首页> 外文期刊>Energy, Ecology and Environment >Mesophilic bioleaching performance of copper, cobalt and nickel with emphasis on complex orebodies of the Democratic Republic of Congo: a review of dynamic interactions between solids loading, microbiota activity and growth
【24h】

Mesophilic bioleaching performance of copper, cobalt and nickel with emphasis on complex orebodies of the Democratic Republic of Congo: a review of dynamic interactions between solids loading, microbiota activity and growth

机译:嗜中温bioleaching性能的铜,钴和镍与强调复杂刚果民主共和国的矿体:检查固体之间的动态交互加载、微生物群活动和增长

获取原文
获取原文并翻译 | 示例
           

摘要

The copper, cobalt and nickel ores are still currently mined in the world. Its complex mineralogy creates extraction challenges by means of conventional metallurgical methods. Meanwhile, dealing with mesophilic strains in leaching process requires a compromise between solid loading and microbiota activity and growth. That is why, the influence of solid loading with fine or coarse particulates, the cell disturbance during the metal–microbes interactions depending upon the influence of gangue nature as well as metallic ions concentration on bacterial tolerance and the chemical and biological pathways involved in bioleaching mechanism of complex ores are summarised in detail in this paper. The current trends in mechanism research and diverse discovered set of microbiota and bacterial population coupled with bacterial adaptation methods contribute to optimise and improve the metals leaching performance and knowledge. In addition, the different existing complex mineralogical structures elaborate a mainindirect mechanism with two different transitory mechanisms, before metal is converted into metal sulphate as wealthily explained in this comprehensive review. More data for cost analysis concomitant with extraction efficiency of metals using mesophilicbioleaching process are needed. However, it does not mean that other options are excluded in order to set a bio-hydrometallurgical chain. In fact, to consider also the concentration and purification of the pregnant leaching solution via phase separation and solvent extraction will be helpful. This obeys to the idea of option trees, where possible options are then systematically gaged with respect to critical criteria.
机译:铜、钴和镍矿石目前世界上开采。通过矿物学创建提取挑战传统的冶金方法。处理嗜中温浸出的压力过程需要固体之间的一种折衷加载和微生物群活动和增长。就是为什么固体加载的影响好吗或粗颗粒,细胞干扰在metal-microbes不同的相互作用在煤矸石以及本质的影响金属离子浓度对细菌宽容和化学和生物通路参与bioleaching机制复杂的矿石详细总结纸。多样的微生物群和发现的细菌数量加上细菌有助于优化和适应的方法提高金属浸出性能和知识。复杂的矿物结构复杂mainindirect与两个不同的机制暂时的机制,在金属转换成金属硫酸盐丰富地解释道全面审查。分析相伴与提取效率金属使用mesophilicbioleaching过程需要的。选项是为了设置一个排除在外bio-hydrometallurgical链。考虑浓度和净化通过阶段怀孕浸出的解决方案和溶剂萃取分离有帮助的。尽可能选择系统我们对关键标准。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号