S Hu. 2023. A new model for simulating root water uptake by vegetation under the impact of a dynamic groundwater table in arid regions. Hydrological Processes, 37: e14972.
[6] Su, M, R Ma*, Y Wang, Z Sun, M Yin & M Ge. 2023. Tracing the Soil Water Flux in Variably Saturated Zones Using Temperature Data. Water Resources Research, 59: e2022WR033677.
[7] Jiang, X, R. Ma*, T Ma & Z Sun. 2022. Modeling the effects of water diversion projects on surface water and groundwater interactions in the central Yangtze River basin. Science of The Total Environment, 830: 154606.
[8] Pan, Z, R Ma*, Z Sun, Y Hu, Q Chang, M Ge, S Wang, J Bu, Xi Long, Y Pan & L Zhao. 2022. Integrated hydrogeological and hydrogeochemical dataset of an alpine catchment in the northern Qinghai–Tibet Plateau. Earth System Science Data, 14: 2147-2165.
[9] Wei, W, A Nghiem, R Ma*, Z Sun, X Gong, A Zhou & H Prommer. 2021. Factors controlling iodine enrichment in a coastal plain aquifer in the North Jiangsu Yishusi Plain, China. Journal of Contaminant Hydrology, 243: 103894.
[10] Hu, S, R Ma*, Z Sun, M Ge, L Zeng, F Huang, J Bu & Z Wang. 2021. Determination of the optimal ecological water conveyance volume for vegetation restoration in an arid inland river basin, northwestern China. Science of The Total Environment, 788: 147775.
[11] Ma, R*, M Ge, Z Sun & Q Chang. 2021. Control of the Interactions Between Stream and Groundwater by Permafrost and Seasonal Frost in an Alpine Catchment, Northeastern Tibet Plateau, China. Journal of Geophysical Research: Atmospheres, 126: e2020JD033689.
[12] Jiang, X, R Ma*, Y Wang, W Gu, W Lu & J Na. 2021. Two-stage surrogate model-assisted Bayesian framework for groundwater contaminant source identification. Journal of Hydrology, 594: 125955.
[13] Wang, J, R Ma*, Z Guo, L Qu, M Yin & C Zheng. 2020. Experiment and multicomponent model based analysis on the effect of flow rate and nitrate concentration on denitrification in low-permeability media. Journal of Contaminant Hydrology, 235: 103727.
[14] Yin, M, R Ma*, Y Zhang, S Wei, J Wang, Z Sun, H Sun, & C Zheng. 2020. A distributed-order time fractional derivative model for simulating bimodal sub-diffusion in heterogeneous media. Journal of Hydrology, 591: 125504.
[15] Liang, Y, R Ma*, Y Wang, S Wang, L Qu, W Wei & Y Gan. 2020. Hydrogeological controls on ammonium enrichment in shallow groundwater in the central Yangtze River Basin. Science of the Total Environment, 741: 140350.
[16] Yin, M, Y Zhang*, R Ma*, G R Tick, M Bianchi, C Zheng, W Wei, S Wei & X Liu. 2020. Super-diffusion affected by hydrofacies mean length and source geometry in alluvial settings. Journal of Hydrology, 582: 124515.
[17] Hu, Y, R Ma*, Y Wang, Q Chang, M Ge & Z Sun. 2019. Using hydrogeochemical data to trace groundwater flow paths in a cold alpine catchment. Hydrological Processes, 33: 1942-1960.
[18] Chang, Q, R Ma*, Z Sun, A Zhou, Y Hu & Y Liu. 2018. Using isotopic and geochemical tracers to determine the contribution of glacier‐snow meltwater to streamflow in a partly glacierized alpine- gorge catchment in northeastern Qinghai-Tibet Plateau. Journal of Geophysical Research: Atmospheres, 123: 10037-10056.
[19] Lin, J, R Ma*, Y Hu, Z Sun, Y Wang & C McCarter. 2018. Groundwater sustainability and groundwater/surface-water interaction in arid Dunhuang Basin. northwest China. Hydrogeology Journal, 26: 1559-1572.
[20] Ma, R*, Z Sun*, Y Hu, Q Chang, S. Wang, W. Xing & M. Ge. 2017. Hydrological connectivity from glaciers to rivers in the Qinghai-Tibet Plateau: roles of suprapermafrost and subpermafrost groundwater. Hydrology and Earth System Sciences, 21: 4803-4823.
[21] Sun, Z, R Ma*, Y Wang, T Ma & Y Liu. 2016. Using isotopic, hydrogeochemical-tracer and temperature data to characterize recharge and flow paths in a complex karst groundwater flow system in northern China. Hydrogeology Journal, 24: 1393-1412.
[22] Sun, Z, R Ma*, Y Wang, Y Hu & L Chen. 2016. Hydrogeological and hydrogeochemical control of groundwater salinity in an arid inland basin: Dunhuang Basin, northwestern China. Hydrological Processes, 30: 1884-1902.
[23] Ma, R*, C Zheng, C Liu, J Greskowiak, H Prommer & J Zachara. 2014. Assessment of controlling processes for field-scale uranium reactive transport under highly transient flow conditions. Water Resources Research, 50: 1006-1024.
[24] Ma, R, C Liu, J Greskowiak, H Prommer, J Zachara & C Zheng*. 2014. Influence of calcite on uranium(VI) reactive transport in the groundwater-river mixing zone. Journal of Contaminant Hydrology, 156: 27-37.
[25] Ma, R, C Zheng*, J Zachara & M Tokin. 2012. Utility of bromide and heat tracers for site characterization in a highly dynamic environment. Water Resources Research, 48(8): W08523.
[26] Ma, R, C Zheng*, M Tonkin & J M Zachara. 2011. Importance of considering intraborehole flow in Solute transport modeling under highly dynamic flow conditions. Journal of Contaminant Hydrology, 123: 11-19.
[27] Ma, R*, Y Wang, Z Sun, C Zheng, T Ma & H Prommer. 2011. Geochemical Evolution of Groundwater in Carbonate Aquifers in Taiyuan, Northern China. Applied Geochemistry, 26: 884-897.
[28] Ma, R & C Zheng*. 2011. Not all mass transfer rate coefficients are created equal. Ground Water, 49: 772-774.
[29] Ma, R, C Zheng*, H Prommer, J Greskowiak, C Liu, J Zachara & M Rockhold. 2010. A field-scale reactive transport model for U(VI) migration influenced by coupled multi-rate mass transfer and surface complexation reactions. Water Resources Research, 46: W05509.
[30] Ma, R & C Zheng*. 2010. Effects of density and viscosity in modeling heat as a groundwater tracer. Ground Water, 48(3): 380-389.
馬瑞先後主持國家自然科學基金項目和重點研發項目課題等10餘項。
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| 小尺度優先水流通道對地下水污染物遷移過程和修復的控制作用:基於野外試驗的基礎理論 | | |
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| 江蘇海岸帶生態敏感區生態地質調查—海岸帶濱海濕地生態地質調查 | | |
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馬瑞先後在IAH Congress、MODFLOW and More 2019: Groundwater Modeling and Beyond等重要國際會議做邀請報告10餘次;組織地下水青年科學論壇、IAH Congress專場等中國國內外會議或專場10餘次。
◉ 國際會議口頭報告
[1] Ma, R. 2024. Plenary Debate: The State of Groundwater Research. World Groundwater Congress IAH 2024. Davos, Switzerland. (邀請成員)
[2] Ma, R, J Xiong, X Jiang, Z Sun & Y Wang. 2024. Hydrological processes drive variations in DOM composition in a cold alpine headwater catchment on the Qinghai–Tibetan Plateau. 2024 Goldschmidt Conference. Chicago, USA. (邀請報告)
[3] Ma, R. 2022. The porous aquifer buffers the effect of climate warming on streamflow and carbon export in alpine permafrost regions. 49th IAH Congress. Wuhan, China. (大會邀請報告)
[4] Ma, R. 2019. The impact of the South-to-North Water Diversion projects on groundwater flow system and wetland in the central Yangtze River basin. MODFLOW and More 2019: Groundwater Modeling and Beyond. Golden, USA. (邀請報告)
[5] Ma, R. 2019. Model-based analysis of South-to-North and Yangte-Haijiang River water diversion projects on surface water and groundwater interactions in the central Yangtze River basin, China. International Hydrogeology Workshop. Catalonia, Spain. (邀請報告)
[6] Ma, R. 2018. Groundwater sustainability and groundwater-surface water interaction in an arid inland basin, northwestern China. 45th IAH Congress. Daejeon, Korea. (邀請報告)
[7] Ma, R. 2018. Control of permafrost and seasonal frost on groundwater and surface water interaction in an alpine catchment, Qinghai-Tibet Plateau. International Workshop on Surface Water–Groundwater Interaction in Arid and Semi-arid Region. Shenzhen, China. (邀請報告)
[8] Ma, R. 2016. Heavy metals contamination impacted by mining activities in head water regions of Heihe River, eastern part of Tibet Plateau. Groundwater Quality 2016. Shenzhen, China.
[9] Ma, R. 2015. Surface water and groundwater interaction in a permafrost zone, northwestern China. International Conference on Hydro-Biogeochemical Processes, Coupling, and Impact. Wuhan, China. (邀請報告)
[10] Ma, R. 2015. Modeling uranium reactive transport in a heterogeneous aquifer. The Water Institute Joint Workshop on Water Research. Wuhan, China. (邀請報告)
[11] Ma, R, C Zheng, C Liu, J Greskowiak, H Prommer & J Zachara. 2012. Uranium Reactive Transport in the chemically and physically Heterogeneous Aquifer at the Hanford 300A IFRC Site. Subsurface Environmental Simulation Benchmarking Workshop II (SSBench II). Taipei, China. (邀請報告)
[12] Ma, R, C Zheng, J M Zachara & M J Tonkin. 2011. Using heat as a groundwater tracer for aquifer characterization in a highly dynamic flow environment. GSA Annual Meeting. Minneapolis, USA. (邀請報告)
[13] Ma, R, C Zheng, C Liu, J Zachara, H Prommer & J Greskowiak. 2010. A multi-rate mass transfer model for field-scale uranium transport in a physically and chemically heterogeneous aquifer. Ground Water Summit and 2010 Ground Water Protection Council Spring Meeting. Denver, USA.
[14] Ma, R. 2010. Coupled process modeling of Hanford IFRC Site, USA. International Groundwater Forum 2010: Securing Groundwater in a Changing World. Beijing, China. (邀請報告)
[15] Ma, R, C Zheng, M J Tonkin & J M Zachara. 2010. Importance of considering intra-borehole flow in solute transport modeling under highly dynamic flow conditions. AGU Fall Meeting. San Francisco, USA.
[16] Ma, R, C Zheng, J M Zachara, M Rockhold & A Ward. 2009. Modeling heat transport as a groundwater tracer. GSA Annual Meeting. Portland, USA.
人才培養
社會任職
時間 | 擔任職務 |
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| 國際水文地質學家協會官方SCI刊物《Hydrogeology Journal》主編 |
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| ESCI期刊《Journal of Groundwater Science and Engineering》副主編 |
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| 中國地質科學院水文地質環境地質研究所“自然資源部地下水科學與工程重點實驗室”學術委員會委員 |
| 中國地質大學(武漢)“長江流域環境水科學湖北省重點實驗室”副主任 |
| 甘肅有色金屬地質勘查局“自然資源部高寒乾旱區礦山地質環境修復工程技術創新中心”技術委員會委員 |
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| SCI期刊《Journal of Earth Science》副主編 |
| 南京大學“表生地球化學教育部重點實驗室”學術委員會委員 |
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