Gold Science and Technology ›› 2013, Vol. 21 ›› Issue (2): 55-60.
Previous Articles Next Articles
WANG Haijun
CLC Number:
[1] 王明聪.云南老寨湾金矿金的赋存状态及金矿物特征研究[J].黄金科学技术,2011,19(6):40-43.[2] 黄宝贵.我国化学物相分析的进展[J].分析化学,1999,27(12):1454-1461.[3] 张志勇,陈述,黄宝贵.化学物相分析在环境科学中的应用进展[J].矿冶工程,2005,25(2):58-61,65.[4] 石玉臣,常耀超.某含砷金矿的工艺矿物学研究[J].有色金属工程,2011,(3):41-44.[5] 廖晓花.金化学物相分析浅析[J].新疆有色金属,2011,(增):91-92.[6] 丁秘枣,牛洪联.金化学物相分析现状及浅析[J].内蒙古石油化工,2010,(4):19-20.[7] 胡宪.一般地质物料中Au的物相分析[J].有色金属(矿山部分),2009,61(4):34-36,40.[8] 刘峰.金的物相分析—混汞浸取法[J].内蒙古石油化工,2010,(20):9-10.[9] 尹明,李家熙.岩石矿物分析(4 版)[M].北京:地质出版社,2011:651-653.[10] 张永涛.中国黄金矿产资源开发及矿产品供需形势分析[J].中国矿业,2009,18(2):8-11.[11] 吴荣庆,张燕如,张安宁.我国黄金矿产资源特点及循环经济发展现状与趋势[J].中国金属通报,2008,(12):32-34.[12] 吴荣庆,张燕如,张安宁.我国黄金矿产资源特点及循环经济发展现状与趋势[J].中国金属通报,2008,(13):29-31.[13] 张连起,于阗.使用助磨剂解决金矿样品制样的均匀性[J].矿产勘查,2010,1(5):485-487.[14] 邹海峰,刘树田,姜桂兰,等.吉林某地高砷高硫矿石中金的相态分析[J].黄金,1999,20(1):45-47.[15] 徐长跃,邹海峰,田莉玉.高砷高硫金矿石中金的相态分析方法[J].世界地质,2003,22(2):205-207.[16] 郑大中,郑若锋.矿石中金的化学物相分析新方法[J].黄金,1993,14(3):55-60.[17] 袁朝新,汤集刚.含砷金精矿的焙烧和氰化浸出试验及焙砂和浸渣的矿物学研究[J].有色金属(冶炼部分),2006,(5):28-30.[18] 刘汉钊.国内外难处理金矿焙烧氧化现状和前景[J].国外金属矿选矿, 2005,(7): 5-10.[19] 王峰,郭茂生,王凯,等.金矿石化学物相分析标准物质的研制[J].岩矿测试,2006,25(3):263-269.[20] 罗学辉,陈占生,张勇,等.国家一级金矿石化学物相分析标准物质定值测试[J].现代仪器,2011,17(2):46-48.[21] 张华.金矿石的化学物相分析方法研究[J].矿床地质,2010,29(增):47-50.[22] 龚美菱.相态分析与地质找矿(第2版)[M].北京:地质出版社,2007:14-73,173-149.[23] 卢荫庥,白金峰.金的相态分析[J].岩矿测试,2000,19(2):81-86.[24] 朱笑青,王中刚, 陈福.贵州丫他微细浸染型金矿床金的赋存形式与矿床成因的研究[J].自然科学进展,2000,10(3):248-252.[25] 刘玖芬,汤中立.黄铁矿中不同赋存状态金的测试及意义——以胶莱盆地金矿中黄铁矿为例[J].地质与勘探,2011,47(5):823-827.[26] 李九玲,亓锋,徐庆生.含砷和含碲金矿床矿物中金的赋存状态研究进展——负价金和芥末金[J].矿物学报,2012,(增):69.[27] 李九玲,亓锋,徐庆生.广西金牙金矿毒砂和黄铁矿中晶格金的确认及其价态研究[J].矿床地质.2002,21(增):1160-1163.[28] 李九玲,亓锋,徐庆生.矿物中呈负价态之金——毒砂和含砷黄铁矿中“结合金”化学状态的进一步研究[J].自然科学进展,2002,12(9):952-958.[29] 熊昭春,彭振英,周应芬.痕量价态金的载炭泡塑吸附分离研究[J].岩矿测试,1993,12(4):255-258.[30] 熊昭春,彭振英.载炭泡塑分离土壤中不同价态痕量金研究[J].地质实验室,1994,10(2):65-69.[31] 胡涛,石威,汪丙武.PVC—尼龙6树脂应用于天然水中痕量金的价态分析[J].分析试验室,1997,16(1):59-61.[32] 邹海峰,田丽玉,姜桂兰,等.聚氨酯泡塑对不同价态金吸附性能的研究及应用[J].岩矿测试,2001,20(3):187-190.[33] 屈凌波,郁有祝,郭玉华.金的电化学价态分析和定量测定研究[J].黄金,2009,30(5):43-45.[34] 李增胜,朱笑青,韩涛.硫化物中“不可见金”的赋存状态研究[J].矿物学报,2011,(增):209-210.[35] 陈尚迪,叶荣,陆远.金牙微细浸染型金矿床金的赋存状态研究[J].成都地质学院学报,1991,18 (4):3-11.[36] 谢学锦,王学求.深穿透地球化学新进展[J].地学前缘,2003,10(1):225.[37] Wang Xueqiu.Leaching of mobile forms of metals in Overburden:development and applications[J].Journal of Geochemical Exploration,1998,61:39-55.[38] 王学求.寻找和识别隐伏大型特大型矿床的勘查地球化学理论方法与应用[J].物探与化探.1998,(2):81-89.[39] 陈武,周建平,魏元柏,等.安徽铜陵老鸦岭铜矿床中伴生金的赋存状态及选矿工艺[J].地质找矿论丛,1994,9(3):73-82.[40] Wang Xueqiu,Cheng Zhizhong,Lu Yinxiu,et al.Nanoscale Metals in Earthgas and Mobile Forms of Metals in Overburden in Wide-spaced Regional Exploration for Giant Deposits in Overburden Terrains[J].Journal of Geochemical Exploration,1997,58(1):63-72.[41] 周长祥,张文娟,刘耀华,等.中子活化分析方法测量金的活动态[J].岩矿测试,2002,21(4):271-274.[42] 白金峰,卢荫庥,文雪琴,等.金的活动态分析方法及其应用[J].物探与化探,2006,30(5):410-413.[43] 兰斌明,贾建业,李连生,等.金在硝酸中的溶解度及其对晶格金测定的意义[J].西安工程学院学报,1998,20(4):6-9.[44] 许德清.有关多点分析法的讨论[J].岩矿测试,1993,12(4):311-312.[45] 唐肖玫,姚敬劬.化学物相分析方法研究矿石中金的赋存状态[J].岩矿测试,1992,(增1):162-167. |
[1] | 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. |
[2] | 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. |
[3] | Yulong HE, Jia LIU, Fengshan MA, Guang LI, Jie GUO. Analysis on the Characteristics and Causes of Ground Subsidence in Sanshandao Gold Mine [J]. Gold Science and Technology, 2023, 31(4): 605-612. |
[4] | Shuitai XU,Beifei YUAN,Hengqi HU,Li CHEN. Quantitative Evaluation of China’s Green Mine Construction Policies—Analysis Based on PMC Index Model [J]. Gold Science and Technology, 2023, 31(2): 271-281. |
[5] | Wei YANG,Jinqiu YE,Tao LONG,Sha DENG,Wentao WANG. Experimental Study on Gold Recovery from a High-Sulfur Gold Tailings by Beneficiation-Metallurgy Combination [J]. Gold Science and Technology, 2023, 31(1): 113-122. |
[6] | Pingtian MING,Fei LI,Zhaohua XIONG,Ziqiang CHEN,Shengping MA. Study on Optimization of Flotation Time and Magnification Coefficient of a Refractory Gold Ore Concentrator [J]. Gold Science and Technology, 2022, 30(4): 623-631. |
[7] | Cailian GUO,Fangyin NIU,Binglong CHEN,Haijun WANG. Process Mineralogy of Quartz Vein Gold Ore in Bamian,Laos [J]. Gold Science and Technology, 2021, 29(6): 908-916. |
[8] | Haiquan LI. A Semi-automatic Method for Estimation of Solid Mineral Resources Reserves [J]. Gold Science and Technology, 2021, 29(5): 647-657. |
[9] | Guobin WANG,Zhuoyue LAN,Ruikang WANG,Qingping ZHAO,Di YANG,Boqi LI. Effect of Silver Content on Galena Flotation and Research Progress on Its Mechanism [J]. Gold Science and Technology, 2021, 29(5): 749-760. |
[10] | Tianjiao WU,Huan CAO,Fangyin NIU,Jianping JIN,Haijun WANG,Jun CHEN,Yaru WEI. Study on Gold Extraction from a Carbon-bearing Fine-grained Refractory Gold Ore by Flotation Process [J]. Gold Science and Technology, 2021, 29(5): 761-770. |
[11] | Bo YANG,Xiao WANG,Yonggang XIE,Xian XIE. Study on the Processing Mineralogy of a Refractory Gold Ores from Qinghai Province [J]. Gold Science and Technology, 2021, 29(3): 467-475. |
[12] | Kaiqiang HUANG,Shuitai XU,Fei XUE. Analysis of the Influential Factors on the Treatment Effect of Abandoned Rare Earth Mine Based on ISM and ANP [J]. Gold Science and Technology, 2021, 29(2): 306-314. |
[13] | Gaohua ZHENG,Yuqi WANG,Yuhua WANG,Dongfang LU,Xiayu ZHENG. Development of a Grinding-Classification Process Auto-design System Based on Virtual Reality Technology [J]. Gold Science and Technology, 2021, 29(1): 120-128. |
[14] | Qingfa CHEN,Tiqun XIAO,Yuan GAO. 3D Co-Design of Shaft Position in Multi-layer Gently Inclined Thin Ore Group [J]. Gold Science and Technology, 2021, 29(1): 90-98. |
[15] | Shixiong GAO,Guobao CHEN,Hongying YANG,Pengcheng MA. Research Progress of Antimony Removal Technology by Pretreatment of Antimony-bearing Gold Ore [J]. Gold Science and Technology, 2020, 28(6): 792-799. |
|