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Valence variation of arsenic in bioleaching process of arsenic-bearing gold ore

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文摘 The concentration and variational trend of As~(3+) and As~(5+), the bacterial resistance for the As~(3+) and As~(5+) and converting conditions from As~(3+) to As~(5+) were analyzed. The additive was used to prompt the bacterial leaching efficiency by changing valence state of arsenic. The results show that the concentration of As~(3+) is larger than that of As~(5+) in the lag phase. The concentration of As~(3+) decreases in the log phase, and is lower than that of As~(5+). HQ-0211 typed bacteria express better resistance for As~(3+) and As~(5+) and remain growing when the concentrations of As~(3+) and As~(5+) are above 6.0 g/L and 12.0 g/L, respectively. It is found that Fe~(3+) cannot oxidize As~(3+) singly as strong oxidant in the leaching system, but can cooperate with pyrite or chalcopyrite to do that. The oxidation of As~(3+) is prompted with addition of H_2O_2. The bacterial activity is improved in favor of bacterial leaching efficiency. NaClO restrains the bacterial growth to depress leaching efficiency because of the chloric compounds affecting bacterial activity.
来源 Transactions of Nonferrous Metals Society of China ,2010,20(6):1171-1176 【核心库】
DOI 10.1016/s1003-6326(09)60274-0
关键词 As~(3+) ; As~(5+) ; bacterial leaching ; arsenic resistance ; oxidant ; arsenic-bearing gold ore
地址

School of Materials Science and Metallurgy, Northeastern University, Shenyang, 110004

语种 英文
文献类型 研究性论文
ISSN 1003-6326
学科 化学工业
基金 国家自然科学基金 ;  国家863计划 ;  国家教育部高等学校博士学科点专项科研基金
文献收藏号 CSCD:3920442

参考文献 共 20 共1页

1.  SCHMITZ P A. Adsorption of aurocyanide complexes onto carbonaceous matter from pregrobbing Goldstrike ore. Hydrometallurgy,2001,61:121-135 被引 6    
2.  TONG Lin-lin. Experimental investigation on gold extraction from high-As concentrate in Hunan province through bio-oxidation/cyanadation. Precious Metal, (in Chinese),2008,29(1):15-18 被引 1    
3.  YAHYA A. Bioleaching of pyrite at low pH and low redox potentials by novel mesophilic gram-positive bacteria. Hydrometallurgy,2002,63(2):181-188 被引 14    
4.  ZI Jian-wei. A review on biooxidation pretreatment of arsenric-bearing refractory gold ores. Precious Metal, (in Chinese),2005,26(1):66-70 被引 1    
5.  AKCIL A. Potential bioleaching developments towards commercial reality Turkishmetalmining's future. Minerals Engineering,2004,17(3):477-480 被引 15    
6.  WATLINGH R. The bioleaching of sulphide mineralswith emphasis on coppersulphides-A review. Hydrometallurgy,2006,84(1/2):81-108 被引 1    
7.  EHRILICH H L. Past, present and future of biohydrometallurgy. Hydrometallurgy,2001,59(2/3):127-134 被引 3    
8.  SAMPSON M I. Influence of the attachment of acidophilic bacteria during the oxidation of mineral sulfides. Minerals Engineering,2000,13(4):373-389 被引 17    
9.  WANG Bin. Development of inorganic arsenic content analysis and critical number in food. Journal of Public Health and Preventive Medicine, (in Chinese),2006,17(2):48-49 被引 1    
10.  KANG Jia-qi. Study progress of adverse effects of arsenic on health. Journal of Hygiene Research, (in Chinese),2004,33(3):372-375 被引 1    
11.  APOSHIAN H V. A review of the enzymology of arsenic metabolism and a new potential role of hydrogen peroxide in the detoxication of the trivalent arsenic species. Toxicol Appl Pharmacol,2004,198:327-335 被引 21    
12.  CHARYA C A. Bacterial removal of sulphur from three different coals. Fuel,2001,80:2207-2216 被引 4    
13.  HUANG Bao-gui. Investigation on the method of extraction-separation for high contents of As(Ⅲ) and As(V). Metallurgical Analysis, (in Chinese),1995,15(4):7-10 被引 1    
14.  SUN Shu-yuan. The mineral and nonferrous metals analysis manual. (in Chinese),1990:112-113 被引 1    
15.  HE Qiu-hong. Form transformation of arsenic in soil and corresponding analyzing methods. Chinese Journal of Applied Ecology, (in Chinese),2008,19(12):2763-2768 被引 1    
16.  SHI Jia-wei. Survey on the inorganic arsenic and its valence in food. China Preventive Medicine, (in Chinese),2005,6(3):206-208 被引 1    
17.  BAI Ai-mei. Harmness on the human body by arsenic. Studies of Trace Elements and Health, (in Chinese),2007,24(1):61-62 被引 1    
18.  ZUO Jin-long. A review of studies on pollutants and treatment techniques development in water supply. Carcinogenesis Teratogenesis & Mutagenesis, (in Chinese),2007,19(3):174-180 被引 1    
19.  HU Liu-jie. The current research and trend on the speciation and bioavailability of arsenic in soils. Journal of Nuclear Agricultural Sciences, (in Chinese),2008,22(3):383-388 被引 1    
20.  SAND W. Direct versus indirect bioleaching. Process Metallurgy,1999,9(1):27-49 被引 2    
引证文献 7

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