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《Journal of Safety Science and Technology》 2009-04
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Analysis on feasibility of removing sulfur from metal sulfide ores with microorganism

LUO Fei-xia,WANG Hong-jiang,WU Ai-xiang(University of Science and Technology Beijing,Beijing 100083,China)  
The high sulfur minerals in sulphur ore is the intrinsic factor of internal-caused fire.Using microorganism leaching to remove sulfur from the surface sulfide ore,then the surface of ore's sulphur content would be under the critical spontaneous point.The purpose is to avoid internal-caused fire of high sulphur ore mines.Based on the study of removing sulfur from coal and pyrite slag by microorganism method,this paper discussed microbial desulfurization in metal sulfide ore.
【Fund】: 国家自然科学基金项目资助(编号:50774011)
【CateGory Index】: TD95;TD75
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【References】
Chinese Journal Full-text Database 1 Hits
1 WANG Hong-jiang1),WU Ai-xiang1),LUO Fei-xia2),ZHANG Xu1),CHEN Jia-sheng3),SHI Liang-gui4) 1) School of Civil and Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,China 2) Dongfang Turbine Co.Ltd.,Deyan 618000,China 3) Tongling Chemical Industry Group Co.Ltd.,Tongling 244023,China 4) Xinqiao Mining Company Limited,Tongling 244132,China;Experimental study on inhibiting the spontaneous combustion of sulfide ores by bacteria desulfurization[J];Journal of University of Science and Technology Beijing;2011-04
【Citations】
Chinese Journal Full-text Database 1 Hits
1 FENG Yali, LI Haoran Civil and Environment Engineering School, UST Beijing, Beijing 100083, China Institute of Processing Engineering, Academia Sinica National Laboratory of Bio-chemical Engineering, Beijing 100080,China;Bio-desulphurization from Pyrite Slag with Thiobacillus Ferrooxidans[J];Journal of University of Science and Technology Beijing;2002-02
【Co-citations】
Chinese Journal Full-text Database 2 Hits
1 FENG Yali 1) ,LI Haoran 2) ,FENG Fuzhang 1) 1) Civil and Environmental Engineering School,University of Science and Technology Beijing,Beijing 100083,China2) State Key Laboratory of Biochemical Engineering,Institute of Process Engineering,Chinese Academy of Sciences,Beijing 100080,China;Microbe catalysis co-leaching of deep sea polymetallic nodules and pyrite and its reaction kinetics model[J];Journal of University of Science and Technology Beijing;2006-10
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