TAN Min

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Update: 2023-12-25

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Min Tan

Postdoctoral Fellow

tanmin200709@126.com

db16160031b0@cumt.edu.cn

Basic Introduction:

Dr. Tan received her Ph.D. degree from China University of Mining and Technology in 2021. She has been the PI 4 funded projects, and her research interests include ecological restoration and greenhouse gas emissions reduction in mining areas. She has published >10 peer-reviewed papers.

Educational Background:

2016.09-2021.06, Ph.D. in Land Resources Management, China University of Mining and Technology, Xuzhou, China

2012.09-2015.06, Master in Environmental Science and Engineering, Hohai University, Nanjing, China

2007.09-2011.06, Bachelor in Environmental Science, China University of Mining and Technology, Xuzhou, China

Research Interests:

Ecological restoration in mining area

Greenhouse gas monitoring and emission reduction in mining areas

Research Projects:

lNational Natural Science Foundation youth project, Methane emission mechanism and reduction paths in subsidence ponding of high groundwater level coal mining areas under different restoration modes, 2023.01-2025.12.

lChina University of Mining and Technology youth project, mechanism of coupling heavy metal-water stress on methane release in coal mining subsidence area, 2022.01-2023.12.

lInvestigation and evaluation of available resources of underground space in Qingdao city center, 2022.01-2024.12.

lOpen Fund of Engineering Research Center of Ministry of Education for Mine Ecological Restoration, Spatial and temporal distribution characteristics of soil heavy metals under different restoration modes in high-water level mining areas, 2022.01-2022.12.

Selected Journal papers:

lTan, M.; Bian, Z.*; Dong, J.; Hao, M.; Qu, J. Comparing the variation and influencing factors of CO2emission from subsidence waterbodies under different restoration modes in coal mining area. Environmental Research, 2023, 237, 116936.

lTan, M.; Dong, J.*; Qu, J.; Hao, M. The Patterns of Migration of Potentially Toxic Elements from Coal Mining Subsidence Areas and Associated Soils to Waterlogged Areas. Toxics, 2023, 11, 888.

lTan, M.; Zhang, X.; Luo, W.; Hao, M. Deep Learning Based Spatial Distribution Estimation of Soil Pb Using Multi-Phase Multispectral Remote Sensing Images in a Mining Area. Land, 2023, 12, 1789.

lTan, M.;Zhou, X.;Li, G.; Ge, M.;Chen, Z.; Qu, J.*.Soil characteristics and microbial responses in post-mine reclamation areas in a typical resource-based city, China. Journal of Environmental Engineering and Landscape Management, 2021, 29(3):273-286.

lTan, M.;Zhao, H.;Li, G.;Qu, J.*.Assessment of potentially toxic pollutants and urban livability in a typical resource-based city, China, Environmental Science and Pollution Research, 2020,27(15): 18640-18649.

lTan, M.;Wang, K.;Xu, Z.;Li, H.;Qu, J.*. Study on Heavy Metal Contamination in High Water Table Coal Mining Subsidence Ponds That Use Different Resource Reutilization Methods, Water, 2020(12): 3348.

lQu, J.#; Tan, M.#; Hou, Y.; Ge, M.; Wang, A.; Wang, K.; Shan, J.; Chen, F.*. Effects of the Stability of Reclaimed Soil Aggregates on Organic Carbon in Coal Mining Subsidence Areas. Applied Engineering in Agriculture, 2018,34(5):843-854.

lHao, M.; Tan, M.*; Zhang, H.. A change detection framework by fusing threshold and clustering methods for optical medium resolution remote sensing images, European Journal of Remote Sensing, 2018, 52(01): 96-106.

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