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姓名 刘庆友 性别:
职称 研究员 学历 博士研究生
电话 传真:
Email: liuqingyou@vip.gyig.ac.cn 邮编: 550081
地址 贵州省贵阳市观山湖区林城西路99号
简历:

2011/01-至今,中国科学院地球化学研究所,地球内部物质高温高压院重点实验室,历任副研究员、研究员;

2014/02-2014/09,澳大利亚 CSIRO Mineral Resources Flagship,访问学者;

2011/03-2012/03,澳大利亚 CSIRO Process Science and Engineering,访问学者;

2007/09-2010/12,中国科学院地球化学研究所,地球内部物质高温高压院重点实验室,助理研究员;

研究方向:

(1) 高压水热流体-导电性物质(矿物/金属)相互作用实验研究;

(2) 金属硫化物矿物风化机制及其环境效应;

(3) 粘土矿物改性及其对重金属离子和有机污染物的吸附/解吸;

(4) 磷块岩型稀土矿稀土富集与分离。

承担科研项目情况:

(1) 国家自然科学基金重点项目,41930863,玄武岩和花岗岩风化过程的LiMg同位素分馏机理研究(子课题:玄武岩和花岗岩风化过程的LiMg同位素分馏的淋滤和吸附实验研究),2020/01-2024/12,在研,主持;

(2) 国家自然科学基金面上项目,41873074,高温高压下水流体-黄铁矿/金相互作用实验研究及其对金成矿作用的启示,2019/01-2022/12,在研,主持;

(3) 中国地质大学(武汉)委托项目,水热大腔体高温高压实验装置的压力加载系统的研制及装置的电化学实验应用,2018/10-2023/12,在研,主持;

(4) 贵州省地质勘查基金公益性项目,2016-09-1号,织金磷块岩型稀土矿稀土富集分离关键技术研究,2016/12-2019/12,在研,主持;

(5) 贵州省社会发展科技攻关项目,黔科合SY[2011]3088号,低品位硫化铜矿微生物应力原电池浸出技术研究,2011/06-2013/06,结题,主持;

(6) 国家自然科学基金面上项目,40803017,常温差异应力下硫化物腐蚀原电池的电化学实验研究,2009/01-2011/12,结题,主持;

(7) 中国科学院西部之光人才培养计划西部博士资助项目2009/07-2011/07,流动体系应力作用下硫化物矿物原电池腐蚀实验研究,结题,主持;

(8) 贵州省自然科学基金项目,黔科合J[2008]2240号,流动体系下硫化物矿物原电池腐蚀实验研究对贵州矿山环境治理的启示,2008/10-2010/08,结题,主持。

专家类别:
职务:
社会任职:
获奖及荣誉:

(1) 中国科学院朱李月华优秀博士生奖;

(2) 贵州省千层次人才;

代表论著:

第一作者或通讯作者期刊论文

(1) Kai Zheng, Heping Li*, Shuai Wang, Xiaonan Feng, Luying Wang, Qingyou Liu*. Arsenopyrite weathering in sodium chloride solution: Arsenic geochemical evolution and environmental effects. Journal of Hazardous Materials, 2020. online, DOI: 10.1016/j.jhazmat.2020.122502.

(2)   Zhiwei Yao, Meijun Dong, Yan Shi, Yue Sun, Qingyou Liu*. A novel and facile synthetic route to Mo (M=Ni, Co) bimetallic phosphides. Phosphorus Sulfur and Silicon and the Related Elements, 2020, 195(2): 165-172.

(3)   Qingyou Liu*, Shuai Wang, Miao Chen, Yi Yang. Effect of pyrite on chalcopyrite electrochemical behaviour at different potentials. Journal of Chemical Research, 2019, 43(11-12):493-502.

(4)   Zhichao Li, Qingyou Liu*, Yan Shi*, Zhiwei Yao*, Wei Ding, Yue Sun. Novel synthesis of NiMoP phosphide catalyst in a CH4-CO2 gas mixture. Dalton Transactions, 2019, 48: 14256-14260.

(5)   Kai Zheng, Heping Li*, Shengbin Li, Luying Wang, Xiaoying Wen, Qingyou Liu*. Assessing the influence of humic acids on the weathering of pyrite: electrochemical mechanism and environmental implications. Environmental Pollution, 2019, 51: 738-745.

(6)Siqi Wang, Yanzhao Cui, Yan Shi, Zhiwei Yao, Qingyou Liu*, Yue Sun. Alumina-supported cobalt phosphide as a new catalyst for preferential CO oxidation at high temperatures. Phosphorus Sulfur and Silicon and the Related Elements, 2019, 194(9): 851-856.

(7) Hanchuan Zhao, Yan Shi, Zhiwei Yao, Liying Liang, Siqi Wang, Qingyou Liu*, Baojiang Jiang, Yue Sun. Phenol-formaldehyde resin route to the synthesis of several iron group transition metal phosphides. Phosphorus Sulfur and Silicon and the Related Elements, 2019, 194(8): 836-842.

(8) Qingyou Liu, Heping Li*, Guoheng Jin, Kai Zheng, Luying Wang. Assessing the influence of humic acids on the weathering of galena and its environmental implications. Ecotoxicology and Environmental Safety, 2018, 158: 230-238.

(9) Kai Zheng, Heping Li, Luying Wang, Xiaoying Wen, Qingyou Liu*. Galena weathering under simulated acid rain conditions: electrochemical processes and environmental assessments. Environmental Science: Processes and Impacts, 2018, 20(5):1-11.

(10) Qingyou Liu, Miao Chen, Kai Zheng, Yi Yang, Xiaonan Feng, Heping Li*. In situ electrochemical investigation of pyrite assisted leaching of chalcopyrite. Journal of the Electrochemical Society, 2018, 165(13): H813-H819.

(11) Qingyou Liu*, Miao Chen, Yi Yang. The effect of chloride ions on the electrochemical dissolution of chalcopyrite in sulfuric acid solution. Electrochimica Acta, 2017, 253: 257-267.

(12) Kai Zheng, Heping Li, Luying Wang, Xiaoying Wen, Qingyou Liu*. Pyrite oxidation under simulated acid rain weathering conditions. Environmental Science and Pollution Research, 2017, 24(27): 21710-21720.

(13) Qingyou Liu, Guoheng Jin, Kai Zheng, Xiaoying Wen, Heping Li *. Influence of temperature and added potential on the electrochemical dissolution of galena in HNO3 at pH 2.0 and its applied implications. International Journal of Electrochemical Science. 2017, 12:7004 -7016.

(14) 郑凯, 夏勇, 温小英, 刘庆友*. 从伴生稀土磷矿中富集与提取稀土的研究进展及展望. 矿产保护与利用, 2017, 5: 93-98.

(15) Qingyou Liu, Kai Zheng, Xiaoying Wen, Heping Li*. Study of the Electrochemical Passive-Active Transition of Chalcopyrite in Acidic Solution. International Journal of Electrochemical Science, 2016 (11) 7089-7098.

(16) Guoheng Jin, Luying Wang, Kai Zheng, Heping Li, Qingyou Liu*. Influence of pH, Pb2+and temperature on the electrochemical dissolution of galena: environmental implications. Ionics, 2016, 22 (6):975-984.

(17) Qingyou Liu, Luying Wang, Kai Zheng, Heping Li*. The influence of calcium fluoride on the electrochemical dissolution of chalcopyrite in sulfuric acid solution. Ionics, 2015, 21:749-753.

(18) 郑凯, 王璐颖, 金国恒, 李和平, 刘庆友*. 常见金属硫化物电化学反应环境效应及其影响因素分析. 地球与环境. 2015, 43(6): 89-94.

(19) Qingyou Liu, Yanqing Zhang, Heping Li*. Pressure solution of electrically conductive minerals in shallow crust-galvanic processes: A case study from pyrite under differential stress. Applied Geochemistry, 2013, 29: 144-150.

(20) Qingyou Liu, Yanqing Zhang, Heping Li*. Influence of differential stress on the galvanic interaction of pyrite–chalcopyrite. Ionics. 2013, 19:77-82.

(21) Qingyou Liu, Heping Li*. Electrochemical behavior of chalcopyrite (CuFeS2) in FeCl3 solution at room temperature and differential stress. International Journal of Mineral Processing, 2011, 98(1-2): 82-88.

(22) Qingyou Liu, Heping Li*. A comparison of the electrochemical behaviors of pyrite and chalcopyrite in a NaCl solution at room temperature and under differential stress. Minerals Engineering, 2010, 23(9): 691-697.

(23) Qingyou Liu, Heping Li*, Li Zhou. Experimental study of pyrite-galena galvanic in a flowing system and its applied implications. Hydrometallurgy, 2009, 96(1-2): 132-139.

(24) Qingyou Liu, Heping Li*, Li Zhou. Galvanic interactions between metal sulfide minerals: Implications for mines environmental restoration. Applied Geochemistry, 2008, 23(8): 2316-2323.

(25) Qingyou Liu, Heping Li*, Li Zhou. Study of galvanic interactions between pyrite and chalcopyrite in a flowing system: implications for the environment. Environmental Geology, 2007, 52(1): 11-18.

(26) 刘庆友, 李和平*, . 硫化矿原电池效应研究现状. 矿物岩石地球化学通报. 2007, 26(3): 284-289.

(27) 刘庆友, 李和平*, . 流动介质对黄铁矿黄铜矿原电池反应的影响. 金属矿山. 2006, 4: 73-76.

(28) 刘庆友, 李和平*, , 徐丽萍. 高温高压环境中不锈钢原电池腐蚀研究. 石油化工腐蚀与防护,2006, 23(5): 1-4.

(29) 刘庆友, 李和平*, , 代立东. 流动体系下黄铁矿方铅矿原电池反应实验研究. 地球与环境. 2006, 34(2): 89-94.

非第一非通讯

(1)   Ruijin Hong, Zhengwang Li, Qingyou Liu, Wenfeng Sun, Cao Deng, Qi Wang, Hui Lin, Chunxian Tao, Dawei Zhang*. Fabrication and photocatalytic property of MoOx nano-particle films from Mo target by laser ablation at ambient conditions. Optical Materials. 2020, 99: 109589.

(2)   Yanzhao Cui, Qingyou Liu, Zhiwei Yao*, Binlin Dou*, Yan Shi, Yue Sun. A comparative study of molybdenum phosphide catalyst for partial oxidation and dry reforming of methane using stoichiometric feedstocks. International Journal of Hydrogen Energy, 2019, 44(23): 11441-11447.

(3)   Ruijin Hong, Wenfeng Sun, Qingyou Liu, Zhengwang Li, Chunxian Tao, Daohua Zhang, Dawei Zhang*. Al-induced tunable surface plasmon resonance of Ag thin film by laser irradiation. Applied Physics Express, 2019, 12(8): 085503.

(4)   Wenfeng Sun, Ruijin Hong*, Qingyou Liu, Zhengwang Li, Jingqi Shi, Chunxian Tao, Dawei Zhang. SERS-active Ag-Al alloy nanoparticles with tunable surface Plasmon resonance induced by laser ablation. Optical Materials. 2019, 96: 109298.

(5) Wenwen Zhang, Yuling Wang, Qingyou Liu, Qingyan Liu*. Lanthanide-benzophenone-3, 3′-disulfonyl-4, 4′-dicarboxylate Frameworks: Temperature and 1-Hydroxypyren Luminescence Sensing and Proton Conduction. Inorganic Chemistry, 2018, 57(13): 7805-7814.

(6)   Zhentao Li, Wenwen Zhang, Qingyou Liu, Qingyan Liu, Yuling Wang*. A noncentrosymmetric coordination polymer based on the benzophenone-3, 3′-disulfonyl-4, 4′-dicarboxylate ligand exhibiting second-harmonic-generation responses. Inorganic Chemistry Communications, 2018, 95:107-110.

(7)   Zhuo Wang, Heping Li*, Liping Xu, Qingyou Liu, Lei Zha, Sen Lin, Electrochemical Corrosion Study of Zircaloy-4 in a LiOH Solution at High Temperature and Pressure, International Journal of Electrochemical Science, 2018, 13(12): 12163-12171.

(8)   Luying Wang, Heping Li*, Qingyou Liu, Liping Xu, Sen Lin, Kai Zheng. Effect of sodium chloride on the electrochemical corrosion of Inconel 625 at high temperature and pressure. Journal of Alloys and Compounds, 2017, 703: 523-529.

(9)   Luying Wang, Heping Li*, Wen Liang, Yuan Yin, Qingyou Liu. High pressure sintering of a pure, compact and malleable chalcopyrite block. Materials Letters, 2017, 199: 61-64.

(10) Luying Wang, Qingyou Liu, Kai Zheng, Heping Li*. Assessing the influence of calcium fluoride on pyrite electrochemical dissolution and mine drainage pH. Journal of Environmental Quality, 2016, 45(4):1344-1350.

(11) Sen Lin, Qingyou Liu, Heping Li*. Electrochemical behavior of pyrite in acidic solution with different concentrations of NaCl. Chin. J. Geochem. 2014, 33:374-381.