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Gold Science and Technology ›› 2014, Vol. 22 ›› Issue (2): 63-66.doi: 10.3969/j.issn.1005-2518.2014.02.063

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Research Progress of the Arsenic-containing Refractory Gold Flotation

SHEN Shubao,TANG Minggang   

  1. Zhaojin Mining Industry Co.,Ltd.,Zhaoyuan   265400,Shandong,China
  • Received:2013-11-30 Revised:2014-02-05 Online:2014-04-28 Published:2014-08-26

Abstract:

With the increasingly exhausting of easily leachable gold ores,the proportion of refractory gold ores which containing arsenic is growing larger.The ores were dealt commonly with the flotation method,and summarizing the flotation technology of refractory gold ores which containing arsenic is very important.Obviously,research and development of the flotation reagent is the key to the flotation technology of the containing arsenic gold ores.In recent years,it has made more progress for the development and application of the high selective collector and arsenic inhibitors.And the research on flotation also has made innovative achievements.In short,the development and application of the high selective collector and arsenic inhibitors and the exploitations of combined processes are the main directions for the research of refractory gold ores which containing arsenic.

Key words: arsenic-containing gold ores, flotation agents, flotation progress, collector

CLC Number: 

  • O657

[1] 叶国华,童雄,张杰.含砷矿石的除砷研究进展[J].国外金属矿选矿,2006,43(3):20-24,30.
[2] 夏光祥,段东平.金三角金矿提金技术基础研究及工业应用开发[J].黄金科学技术,2013,21(1):65-70.
[3] 田树国,刘亮.高砷金矿预处理脱砷技术发展现状[J].矿业工程,2008,6(6):26-28.
[4] 孟宪瑜,刘学胜,马忠臣,等.雄黄坡难选高砷金矿石选矿试验研究[J].有色矿冶,2001,17(4):15-18.
[5] 夏光祥,段东平,周娥,等.含砷难处理金精矿的催化氧化酸浸(COAL)新工艺开发[J].黄金科学技术,2013,21(5):113-116.
[6] 于雪,李玉霜,杨长颖,等.某含砷锑金矿石选矿综合回收试验研究[J].有色矿冶,2000,16(1):20-23.
[7] 叶雷均,吕炳军.毒砂和黄铁矿的浮选分离研究现状及趋势[J].世界有色金属,2009,(3):26-27.
[8] 方兆珩,夏光祥.高砷难处理金矿的提金工艺研究[J].黄金科学技术,2004,12(2):35-40.
[9] 柯家俊,李希明,陈淑民,等.含砷碳质金矿处理方法研究[J].黄金科学技术,1995,3(2):38-42.
[10] 罗新民,魏党生,叶从新.安徽马山金矿浮选降砷工艺研究[J].湖南有色金属,2007,23(5):6-8,44.
[11] 黄云阶,唐显裕.提高难选冶金矿金精矿品位的试验研究[J].矿产综合利用,2001,(6):8-12.
[12] 马英强,印万忠,李强,等.含砷硫化矿浮选研究现状[J].金属矿山,2011,(4):94-97.
[13] 朱申红,钱鑫.氧化法分离浮选含金黄铁矿和毒砂的研究[J].黄金,1990,11(11):26-31.
[14] 童雄,钱鑫.高砷金矿浮选除砷研究[J].昆明工学院学报,1994,19(3):116-120.
[15] 张大铸,贾振武.吴家塬金矿选矿工艺研究及生产实践[J].黄金,2001,22(2):33-36.
[16] B A 钱图里亚.黄铁矿和毒砂浮选分离的新药剂[J].国外金属矿选矿,2001,38(10):9-12.
[17] 刘四清,张文彬.高砷硫精矿除砷的研究[J].矿产保护与利用,2005,(6):28-31.
[18] 黄万抚,李新冬.提高金浮选回收率的研究[J].有色金属(选矿部分),2004,(1):21-23.
[19] 周晓文,龚恩毅,陈江安.河南某金矿石金砷浮选分离试验研究[J].金属矿山,2011,(2):64-67.
[20] Beattie M J V.用氧化剂抑制砷黄铁矿的浮选[J].国外金属矿选矿,1990,27(7):13-19.
[21] 王珩.天马山矿石金、砷、硫的选矿分离回收工艺试验研究[J].黄金,2003,24(10):32-37.
[22] 袁来敏,胡志刚.某含砷金矿石浮选试验研究[J].金属矿山,2008,(9):68-69,139.
[23] 康建雄,周跃,吕中海,等.含砷金矿浮选研究现状与展望[J].四川有色金属,2008,(3):2-5.
[24] 李广明,钱鑫,张洪恩.联合使用碱和氧化剂分离毒砂与黄铁矿[J].矿冶工程,1989,9(4):30-34.
[25] 段景文.铜街选矿厂提铜降砷工艺技术研究[D].长沙:中南大学,2012.
[26] 邱廷省,张宝红,张卫星,等.毒砂与黄铁矿分离技术现状及研究进展[J].矿山机械,2013,41(4):1-5.
[27] 童雄,钱鑫.含金黄铁矿与毒砂分选研究概况[J].湿法冶金,1994,(1):1-4.
[28] 吕炳军.黄铁矿和毒砂的浮选分离试验研究[D].赣州:江西理工大学,2009.
[29] 张剑锋,胡岳华.浮选有机抑制剂研究的进展[J].有色矿冶,2000,16(2):14-17.
[30] 杨玮,张建文,覃文庆.有机抑制剂MF对硫精矿降砷的浮选试验研究[J].矿业研究与开发,2010,30(4):26-29.
[31] 穆枭,陈建华,何奥平,等.新型有机抑制剂SN在黄铁矿浮选中分离毒砂[J].矿产保护与利用,2008,(2):27-29.
[32] 于雪.含砷金锑矿的浮选分离研究[D].沈阳:东北大学,2008.

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