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用生物技术的钥匙开启矿产资源利用的大门 被引量:20
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作者 邱冠周 刘学端 《中国有色金属学报》 EI CAS CSCD 北大核心 2019年第9期1848-1858,共11页
生物冶金已应用于全球50多个国家和地区。中国在国际上最早建立了基于基因组学的冶金微生物定量化技术,实现了微生物浸矿行为研究由表现型向基因型转变;建立了硫化矿分步氧化的微观化学反应模型,实现了生物冶金研究从宏观到微观的跨越... 生物冶金已应用于全球50多个国家和地区。中国在国际上最早建立了基于基因组学的冶金微生物定量化技术,实现了微生物浸矿行为研究由表现型向基因型转变;建立了硫化矿分步氧化的微观化学反应模型,实现了生物冶金研究从宏观到微观的跨越。生物冶金过程强化技术已在海内外得到大规模工业化应用,建立了年处理矿石量达6000万t生物提铜厂;形成了具有自主知识产权的CCGRI生物氧化提金技术,建成了中国黄金行业的第一座高技术产业化示范工程;硫化物包裹类铀矿的铀浸出率提高至96%,使铀矿开采品位从千分之一降低到万分之三。中国生物冶金已处于世界领先地位,可使矿产资源利用率从33%提高到96%,大幅提升中国矿产资源的使用年限。 展开更多
关键词 生物技术 生物冶金 产资源 浸矿行为
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Technological conditions and kinetics of leaching copper from complex copper oxide ore 被引量:11
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作者 孙锡良 陈白珍 +1 位作者 杨喜云 刘有源 《Journal of Central South University》 SCIE EI CAS 2009年第6期936-941,共6页
The kinetic behavior of leaching copper from low grade copper oxide ore was investigated. The effects of leaching temperature, H2SO4 concentration, particle size of crude ore and agitation rate on the leaching efficie... The kinetic behavior of leaching copper from low grade copper oxide ore was investigated. The effects of leaching temperature, H2SO4 concentration, particle size of crude ore and agitation rate on the leaching efficiency of copper were also evaluated. And the kinetic equations of the leaching process were obtained. The results show that the leaching process can be described with a reaction model of shrinking core. The reaction can be divided into three stages. The first stage is the dissolution of free copper oxide and copper oxide wrapped by hematite-limonite ore. At this stage, the leaching efficiency is very fast (leaching efficiency is larger than 60%). The second stage is the leaching of diffiuent copper oxides, whose apparent activation energy is 43.26 kJ/mol. During this process, the chemical reaction is the control step, and the reaction order of H2SO4 is 0.433 84. The third stage is the leaching of copper oxide wrapped by hematite-limonite and silicate ore with apparent activation energy of 16.08 kJ/mol, which belongs to the mixed control. 展开更多
关键词 copper oxide ore H2SO4 LEACHING KINETICS activation energy
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