更新日期:2026.8.24

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姓 名: |
刘 建 |
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职称职务: |
教授/博导/人事处副处长/教育部工程中心副主任 |
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学 位: |
工学博士 |
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电 话: |
0871-65381537 |
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电子邮箱: |
Jianliu@kust.edu.cn; vacation2008@126.com |
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研究方向: |
浮选表界面化学、浮选新药剂开发与应用、资源综合利用 |
2005.09-2009.07 昆明理工大学矿物加工工程本科,获学士学位,获免试研究生资格;
2009.09-2013.11 昆明理工大学矿物加工工程博士研究生,获博士学位(硕博连读);
2014.04-2015.10 昆明理工大学矿物加工工程,讲师;
2015.09-2016.09 昆明钢铁控股集团矿山研究设计院/矿业开发部,副院长/副总经理(挂职);
2015.11-2019.07 昆明理工大学矿物加工工程,副教授;
2018.04-2019.04 澳大利亚昆士兰大学化学工程学院,国家公派访问学者;
2019.08-至今 昆明理工大学矿物加工工程,教授。
(1)国家高层次人才支持计划青年项目,2024.01-2026.12,主持;
(2)国家自然科学基金面上基金项目,基于小分子配体选择性活化掩蔽效应的锌硫强化分离机制及方法研究,2026.01-2029.12,主持;
(3)国家自然科学基金面上基金项目,亲核试剂-黄原酸壳聚糖协同强化铜钼分离的界面作用机制及优化调控,2022.01-2025.12,主持;
(4)国家自然科学基金地区基金项目,铜锌硫化矿浮选中的流体包裹体效应及调控机制,2018.01-2021.12,主持;
(5)国家自然科学基金青年基金项目,菱锌矿表面流化层稳定性衰减机制及强化研究,2018.01-2020.12,主持;
(6)云南省基础研究杰出青年项目,复杂有色金属矿强化浮选表界面化学,2025.03-2028.02,主持;
(7)云南省基础研究重点项目,新型黏土锂矿浮选富集基础理论及关键技术研究,2023.06-2026.05,主持;
(8)云南省兴滇英才支持计划项目,2019.01-2023.12,主持;
(9)Mineral Chinalco Peru S.A.(海外项目),Technology development of quality improvement and impurity reduction for Mineral Chinalco Peru S.A.,2021.5-2023.5,主持;
(10)Iran Pasargad steel company(海外项目),Iran Kahnooj ilmenite ore beneficiation technology development,2020.7-2021.06,主持;
(11)云南锡铟实验室有限公司(企业委托项目),新型调整剂及基于苄基胂酸的锡石浮选药剂开发和低品位极微细粒锡石高效回收关键技术(一期),2025.10-2027.12,主持;
(12)金诚信矿山工程设计院有限公司(企业委托项目),铜冶金浸出渣资源综合回收试验研究,2024.03-2026.03,主持;
(1)矿物晶体表面弛豫机制及流体包裹体浮选效应,云南省自然科学一等奖,2018,排名3;
(2)一种从微细粒含锌高硫尾矿中回收锌的方法,第51届日内瓦国际发明展银奖,2026,排名1;
(3)微泡强化细粒锡石浮选及矿浆调控理论与技术,中国有色金属工业科学技术二等奖,2024,排名4;
(4)全国高等学校矿业石油安全领域优秀青年科技人才提名奖,国家自然科学基金委-贵州大学,2018,排名1;
(5)闪锌矿表面原子构型及铜吸附活化浮选理论研究,云南省优秀博士论文奖,2016。
(1)一种氧化锌矿硫化胺浮选过程中矿泥调整剂及其制备方法,发明专利,已授权,授权号CN115780099 B;
(2)一种从微细粒含锌高硫尾矿中回收锌的方法,发明专利,已授权,授权号CN115870099 B;
(3)一种辉铜矿型铜精矿硫酸化焙烧酸浸渣中铜的高效回收方法,发明专利,已授权,授权号CN120001515 B;
(4)一种微细粒级物料的离心分级设备,发明专利,已授权,授权号CN201510173495.2;
(5)一种硫化锌矿直接浮选的方法,发明专利,已授权,授权号CN201610842051.8;
(6)一种结合铜浸染体的高分子桥联浮选方法,发明专利,已授权,授权号CN2012102013 06.4;
(7)一种固体包裹体氧化铜矿选冶联合回收利用的方法,发明专利,已授权,授权号CN201710139134.5;
(8)一种低氧化率高结合率混合铜矿的选矿方法发明专利,已授权,授权号CN201710139134.5。
(1)文书明,刘建,邓久帅. 硫化矿流体包裹体活化浮选理论,北京:科学出版社. 2019;
(2)Shuming Wen, Jian Liu, Jiushuai Deng, Fluid Inclusion Effect in Flotation of Sulfide Minerals, Elsevier, 2019。
(1)Rong Huang, Jian Liu*, Anh V. Nguyen*, et al. Fundamental advances in the flotation separation of sphalerite and pyrite: Mechanisms, surface chemistry, reagents, and emerging low-alkalinity strategies. Advances in Colloid and Interface Science, 2026, Vol.356: 103966.
(2)Jiamei Hao, Jian Liu*, Yunlong Yu, et al. Depressants for separation of chalcopyrite and molybdenite: Review and prospects. Minerals Engineering, 2023, Vol.201: 108209.
(3)Jiamei Hao, Jian Liu*, Hao Lai, et al. A new application of Cu2+ on differential modification to promote copper-molybdenum separation with a novel chalcopyrite depressant amidinothiourea. Separation and Purification Technology, 2025, Vol.353: 128282.
(4)Rong Huang, Jian Liu*, Yuebing Liu, et al. L-histidine as a green depressant for low-alkalinity separation of zinc‑sulfur minerals via differential copper coordination. Separation and Purification Technology, 2026, Vol.407: 139141.
(5)Longfu Dai, Jian Liu*, Deqiang Luo, et al. Investigation of the adsorption mechanism of an eco-friendly surfactant LMAC on rutile surface: A novel insight. Separation and Purification Technology, 2025, Vol.354(8): 129484.
(6)Longfu Dai, Jian Liu*, Da Li, et al. A new insight on a novel auxiliary collector 4-MBA synergize with BHA to enhance flotation of scheelite. Separation and Purification Technology, 2024, Vol.346: 127412.
(7)Rong Huang, Jian Liu*, Jiamei Hao, et al. Dissolution-reprecipitation mechanism of clay-type lithium ore in low temperature two-stage mixed acid leaching. Journal of Environmental Chemical Engineering, 2026, Vol.14(1): 121075.
(8)Da Li, Jian Liu*, Yuebing Liu, et al. Synergistic enhancement of galena depression by the combined use of lead ions and chondroitin sulfate A sodium salt and its application in copper–lead flotation separation. Minerals Engineering, 2026, Vol.244: 110288.
(9)Hao Xiong, Jian Liu*, Meiguang Jiang, et al. Anisotropic synergistic adsorption mechanisms of dodecane and oleic acid on the surface of molybdenite: Drives efficient separation of molybdenite from pyrite. Applied Surface Science, 2026, Vol.719: 165054.
(10)Hulin Gao, Jian Liu*, Jiemei Hao, et al. Novel synergistic mechanism of oxalic acid -CMC at the solid-liquid interface: For selective depression of talc from chalcopyrite. Surfaces and Interfaces, 2024, Vol.55: 105345.