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贺勇

领域:新材料产业 学校:中南大学职称:

主要研究方向:环境工程地质,非饱和土力学。
随着全球经济的发展,工业化和城市化进程加速,地质灾害与环境问题受到越来越多的重视。其中,由于矿物开采、金属冶炼和工业废水的大量排放,固体废弃物处置中渗滤液渗漏等,土壤与地下水的重金属污染问题愈发严重。“垃圾围城”、工业污染、矿山重金属污染及尾矿库安全等问题日渐突出。土壤污染管控和修复,固体废弃物和垃圾处置任重道远。为响应绿水青山就是金山银山的理念、实现岩土体和地下水中重金属污染的有效防治,确保尾矿库安全,以及尾矿、垃圾焚烧飞灰资源化利用,经济高效的重金属污染防治方法和固体废弃物资源化创新性利用成为改善环境质量的迫切需求,也是当前地质工程研究热点与科学前沿。基于环境工程地质学、非饱和土力学基本理论,以工程地质中重金属污染防治及固体废弃物资源化利用为出发点,以垃圾填埋场、有色冶炼场地、矿山及尾矿库为工程背景,以环境可持续发展为目标展开相关研究。


※ 培养研究生:
1. 李冰冰,2018.9-—;发表论文:中文一篇,英文一篇(截至2019.8);获2019年国家奖学金;
2. 喻志鹏,2019.9-—;
3. 胡 广,2019.9-—;
4. 蒋文强,2019.9-—;
5. Malik Arsalan, 2019.9—;



※ 指导本科生:
1. 李 震,16级本科生;创新训练项目(国家级):重金属污染物作用下尾矿砂水-力耦合特性研究(S201910533188),2019-04-15 至 2020-04-15。保送 北京大学 地 球与空间科学学院;
2. 马心悦,17级本科生;创新训练项目(国家级):一种用于含重金属离子的地下水防渗的新型复合粘土材料的研制(S201910533157), 2019-04-15至2020-04-15
3. 董安丽,17级本科生;创新训练项目(国家级):溶洞帷幕注浆浆液配比优化及数值模拟研究(S201910533227),2019-4-25至2020-4-15
4. 罗媛媛,18级本科生;创新训练项目(校级):膨润土-红粘土竖向隔离墙对重金属污染物的阻滞作用,2019-04-15至2019-04-15
5. 陈良玺,15级本科生;考研 北京大学 地球与空间科学学院;
6. 王明明,15级本科生;考研 中南大学 地球科学与信息物理学院;

※ 协助指导留学生:
1. Ahmed Malik Muhammad Haroon, 2018.9—; 博士研究生;
2. Akram Sadam, 2018.9—; 博士研究生;

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教育背景

2015.12–2017.1, 法国国立路桥大学, 地质工程, 联培博士;

2012.9–2017.9, 同济大学, 地质工程, 博士;

2009.9–2012.6, 长沙理工大学, 岩土工程, 硕士;
2005.9–2009.6, 湖南城市学院, 土木工程, 学士;

工作经历

2018年1月-至今,中南大学,地球科学与信息物理学院,特聘副教授



项目课题经历

论文、成果、著作等

[1] Experimental and numerical study on heavy metal contaminant migration and retention behavior of engineered barrier in tailings pond. Environmental Pollution 252 (2019) 1010-1018 (SCI, IF2018: 5.714, JCR:Q1, Top期刊)


[2] Effects of NaCl solutions on the swelling and shrinkage behavior of compacted bentonite under one-dimensional conditions. Bulletin of Engineering Geology and the Environment, 2019, https://doi.org/10.1007/s10064-019-01568-1 (SCI, IF2018: 2.138, JCR:Q2)


[3] Removal of Chromium and Strontium from aqueous solutions by adsorption on Laterite. Archives of Environmental Protection, 2019, 45(3):11-20 (SCI, IF2018: 1.689, JCR:Q3)


[4] Experimental and modeling study of soil water retention curves of compacted bentonite considering salt solution effects, Geofluids, vol. 2019, Article ID 4508603, 11 pages, 2019. https://doi.org/10.1155/2019/4508603. (SCI, IF2018: 1.437, JCR:Q2)


[5] Application of optimized grey discrete Verhulst-BP neural network model in settlement prediction of foundation pit. Environmental Earth Sciences, 2019, Accept. (SCI, IF2018: 1.871,JCR:Q3)


[6] Effects of K+ solutions on swelling behavior of compacted GMZ bentonite. Engineering Geology 249 (2019) 241–248. (SCI, IF2018: 3.909, JCR:Q1)


[7] A dynamic mesh-based approach to analyse hydrodynamic interactions between a fluidic hammer and drill bit. Journal of Petroleum Science and Engineering 175 (2018) 536–546(SCI, IF2018: 2.886, JCR:Q1) 。


[8] Effects of wetting-drying cycles on the air permeability of compacted Téguline clay. Engineering Geology, 2017, 228:173–179 (SCI, IF2018: 3.909, JCR:Q1)


[9] Influence of pore fluid concentration on water retention properties of compacted GMZ01 bentonite. Applied Clay Science, 2016.5, 129: 131-141.(SCI,IF2018: 3.89;JCR:Q1)


[10] Influence of salt concentration on volume shrinkage and water retention characteristics of compacted GMZ bentonite. Environmental Earth Sciences, 2016,75(6):535(SCI, IF2018: 1.871, JCR:Q3)


[11] Equilibrium, kinetic and thermodynamic studies of adsorption of Sr (II) from aqueous solution onto GMZ bentonite.Environmental Earth Sciences, 2016, 75(9):807(SCI,IF2018: 1.871;JCR:Q3)


[12] Thermochemical effects on the smectite alteration of GMZ bentonite for deep geological repository. Environmental Earth Sciences, 2016, 75(10):906 (SCI,IF2018: 1.871,JCR:Q3)


[13] Competitive adsorption characteristics of Na(I)/Cr(III) and Cu(II)/Cr(III) on GMZ bentonite in their binary solution. Journal of Industrial and Engineering Chemistry, 2015, 26:335-339. (SCI,IF2018: 4.978,JCR:Q1)


[14] Effect of shaking time, ionic strength, temperature and pH value on desorption of Cr (III) adsorbed onto GMZ bentonite. Transaction of Nonferrous Metals Society of China, 2013, 23(11): 3482-3489. (SCI,IF2018: 2.338,JCR:Q1)


[15] Removal of chromium (III) from aqueous solutions by adsorption on bentonite from Gaomiaozi, China. Environmental Earth Sciences, 2012, 67 (5): 1261-1268. (SCI,IF2018: 1.871,JCR:Q2)


[16] Characterization of water retention, compressibility and swelling properties of a pellet/powder bentonite mixture. Engineering Geology 248 (2019) 14–21. (SCI, IF2018: 3.909, JCR:Q1)


[17] Adsorption, Desorption and Competitive Adsorption of Heavy Metal Ions from Aqueous Solution onto GMZ01 Bentonite. ENGINEERING GEOLOGY FOR SOCIETY AND TERRITORY, VOL 6: APPLIED GEOLOGY FOR MAJOR ENGINEERING PROJECTS. 2015:533-536(ISTP收录)


[18] Adsorption of Heavy Metals onto Bentonites Used as Buffer/Backfilling Materials. Unsaturated Soils, 2012, 2: 385-391.


[19] 贺 勇,黄润秋,陈永贵,叶为民. 基于干湿变形效应的压实红粘土土水特征[J]. 中南大学学报(自然科学版), 2016,47(1):143-148. (EI收录)


[20] 陈永贵,贺 勇, 周星志. 压实膨润土工程屏障对重金属污染物的阻滞[J]. 中南大学学报(自然科学版), 2012, 43(10): 4038-4043. (EI收录)


[21] 李冰冰,贺勇*(通讯作者),张可能,刘强,吴开兴. 基于流固耦合作用的某尾矿坝渗流稳定性分析[J]. 探矿工程(岩土钻掘工程), 2018,45(10): 104-108.


[22] 左文贵,张家林,贺勇.郴州某二叠系煤系土滑坡变形机理分析[J].浙江工业大学学报,2018,46(06):672-676.


[23] 发明专利:重金属污染场地防渗墙体自修复方法,2015.6 (专利号ZL201310698435.3)


[24] 发明专利:土体干湿变形及裂纹演化规律试验系统, 2019.8.19. 申请号:201910765502.6


[25] 发明专利:一种含天然气水合物储层动静加载模拟取样实验系统及实验方法,2019.05.08. 申请号:201910378223.4


专利、著作版权等

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