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个人简介

教育背景 2006-2010,Universidad de A Coruna,水文地质,博士 2002-2006,吉林大学,水文学及水资源,硕士 1998-2002,吉林大学,水文地质与工程地质,学士 工作经历 2015.7-至今,南方科技大学环境科学与工程学院,研究员(研究副教授) 2012-2015,中国能源建设集团广东省电力设计研究院,高级工程师 2010-2012,广东省电力设计研究院/北京大学,博士后

研究领域

放射性废物的安全处置,核素迁移机理及模拟、地下水及土壤污染调查与修复,地下水循环及环境影响评价

近期论文

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[1] Wan-Huan Zhou*, Fuming Liu, Shuping Yi*, Yongzhan Chen et al.; Simultaneous Stabilization of Pb and Improvement of Soil Strength: Physicochemical and Geotechnical Effects of NZVI on Pb(Ⅱ)-contaminated Clayey Soil; Journal of the Total Environment, 2018. https://doi.org/10.1016/j.scitotenv.2018.09.146 [2] Fuming Liu, Shuping Yi*, Haiyi Ma, Junyi Huang, Yukun Tang, Jianbo Qin, Wan-huan Zhou; Risk assessment of groundwater environmental contamination: a case study of a Karst developed site for the construction of a fossil power plant. Environmental Science and Pollution Research, 2017. https://doi.org/10.1007/s11356-017-1036-5 [3] Shuping Yi, Javier Samper, Acacia Naves & Josep M. Soler. A single-site reactive transport model of Cs+ for the in situ diffusion and retention (DR) experiment, 2015,DOI 10.1007/s12665-015-4419-2. [4] Shuping Yi, Haiyi Ma, Chunmiao Zheng, Guocheng Ren, Xueling Hu. A field-scale long-term study on radionuclides transport thorough weathered granites at a site in Southern China, Environmental Earth Science, DOI 10.1007/s12665-014-3343-1. [5] Shuping Yi, Javier Samper, Acacia Naves, Thomas Gimmi, Josep M. Soler & Olivier X. Leupin. Identifiability of diffusion and retention parameters of anionic tracers from the DR experiment. Journal of Hydrology, 2012, 446-447: 70-76. [6] Shuping Yi, Haiyi Ma, Chunmiao Zheng, Xuebin Zhu, Hua’an Wang,Xueshan Li, Xueling Hu, Jianbo Qin. Assessment of site conditions for disposal of low- and intermediate-level radioactive wastes: A case study in southern China. Science of the Total Environment, 2012, 414:624-631. [7] Shuping Yi, Javier Samper, Acacia Naves, Thomas Gimmi, Josep M. Soler & Olivier X. Leupin. Inverse estimation of the effective diffusion of the filter in the in situ diffusion and retention (DR) experiment. Transport in Porous media, 2011, DOI 10.1007/s11242-012-9960-9. [8] Yong-zhan Chen, Wan-Huan. Zhou*, Fu-Ming Liu; Shu-Ping Yi; Exploring the Effects of Nanoscale Zero-valent Iron (nZVI) on the Mechanical Properties of Lead-contaminated Clay; Canadian Geotechnical Journal, 2018. https://doi.org/10.1139/cgj-2018-0387 [9] Fuming Liu, Wan-huan Zhou*, Shuping Yi; Immobilization of Pb in soil using NZVI nanoparticles: effects on vane shear strength; Sustainable Civil Infrastructures; 2017. https://doi.org/10.1007/978-3-319-95768-5_15 [10] Wan-Huan Zhou*, Yong-Zhan Chen, Fuming Liu, Shuping Yi; Experimental Study on the Strength Characteristics of Lead Contaminated Soil with NZVI Treatment; Proceedings of GeoShanghai 2018 International Conference: Geoenvironment and Geohazard, 2017. https://doi.org/10.1007/978-981-13-0128-5_31 [11] J. Samper, S. Yi, A. Naves. Analysis of the parameter identifiability of the in situ diffusion and retention (DR) experiment. Physics and Chemistry of the Earth, 35(2010), 207-216. [12] J. Samper, Q. Yang, S. Yi, M. García-Gutiérrez, T. Missana, M. Mingarro, Ú. Alonso, J.L. Cormenzana. Numerical modelling of large-scale solid-source diffusion experiments in Callovo-Oxfordian clay. Physics and Chemistry of the Earth, 33 (2008), S208-S215. [13] M. García-Gutiérrez, J.L. Cormenzana, T. Missana, M. Mingarro, Ú. Alonso, J. Samper, Q. Yang, S. Yi. Diffusion experiments in Callovo-Oxfordian clay from the Bure site, France. Experimental setup and data analysis. Physics and Chemistry of the Earth, 33 (2008), S125-S130. [14] Shuping Yi, a, Haiyi Ma, and Hua’an Wang. A Preliminary Study on the Transport Behavior for a Potential Disposal Site of LILW in Southern China. Advanced Material Research, 2011, 356-360, 1445-1453, doi:10.4028/www.scientific.net/AMR.365-360.1445. [15] H. Ma, S. Yi, Guocheng Ren, Xueling Hu. Analysis of uncertainties affecting numerical transport models for a potential radioactive waste disposal site, 2014, 955-959: 1067-1614 (corresponding author).

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