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| Experimental Study on Leaching of Gold and Elimination of Iron and Arsenic Using Acid Leaching |
| ZOU Xian-jun,ZUO Bao-bin |
| Technology Center of Hunan Zhuzhou Chemical Industry Group, Zhuzhou 412004,China |
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Abstract Through the test of leaching of gold from sulfur arsenic mineral cinder,the conclusion was as follows: the acid leaching solution was a species in the key factor of affecting the elimination of arsenic,the optimum process parameters was acid leaching time was 60 min, the ratio of solid to liquid was 1:2, leaching temperature is 20 ℃,acid leaching solution was 5% sulfuric acid. Through the orthogonal experiment of strengthening the acid leaching and improving gold leaching rate, was as follows the leaching temperature was the key factor affecting the leaching rate of gold, the optimal process parameters were the concentration of sulfuric acid is 65%, the ratio of solid to liquid was 1∶2 ,leaching temperature was 95 ℃, acid leaching time was 4 hours. Through the iron removal experiment, iron was extracted effectively, the one-way test yield of FeSO4·7H2O crystallization reached 83.01%, the arsenic content was 0.03% and could be reduced to 0.006% after the first washing.
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| [ 1 ] 薛 光. 于永江. 从含砷金精矿二段焙烧酸浸渣中氰化浸出金银的试验研究[ J ]. 黄金,2008,(1):40 - 41.
[ 2 ] 金创石,张廷安,牟望重,等.难处理金矿浸出预处理过程的FeS2-FeAsS-H2O系电位-pH图[ J ]. 材料与冶金学报,2011,(2):44-46.
[ 3 ] 傅开彬,林 海,莫晓兰,等. 不同类型黄铜矿的生物浸出研究[ J ]. 北京科技大学学报,2011,(7):55 - 57.
[ 4 ] 雷 海. 铁矿砂货差原因分析和防止对策[ J ]. 中国远洋航务,2011,(7):22 - 24.
[ 5 ] 王宝奎,郑桂兵,曾克文. 高硫铝土矿脱硫方法研究[ J ]. 轻金属,2011,(7):53 - 56.
[ 6 ] 鲁顺利. 非氰化法提金工艺研究现状[ J ]. 云南冶金,2011,(3):44 - 46.
[ 7 ] 黄海炼,黄明清,刘伟芳,等. 生物冶金中浸矿微生物的研究现状[ J ]. 湿法冶金,2011(3):32 - 33. |
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