研究队伍
研究队伍

深部地热-郭清海

发布人:黄满发表时间:2020-11-07点击:

郭清海*

http://grzy.cug.edu.cn/__local/A/2F/D8/E0655261C4BA20D3ABABF4FBA6D_3C9280AC_C51C.jpg郭清海,男,汉族,1978 4 19 日生,教授、博士生导师

工作经历

l  201012-现在:任教授

l  201407-现在:任博士生导师

l  200712-201011月:任副教授

l  200601-200711月:任讲师

l  200507月起在中国地质大学(武汉)环境学院任教

教育和主要国外经历

l  199509-199906月,中国地质大学(武汉),获工学学士学位

l  199909-200206月,中国地质大学(武汉),获工学硕士学位

l  200209-200506月,中国地质大学(武汉),获工学博士学位

l  200703-200905月:中国地质大学(武汉)地质学博士后流动站

l  201005-201105月:加拿大滑铁卢大学(University of Waterloo)地球与环境科学系(Department of Earth and Environmental Sciences

l  201308-201311月:美国地质调查局(US Geological Survey)水资源部(Water Resources Discipline

l  201511-201512月:德国达姆施塔特工业大学(Technical University Darmstadt)应用地球科学学院(Institute of Applied Geosciences

研究方向

l  高温地热流体地球化学

l  原生劣质地下水成因与水污染防治

主持科研项目

l  国家自然科学基金项目5项(NSFC-DFG国际合作研究项目No. 41861134028;面上项目No. 42077278;面上项目No. 41772370;面上项目No. 41572335;青年科学基金项目No. 40702041

l  青海省科技计划项目1项(No. 2013-G-Q08A

l  国家重点研发计划专题项目1项(No. 2018YFC0604303-2

l  国家电力投资集团公司科技项目1项(No. 2015-138-HHS-KJ-X

l  中央高校基本科研业务费专项资金项目3项(特色学科团队No. CUG120113;腾飞计划No. CUG120505;摇篮计划No. CUGL100406

l  教育部高等学校博士学科点专项科研基金项目1项(No. 20070491008

l  湖北省自然科学基金项目1项(No. 2007ABA312

l  中国博士后科学基金项目2项(特别资助项目No. 200801333;一等资助项目No. 20080430146

l  中德合作科研项目(PPP1项(No. [2014]6065

l  山西省水利厅东山供水工程建管局委托项目1项(No. DSGS(F)-QT-SJ-92(2013)

l  国家重点实验室自主研究课题/开放课题3项(No. GBL11505No. SKLEG9012No. GPMR200714

作为主要人员参与的科研项目

l  国家自然科学基金委员会创新研究群体科学基金1项(No. 41521001

l  国家自然科学基金委员会重大国际合作研究项目1项(No. 41120124003

奖励

l  中国地质学会青年地质科技奖金锤奖2011年)

l  国际地球化学协会(IAGCEbelmen Award2010年)

l  湖北省自然科学一等奖(第二完成人)(2009年)

l  湖北省优秀博士学位论文(2006年)

l  中国科学院奖学金(2004年)

专著、译著

l  郭清海, 曹耀武, 余正艳, 天娇, 张寅. 地热系统来源典型有害组分的阴离子黏土处理. 科学出版社, 20176.

l  郭清海, 马瑞, 王焰新, 马腾. -山地下水系统演化及其水资源-环境效应. 科学出版社, 20104.

l  郭清海, 王知悦(译). 水文地质学原理(Paul F. Hudak著,第三版). 高等教育出版社, 20108.

代表性期刊论文

1.     Qinghai Guo, Britta Planer-Friedrich, Li Luo, Mingliang Liu, Geng Wu, Yumei Li, Qian Zhao, 2020. Speciation of antimony in representative sulfidic hot springs in the YST Geothermal Province (China) and its immobilization by spring sediments. Environmental Pollution 266, 1-15.

2.     Qinghai Guo, Tong He, Qifan Wu, Mingliang Liu, 2020. Constraints of major ions and arsenic on the geological genesis of geothermal water: Insight from a comparison between Xiong’an and Yangbajain, two hydrothermal systems inChina. Applied Geochemistry 117, 1-9.

3.     Qinghai Guo, Britta Planer-Friedrich, Mingliang Liu, Ketao Yan, Geng Wu, 2019. Magmatic fluid input explaining the geochemical anomaly of very high arsenic in some southern Tibetan geothermal waters. Chemical Geology 513, 32-43.

4.     Qinghai Guo, Yumei Li, Li Luo, 2019. Tungsten from typical magmatic hydrothermal systems inChinaand its environmental transport. Science of the Total Environment 657, 1523-1534.

5.     Qinghai Guo, Mingliang Liu, Li Luo, Ketao Yan, Wei Guo, Geng Wu, Weide Yan, Yanxin Wang, 2019. Geochemical controls on magnesium and its speciation in various types of geothermal waters from typical felsic-rock-hosted hydrothermal systems inChina. Geothermics 81, 185-197.

6.     Qinghai Guo, Britta Planer-Friedrich, Mingliang Liu, Jiexiang Li, Chao Zhou, Yanxin Wang, 2017. Arsenic and thioarsenic species in the hot  springs of the Rehai magmatic geothermal system, Tengchong volcanic region,China. Chemical Geology 453, 12-20.

7.     Qinghai Guo, Yaowu Cao, Yaqin Zhuang, Yijun Yang, Mindai Wang, Yanxin Wang, 2017. Effective treatment of arsenic-bearing water by a layered double metal hydroxide: iowaite. Applied Geochemistry 77, 206-212.

8.     Qinghai Guo, Mingliang Liu, Jiexiang Li, Xiaobo Zhang, Wei Guo, Yanxin Wang, 2017. Fluid geochemical constraints on the heat source and reservoir temperature of the Banglazhang hydrothermal system, Yunnan-Tibet   Geothermal Province,China. Journal of Geochemical Exploration 172, 109-119.

9.     Qinghai Guo, Yaowu Cao, Jiexiang Li, Xiaobo Zhang, Yanxin Wang, 2015. Natural attenuation of geothermal arsenic from Yangbajain power plant discharge in the Zangbo River, Tibet,China. Applied Geochemistry 62, 164-170.

10.  Qinghai Guo, D. Kirk Nordstrom, R. Blaine McCleskey, 2014. Towards understanding the puzzling lack of acid geothermal springs inTibet(China): Insight from a comparison with Yellowstone (USA) and some active volcanic hydrothermal systems. Journal of Volcanology and Geothermal Research 288, 94-104.

11.  Qinghai Guo, Mingliang Liu, Jiexiang Li, Xiaobo Zhang, Yanxin Wang, 2014. Acid hot springs discharged from the Rehai hydrothermal system of the Tengchong volcanic area (China): formed via magmatic fluid absorption or geothermal steam heating? Bulletin of Volcanology 76 (10), 1-12.

12.  Qinghai Guo, Jiao Tian, 2013. Removal of Fluoride and Arsenate from Aqueous Solution by Hydrocalumite via Precipitation and Anion Exchange. Chemical Engineering Journal 231, 121-131.

13.  Qinghai Guo, Yin Zhang, Yaowu Cao, Yanxin Wang, Weide Yan, 2013. Boron sorption from aqueous solution by hydrotalcite and its preliminary application in geothermal water deboronation. Environmental Science and Pollution Research 20 (11), 8210-8219.

14.  Qinghai Guo, 2012. Hydrogeochemistry of high-temperature geothermal systems inChina: a review. Applied Geochemistry 27 (10), 1887-1898.

15.  Qinghai Guo, Eric J. Reardon, 2012. Calcined dolomite: an alternative to lime for minimizing undesirable element leachability from fly ash. Industrial & Engineering Chemistry Research 51 (26), 9106-9116.

16.  Qinghai Guo, Eric J. Reardon, 2012. Fluoride removal from water by meixnerite and its calcination product. Applied Clay Science 56, 7-15.

17.  Qinghai Guo, Yanxin Wang, 2012. Geochemistry of Hot Springs in the Tengchong Hydrothermal Areas, Southwestern China. Journal of Volcanology and Geothermal Research 215-216, 61-73.

18.  Qinghai Guo, Yanxin Wang, 2009. Trace element hydrochemistry indicating water contamination in and around the Yangbajing Geothermal Field, Tibet,China. Bulletin of Environmental Contamination and Toxicology 83 (4), 608-613.

19.  Qinghai Guo, Yanxin Wang, Wei Liu, 2009. Hydrogeochemistry and environmental impact of geothermal waters from Yangyi of Tibet, China. Journal of Volcanology and Geothermal Research 180 (1), 9-20.

20.  Qinghai Guo, Yanxin Wang, Wei Liu, 2007. Major hydrogeochemical processes in the two reservoirs of the Yangbajing geothermal field, Tibet, China. Journal of Volcanology and Geothermal Research 166 (3-4), 255-268.

21.  Qinghai Guo, Yanxin Wang, Teng Ma, Rui Ma, 2007. Geochemical processes controlling the elevated fluoride concentrations in groundwaters of the Taiyuan Basin, Northern China. Journal of Geochemical Exploration 93 (1), 1-12.

22.  Qinghai Guo, Yanxin Wang, Teng Ma, Luxiu Li, 2005. Variation of karst spring discharge in the recent five decades as an indicator of global climate change: a case study at Shanxi, northernChina. Science inChinaSeries D-Earth Sciences 48 (11), 2001-2010.

23.  郭清海, 吴启帆, 2020. 云南腾冲热海高温地热水中汞的地球化学异常及其指示意义. 地学前缘, 27 (1), 103-111.

24.  郭清海, 何曈, 庄亚芹, 骆进, 张灿海, 2020. 化学刺激法提高花岗岩类岩石裂隙渗透性的实验研究. 地学前缘, 27 (1), 159-169.

25.  郭清海, 王焰新, 2014. 典型新生代断陷盆地内孔隙地下水地球化学过程及其模拟——以山西太原盆地为例. 地学前缘, 21 (4), 83-90.

26.  郭清海, 闫世龙, 蒋方媛, 2005. 太原市深层孔隙水的水化学分带性及其地球化学模拟. 地球科学, 30 (2), 245-249.

27.  郭清海, 王焰新, 马腾, 李录秀, 2005. 山西岩溶大泉近50年的流量变化过程及其对全球气候变化的指示意义. 中国科学D, 35 (2), 167-175.

28.  Yaowu Cao, Qinghai Guo*, Mengsi Liang, Weihao Sun, 2020. Sb(III) and Sb(V) removal from water by a hydroxyl-intercalated, mechanochemically synthesized Mg-Fe-LDH. Applied Clay Science 196, 1-11.

29.  Mingliang Liu, Qinghai Guo*, Li Luo, Tong He, 2020. Environmental impacts of geothermal waters with extremely high boron concentrations: Insight from a case study inTibet,China. Journal of Volcanology and Geothermal Research 397, 1-12.

30.  Yaowu Cao, Qinghai Guo*, Zhu Shu, Cong Jiao, Li Luo, Wei Guo, Qian Zhao, Zuowei Yin, 2019. Tungstate removal from aqueous solution by nanocrystalline iowaite: An iron-bearing layered double hydroxide. Environmental Pollution 247, 118-127.

31.  Li Luo, Qinghai Guo*, Yaowu Cao, 2019. Uptake of aqueous tungsten and molybdenum by a nitrate intercalated, pyroaurite-like anion exchangeable clay. Applied Clay Science 180, 1-10.

32.  Mingliang Liu, Qinghai Guo*, Geng Wu, Wei Guo, Weiyu She, Weide Yan, 2019. Boron geochemistry of the geothermal waters from two typical hydrothermal systems in Southern Tibet (China): Daggyai and Quzhuomu. Geothermics 82, 190-202.

33.  Jin Luo, Yongqiang Zhu, Qinghai Guo*, Long Tan, Yaqin Zhuang, Mingliang Liu, Canhai Zhang, Mingcheng Zhu, Wei Xiang, 2018. Chemical stimulation on the hydraulic properties of artificially fractured granite for enhanced geothermal system. Energy 142, 754-764.

34.  Zhu Shu, Qinghai Guo*, Yun Chen, Jun Zhou, Wei Guo, Yaowu Cao, 2017. Accelerated sorption of boron from aqueous solution by few-layer hydrotalcite nanosheets. Applied Clay Science 149, 13-19.

 

35.  Yaowu Cao, Qinghai Guo*, Zhu Shu, Yaqin Zhuang, Zhengyan Yu, Wei Guo, Canhai Zhang, Mingcheng Zhu, Qian Zhao, Tianlin Ren, 2016. Application of calcined iowaite in arsenic removal from aqueous solution. Applied Clay Science 126, 313-321.

36.  Mingliang Liu, Qinghai Guo*, Xiaobo Zhang, Yanxin Wang, 2015. Characteristic solutes in geothermal water from the Rehai hydrothermal system, Southwestern China. Journal of Earth Science 26 (1), 140-148.

37.  Xiaobo Zhang, Qinghai Guo*, Jiexiang Li, Mingliang Liu, Yanxin Wang, Yijun Yang, 2015. Estimation of Reservoir Temperature Using Silica and Cationic Solutes Geothermometers: A Case Study in the Tengchong Geothermal Area. Chinese Journal of Geochemistry 34 (2), 233-240.

38.  Jianfei Yuan, Qinghai Guo*, Yanxin Wang, 2014. Geochemical behaviors of boron and its isotopes in aqueous environment of the Yangbajing and Yangyi geothermal fields,Tibet,China. Journal of Geochemical Exploration 140, 11-22.

39.  Yanxin Wang, Qinghai Guo, Chunli Su, Teng Ma, 2006. Strontium isotope characterization and major ion geochemistry of karst water flow, Shentou, northern China. Journal of hydrology 328 (3-4), 592-603.

40.  严克涛, 郭清海*, 2019. 地下水环境中的硫代砷研究进展. 水文地质工程地质, 46 (5), 63-73.

41.  严克涛, 郭清海*, 刘明亮, 2019. 西藏搭格架高温热泉中砷的地球化学异常及其存在形态. 吉林大学学报(地球科学版), 49 (2), 548-558.

42.  赵倩, 郭清海*, 罗黎, 2018. 水中硫代钨酸盐的形成及其形态转化. 中国环境科学, 38 (9), 3437-3446.

43.  余正艳, 郭清海*, 曹耀武, 庄亚芹, 张灿海, 朱明成, 2018. 阴离子黏土处理增强型地热系统返排液的研究. 环境化学, 37 (2), 335-346.

44.  李洁祥, 郭清海*, 余正艳, 2017. 高温地热系统中粘土矿物形成对Na-KK-Mg地球化学温标准确性的影响. 地球科学-中国地质大学学报, 42 (1), 142-154.

45.  王敏黛, 郭清海*, 郭伟, 彭月娥, 赵倩, 2016. 硫代砷化物的合成、鉴定和定量分析方法研究. 分析化学, 44 (11), 1715-1720.

46.  庄亚芹, 郭清海*, 刘明亮, 李洁祥, 周超, 2016. 高温富硫化物热泉中硫代砷化物存在形态的地球化学模拟:以云南腾冲热海水热区为例. 地球科学-中国地质大学学报, 41 (9), 1499-1510.

47.  李洁祥, 郭清海*, 王焰新, 2015. 高温热田深部母地热流体的温度计算及其升流后经历的冷却过程: 以腾冲热海热田为例. 地球科学——中国地质大学学报, 40 (9), 1576-1584.

48.  王敏黛, 郭清海*, 严维德, 刘明亮, 曹耀武, 李洁祥, 石维栋, 尚小刚, 马月花, 2014. 青海共和盆地中低温地热流体发电. 地球科学——中国地质大学学报, 39 (9), 1317-1322.

49.  天娇, 郭清海*, 2013. 水铝钙石类阴离子黏土在水污染处理领域应用的研究现状. 环境化学, 32 (8), 1571-1579.

*:通讯作者

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