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某含铜硫金矿综合利用试验研究 被引量:1
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作者 周文雅 岳铁兵 +2 位作者 吕良 曹飞 方利红 《矿产保护与利用》 2011年第5期45-48,共4页
采用原矿浮选—浮选硫精矿焙烧—焙烧渣浸铜—浸铜渣氰化浸金的工艺对湖南某难选金矿进行试验研究,结果表明,铜回收率74.00%;金回收率91.14%;焙烧烟气为SO2,硫回收率95.17%;最终浸出渣为铁精矿品位68.72%、铁回收率86.23%。此工艺可综... 采用原矿浮选—浮选硫精矿焙烧—焙烧渣浸铜—浸铜渣氰化浸金的工艺对湖南某难选金矿进行试验研究,结果表明,铜回收率74.00%;金回收率91.14%;焙烧烟气为SO2,硫回收率95.17%;最终浸出渣为铁精矿品位68.72%、铁回收率86.23%。此工艺可综合回收硫、铜、金、铁四种元素,实现资源的综合利用。 展开更多
关键词 焙烧 浸出 含铜硫金矿
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Bioleaching of low-grade copper sulfide ore by extremely thermoacidophilic consortia at 70℃in column reactors 被引量:4
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作者 AI Chen-bing LIANG Yu-ting +1 位作者 QIU Guan-zhou ZENG Wei-min 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第5期1404-1415,共12页
The effects of introducing M.sedula derivatives having different Cu^2+-resistance on bioleaching capacity of a defined consortium(consisting of A.brierleyi DSM1651 and M.hakonensis HO1-1)were studied in column reactor... The effects of introducing M.sedula derivatives having different Cu^2+-resistance on bioleaching capacity of a defined consortium(consisting of A.brierleyi DSM1651 and M.hakonensis HO1-1)were studied in column reactors at 70℃.Introducing M.sedula copA mutant,a copper sensitive derivative,only had negligible effects on bioleaching.While introducing M.sedula ARS50-2,a Cu^2+resistant strain,substantially consolidated bioleaching process,with 27.77%more copper recovered after 58 d of bioleaching.Addition of M.sedula ARS50-2 likely enhanced the sulfur oxidation capacity of consortium after the 24th day under the Cu^2+stress.The majority of extreme thermoacidophiles were attached on minerals surface as indicated by quantitative PCR(qPCR)data.Successions of microbial community of extremely thermoacidophilic consortia that attached on surface of minerals were different from those in leachate.M.hakonensis HO1-1 was the dominant species attached on minerals surface in each column reactor throughout bioleaching process.The sessile M.sedula ARS50-2 remained as a major species till the 34th day.A.brierleyi DSM1651 was the most abundant planktonic species in leachate of each column reactor.These results highlight that higher Cu^2+-resistance is a beneficial trait for extreme thermoacidophiles to process copper minerals. 展开更多
关键词 extreme thermoacidophile BIOLEACHING copper sulfide ore copper resistance microbial community
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