Gold Science and Technology ›› 2013, Vol. 21 ›› Issue (5): 76-80.
Previous Articles Next Articles
Joe ZHOU
CLC Number:
[1] Radtke A S.Geology of the Carlin gold deposit, Nevada[M].Virginia:U.S.Geological Survey,1985.[2] Wan R Y.Importance of metallurgical research on refractory gold ore processing[J].Mining Engineering,2001,53(11):41-46.[3] Zhou J,Jago B,Martin C.Establishing the process mineralogy ofgold ores[C]//Proceedings of the 36th Annual Canadian Mineral Processors Conference.Ottawa,CIM,2004:199-226.[4] Chryssoulis S L,McMullen J.Mineralogical investigation of gold ores.[J].Developments in Mineral processing,2005,15:21-71.[5] Miller J D,Wan R Y,Diaz X.Preg-robbing gold ores[J].Developments in Mineral Processing,2005,15:937-972.[6] Marsden J O,House C I.The chemistry of gold extraction[M].Colorado:Society for Mining,Metallurgy and Exploration,Inc.,2006.[7] Zhou J,Fleming C A.Gold in tailings - Mineralogical characterisation and metallurgical implications[C]//Proceedings of the World Gold Conference,Cairns:AusIMM.,2007:311-317.[8] Deschênes G,Fleming C,Zhou J,et al.Highlights of the past five decades of gold ore processing in Canada[M]//The Canadian Metallurgical & Materials Landscape 1960 to 2011,Québec:Canadian Institute of Mining,Metallurgy and Petrobeum,2011:201-217.[9] Zhou J.The mineralogy and predictive metallurgy of major types of gold ores[C]//World Gold 2011,Proceedings of the 50th AnnualConference of Metallurgists of CIM.Montreal,QC,Canada,2011:3-15.[10] Zhou J.Deportment of gold in sulphide ores and implication for gold extraction[C]//Proceedings of the World Gold Conference Brisbane,Australia: AusIMM,2013.[11] 王奎仁,周有勤,孙立广,等.中国几个典型卡林型金矿床金的赋存状态研究[M].合肥:中国科学技术大学出版社,1994.[12] 刘东升.中国卡林型(微细浸染型)金矿[M].南京:南京大学出版社,1994.[13] Dobby G,Bennett C,Bulled D,et al.Geometallurgical modeling-The new approach to plant design and production forecasting/planning,and mine/mill optimization[C]//Proceedings of of the 36th Annual Canadian Mineral Processors Conference,Ottawa,CIM,2004:227-240.[14] Williams S,Richardson J.Geometallurgical mapping:A new approach that reduces technical risk[C]//Proceedings of the 36thAnnual Canadian Mineral Processors Conference,Qttawa,Ottawa,CIM,2004:241-268.[15] Baumgartner R,Dusci M,Gressier J,et al.Building a geometallurgical model for early-stage project development:a case study from the Canahuire epithermal Au-Cu-Ag deposit,Southern Peru[C]//Proceedings 1st AusIMM International Geometallurgical Conference.The Australasian Institute for Mining and Metallurgy,Melbourne,2011:53-59.[16] Hatton D,Hatfield D.A geometallurgical approach to flotationprocess design using optimised grade-recovery curves[C]//Proceedings of the 45th Annual Canadian Mineral ProcessorsConference, Ottawa, CIM,2013:59-70.[17] Baumgartner R,Dusci M,Trueman A,et al.Building a gemetallurgical model for the canahuire epithermal Au-Cu-Ag deposit,southern peru-past,present and future[C]//Proceedings 2nd AusIMM International Geometallurgical Conference. The Australasian Institute for Mining and Metallurgy,Melbourne,2013.[18] Leichliter S,Larson D.Geometallurgy for a two recovery process operation-Cripple Creek and Victor gold mine,Colorado[C]//SME Annual Meeting,Denver,2013:24-27.[19] Zhou J,Martin C,Blatter P,et al.The process mineralogy of precious metals in LaRonde flotation products and its effect on process optimization[C]//International symposium on the treatment of gold ores,Calgary, CIM,2005:93-109.[20] 蔡长金.金矿物鉴定手册[M].北京:原子能出版社,1993.[21] Fleming,C A.Hydrometallurgy of precious metals recovery[J].Hydrometallurgy,1992,30(1/3):127-162. |
[1] | Leilei DONG, Xin BAI, Mingchun SONG. Composition of Gold and Other Elements in the Mesozoic Magmatic Rocks of the Jiaodong Peninsula and Their Implications for Gold Mineralization [J]. Gold Science and Technology, 2024, 32(5): 768-780. |
[2] | Wenxuan HU, Mingchun SONG, Jie LI, Leilei DONG, Runqian ZHAO, Liangliang ZHANG, Jian LI, Tianhui BAI. Sources of Ore-forming Materials in the Jiaodong Gold Deposits:Constraints on Gold Content from Geological Units Related to Gold Mineralization [J]. Gold Science and Technology, 2024, 32(5): 781-797. |
[3] | Xiaoping ZHOU, Mingchun SONG, Xiangdong LIU, Chunming YAN, Zhaojun HU, Haigang SU, Bingqian HU, Yikang ZHOU. Formation Age,Petrogenesis,and Implications for Gold Mineralization of Giant Porphyritic Granite in the Sanshandao Gold Deposit in Jiaodong [J]. Gold Science and Technology, 2024, 32(5): 813-829. |
[4] | Zhonglei GUO, Yu CUI, Chunlong WANG. Application of Local Refrigeration and Cooling Technology in Underground Long-distance Excavation Tunnel [J]. Gold Science and Technology, 2024, 32(5): 916-925. |
[5] | Heng REN, Peilin LI, Jinlu LI. Bibliometric Analysis of Gold Tailings Treatment and Comprehensive Utiliza-tion Research [J]. Gold Science and Technology, 2024, 32(5): 939-948. |
[6] | Zikun YUAN, Yongjun SHAO, Qingquan LIU, Yuce ZHANG, Zhilin WANG. Genesis of Jiangdong Gold Deposit in Wangu Gold Field,Northeast Hunan:Constraints from Fluid Inclusions and H-O Isotope [J]. Gold Science and Technology, 2024, 32(4): 559-578. |
[7] | Qiao CHEN, Longxue JI, Xin DONG, Rong NI, Yansong LI, Linlin TONG, Hongying YANG. Study on the Influence of Concentration Mechanism of Knelson Concentrator on the Separation Effect of Gold Ore [J]. Gold Science and Technology, 2024, 32(4): 685-693. |
[8] | Junwei JI, Yifei CHEN, Jing LU, Han LUO. Research for theHedging Capability of the Gold Domestic Board and the Gold International Board on Crude Oil [J]. Gold Science and Technology, 2024, 32(4): 731-744. |
[9] | Yan YANG, Zengbao HUANG, Xiaogang GUO, Yanlong XU, Hua YAN. Zircon U-Pb Age and Geochemical Characteristics of Granodiorite Porphyry Veins in Yushugoushan Gold Deposit,Northern Qilian Mountain,and Its Geological Significance [J]. Gold Science and Technology, 2024, 32(3): 387-399. |
[10] | Li SU, Haijun ZHU, Shoujiang GU, Xingke YANG, Yichen ZHAO, Xueping SUN, Hujun HE, Ke HAN, Yuyu ZHANG, Jiang TAN, Yuanlong XIE, Long ZHANG, Libo GAO. Geological and Geochemistry Characteristics and Genesis Analysis of Gold Deposits in Xihuashan Area,Haiyuan,Ningxia [J]. Gold Science and Technology, 2024, 32(2): 191-206. |
[11] | Bing YU, Zhengjiang DING, Weijun CHEN, Xiao LI, Caijie LIU, Jianling XUE, Qingdong ZENG, Hongrui FAN, Jinjian WU, Qibin ZHANG. Thermoelectric Characteristics of Pyrite from the Xiling Gold Deposit in Jiaodong Peninsula and Its Implications for Deep Prospecting [J]. Gold Science and Technology, 2024, 32(2): 207-219. |
[12] | Yuanlin LOU, Jianli QIAN, Zhiping ZHU, Yong BA, Minglong YANG, Tao YANG. Application of Integrated Geophysical,Geochemical and Remote Sensing Prospecting Methods in Lajiu Area,Longzi County,Tibet [J]. Gold Science and Technology, 2024, 32(2): 241-257. |
[13] | Yong ZHANG, Shuiping LI, Peng JING, Pan FENG. Geochemical Characteristics and Exploration Model of the Jiuzhanggou Gold Deposit,Songxian County,Henan Province [J]. Gold Science and Technology, 2024, 32(2): 258-269. |
[14] | Xingchun WANG, Haicheng QIU, Jianping LI, Qingquan ZHI, Hua LI, Junjie WU, Xiaohong DENG, Qiong WU. Peripheral Electrical Characteristics and Its Prospecting Significance of Wulong Gold Deposit in Eastern Liaoning Peninsula [J]. Gold Science and Technology, 2024, 32(1): 1-12. |
[15] | Shuai ZHANG, Xin ZHAO, Xiangyu PENG, Yubin WANG, Wanting GUI, Jiayi TIAN. Prediction of the Recovery Rate of a Gold Mine Based on Double Hidden Layer BP Neural Network [J]. Gold Science and Technology, 2024, 32(1): 170-178. |
|