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張漢泉
2025-02-23 09:19  

個人簡介

張漢泉,工學博士,教授,博士生導師

中國冶金礦山協會專家委員會委員

中國矽酸鹽學會固廢分會冶金渣學術委員會委員

中國金屬學會廢鋼協會直接還原工作委員會專家

地址:中國.湖北.武漢.雄楚大街693号,77779193永利官网77779193永利官网

郵編:430074      Emailspringt@139.com

教育背景

2004.09-2008.7    武漢理工大學,資源與環境工程學院,礦物加工,工學博士 

1999.09-2002.07    中南大學,資源加工與生物工程學院,礦物加工,工學碩士

1992.08-1996.07    中南大學,礦物工程系,選礦工程,工學學士

工作履曆

2015.1-至今         77779193永利官网,77779193永利官网,教授、學科帶頭人 

2008.9-2014.12     77779193永利官网,77779193永利官网,副教授

1996.7-2004.9      武漢鋼鐵集團,工程師/副廠長 

研究領域:

礦冶固廢綜合利用、難選礦選冶理論與技術、礦山環境治理

學術成果:

l 代表性論文:

[1] Hanquan Zhang, Guanhua Chen, Xiang Cai, Jintao Fu, Mingxia Liu, Pengfei Zhang, Hong Yu. The leaching behavior of copper and iron recovery from reduction roasting pyrite cinder[J]. Journal of Hazardous Materials, (2021) doi:https://doi.org/10.1016/j.jhazmat.2021.126561

[2] Hanquan Zhang, Pengfei Zhang, Feng Zhou, Manman Lu. Application of multi-stage dynamic magnetizing roasting technology on the utilization of cryptocrystalline oolitic hematite: A review[J]. International Journal of Mining Science and Technology202232:865-876

[3] ZHANG Han-quanFU Jin-tao. Oxidation Behavior of Artificial Magnetite Pellets. International Journal of Minerals, Metallurgy, and Materials, 2017. 6603-610

[4] Hong Y., Bin L., Wenqiang S., Xianling Z., Mingxia L., Hongbo Z., Hanquan Z. *. Recovery of gold and iron oxide from pyrite cinder using reduction roasting, grinding, thiosulfate leaching in the presence of additives and magnetic separation. Hydrometallurgy2025233: 106453

[5] Zhang Hanquan, Wang Fengling. Analysis of Surface Wettability of Synthetic Magnetite Journal of Wuhan University of Technology-Mater Sci Ed 2014, 9 (4): 679-683

[6] Zhang H. Q. Lu M. M. Fu J. T. Study on Oxidation and Roasting Characteristics of Artificial Magnetite PelletsJournal of Central South University (2016) 23: 2999−3005

[7] Hanquan Zhang, Feng Zhou, Hong Yu and Mingxia Liu. Double roles of SHMP in the Flotation of Dolomite from Apatite, Colloids and Surfaces A: Physicochemical and Engineering Aspects, (2021) doi:https://doi.org/10.1016/j.colsurfa.2021.127080

[8]LUO Li-qunZHANG Han-quan*. Process mineralogy and characteristic associations of iron and phosphorus-based minerals on oolitic hematite. J. Cent. South Univ. (2017) 24: 1956−1967

[9] Hanquan ZhangJintao FuJian PanFeng ZhangZhengqi Guo. Isothermal oxidation kinetics of Artificial Magnetite PelletsJ. of Wuhan Uni. of Tech. -Mater Sci Ed2018, 12 (6)1516-1523

[10] Hanquan Zhang, Zeqiang Zhang, Liqun Luo, Hong Yu. Behavior of Fe and P during reduction magnetic roasting separation of phosphorus-rich oolitic hematite. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects , 2019, 41(1), 47–64

[11] Mingxia LiuZhaohui Yao, Chaojie Hu, Kang Xu,Ruixu Wang, Hanquan Zhang*. Activation behavior and mechanism of sodium sulfate for iron recovery from red mud through magnetization roasting–magnetic Separation. JOM,2024),https://doi.org/10.1007/s11837-024-06605-3

[12]Hanquan ZhangFeng ZhouMingxia LiuYanfeng JinLinbo XiaoHong Yu. Employing sulfur–phosphorus mixed acid as a depressant: A novel investigation in flotation of collophanite[J]. Energy Sources Part A: Recovery Utilization and Environmental Effects2020. DOI: 10.1080/15567036.2020.1849458

[13]Hanquan Zhang Chengxin Liu Manman Lu* Hong Yu. Kinetic model researches on drying characteristics of artificial magnetite green pellet[J]. Journal of Central South University. 2021,281,89-99.

[14] Mingxia Liu, Hong Yu, Hanquan Zhang*, Kaipeng Wang, Xiaoli Tan, Qi Liu. Roles of the hydrophobic and hydrophilic groups of collectors in the flotation of different-sized mineral particles[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects 637 (2022) 128262

[15] Hong Yu, Long Liu, Guanhua Chen, Xianlin Zhou, Manman Lu, Hanquan Zhang*. Recovery of Cu, Co, and Fe from Pyrite Cinder Based on Mineral Phase Reconstruction. ACS Omega,(2024),https://doi.org/10.1021/acsomega.4c00611.

[16] Manman Lu, Hanquan Zhang*, Hong Yu, Zeqiang Zhang. Pelletization characteristics of artificial and natural magnetite and their mixtures[J], Mineral Processing and Extractive Metallurgy, 2021,130(4): 283-291

[17] Hong Y., Long L., Mingxia L., Hanquan Z., Run M.. Waste control by waste: Recovering iron from red mud with the effect of Phosphogypsum-included additive.  Resources, Conservation & Recycling, 206 (2024) 107641

[18] Ruiqi Ge, Bingqiao Yang, Bing Deng, Hui Shao, Yimei Xiao, Rudolph Martin, Huihua Luo, Hanquan Zhang, The interaction mechanism of a novel polymer depressant with apatite and dolomite surface and its implication on flotation: Experimental tests and DFT calculation, Applied Surface Science, 2023,158675

[19] 餘永富, 張漢泉.我國鋼鐵發展對鐵礦選礦科技發展的影響. 武漢理工大學學報. 20071 1-5

[20] 張漢泉,餘永富,陳雯.大冶鐵礦強磁選精礦磁化焙燒熱力學研究,鋼鐵,2007 42(4)8-11

[21] 張漢泉, 餘永富, 彭澤友, 陳雯.黃梅褐鐵礦懸浮閃速磁化焙燒試驗研究[J]. 鋼鐵, 2009, 44(07): 11-14

[22] 張漢泉,汪鳳玲. 赤褐鐵礦磁化焙燒礦物組成和物相變化規律. 鋼鐵研究學報. 2014, 26(7): 8-11

[22] 劉承鑫, 虞勇, 張漢泉.人工磁鐵礦球團脫水幹燥速度分析[J].鋼鐵研究學報, 2017,29(06):447-452

[23] 劉承鑫,餘俊傑,張澤強,張漢泉*.潤磨對人工磁鐵精礦球團性能的影響[J].鋼鐵,201853(01):17-23

[24] 張漢泉,高王傑,胡超傑,餘洪.銅渣煤基直接還原過程中的鐵物相轉變[J].鋼鐵研究學報,202032(04):311-321

l 科研項目:

[1] 國家自然科學基金面上項目,人工磁鐵礦成球性能及氧化動力學研究,2015-2018,主持;

[2]國家自然科學基金面上項目,隐晶質鲕狀赤鐵礦磁化焙燒過程中鐵礦物還原行為,2020-2023,主持;

[3]國家自然科學基金面上項目,循環分解利用磷石膏的基礎理論及應用研究,2013-2016,參加(2);

[4] 國家自然科學基金重點項目,莫來石原位支撐钼精礦氧化揮發與钼铼高效分離的基礎研究,2023-2027,單位負責人;

[5]國家重點基礎研究發展計劃 (973)No. 2007CB613502,兩性金屬/黑色金屬緊缺礦産資源高效清潔綜合利用的基礎研究子課題,2007-2010,主持

[6] “十一五國家科技支撐計劃/科技部:鲕狀高磷赤鐵礦選礦關鍵技術與裝備,2007-2010,負責人;

[7]國家科技支撐計劃(十一五): 褐鐵礦、菱鐵礦高效選礦技術研究,2007-2010,技術負責人;

[8]廣西重大科技專項(中國-東盟合作區建設項目):紅土鎳礦富氫轉價-低碳制備高端不鏽鋼母液技術研究與應用(2024AA29075)1082025-2027,負責人;

[9]湖北省重點科研計劃項目,熔劑性鲕狀赤鐵礦低碳選冶關鍵技術研究與應用,2022-2025,負責人

[10]廣西重點科研計劃項目, 氧化錳礦流态化快速還原焙燒技術研究,2007-2011,主持

[11]大冶鐵礦硫精礦全量化綜合利用:寶武鋼鐵重點科研計劃項目, 2021-2024,主持

[12]銅陵有色金屬公司硫酸渣銅、钴、鐵回收利用:銅陵有色集團2017-2022,主持

[13]柳鋼屯秋鲕狀赤鐵礦磁化焙燒磁選試驗研究:柳鋼重點科研計劃項目, 2018-2022,主持

[14]湖北三甯化工,磷石膏焙燒生産β半水(無水)石膏試驗研究,2022-2025,主持

l 授權國家發明專利:

[1]高鐵低矽燒結礦制備方法. 授權日期:2005-6-23,發明專利,專利号:ZL01114546.3

[2]難選氧化鐵礦石的旋流懸浮閃速磁化焙燒磁選方法,200510019917.7

[3]粉狀低品位氧化鐵礦石的選礦工藝,授權日期2011-5-4,發明專利,專利号:ZL 200910060775.7

[4]一種粉狀二氧化錳礦石流态化還原方法,授權日期:2010-12-29,發明專利,專利号:ZL200910060533.8

[5]一種鉻渣幹法還原解毒工藝.授權日期:2014-1-16,發明專利,專利号:CN102978376

[6]一種從含釩石煤中提取五氧化二釩的複合焙燒添加劑及其應用.授權日期:2014-1-22,發明專利,專利号:CN102296192

[7]一種雲母闆的制備方法.授權日期: 2016-04-13,發明專利,ZL CN201410279366.7

[8]一種二步法循環分解轉化利用磷石膏的工藝.授權日期: 2017-11-21,發明專利,ZL 2016 1 0444888.7

[9]一種礦山井下巷道防水門自适應加載保護方法. 授權: 2024-5-3,發明專利,CN202310040991.5

[10] 氣基低溫還原焙燒—浸出回收硫酸渣中銅钴的方法,授權: 2024-5-28,發明專利,CN202210534051.7

[11]一種利用硫酸渣制備電池級磷酸鐵并回收金銅钴的方法,授權日期: 2025-1-21,發明專利,CN 118754073 B

l 獲獎情況

[1] 粉狀氧化鐵礦多級動态磁化焙燒新工藝技術.湖北省技術發明獎,2011

[2] 極難選紅鐵礦閃速(流态化)磁化焙燒成套技術開發與應用.中國冶金科學技術獎,2017

[3]低熱值高爐煤氣磁化還原高錳褐鐵礦關鍵技術及應用,冶金礦山科學技術獎,2022

l 制定标準:

雲南省地方标準:中低品位膠磷礦浮選工藝控制參數(DB53/T 675—2015


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