首页> 外文期刊>Journal of Mining >Biochemical Engineering Parameters for Hydrometallurgical Processes: Steps towards a Deeper Understanding
【24h】

Biochemical Engineering Parameters for Hydrometallurgical Processes: Steps towards a Deeper Understanding

机译:湿法冶金工艺的生化工程参数:深入了解的步骤

获取原文
           

摘要

Increasing interest in biomining process and the demand for better performance of the process has led to a new insight toward the mining technologies. From an engineering point of view, the complex network of biochemical reactions encompassed in biomining would best be performed in reactors which allow a good control of the significant variables, resulting in a better performance. The subprocesses are in equilibrium when the rate of particular metal ion; for example, iron turnover between the mineral and the bacteria, is balanced. The primary focus is directed towards improved bioprocess kinetics of the first two subprocesses of chemical reaction of the metal ion with the mineral and later bacterial oxidation. These subprocesses are linked by the redox potential and controlled by maintenance of an adequate solids suspension, dilution rate, and uniform mixing which are optimised in bioreactors during mining operations. Rate equations based on redox potential such as ferric/ferrous-iron ratio have been used to describe the kinetics of these subprocesses. This paper reviews the basis of process design for biomining process with emphasis on engineering parameters. It is concluded that the better understanding of these engineering parameters will make biomining processes more robust and further help in establishing it as a promising and economically feasible option over other hydrometallurgical processes worldwide.
机译:人们对生物采矿工艺的兴趣日益增长,并且对提高工艺性能的需求也促使人们对采矿技术有了新的认识。从工程学的角度来看,生物采矿中包含的复杂的生化反应网络最好在反应器中进行,这样可以很好地控制重要变量,从而获得更好的性能。当特定金属离子的速率时,子过程处于平衡状态。例如,矿物质和细菌之间的铁交换是平衡的。主要重点是提高金属离子与矿物化学反应的前两个子过程的生物过程动力学,以及随后的细菌氧化。这些子过程通过氧化还原电势相连,并通过维持适当的固体悬浮液,稀释率和均匀混合进行控制,这些在采矿操作过程中在生物反应器中进行了优化。基于氧化还原电势的速率方程(例如铁/铁-铁比)已用于描述这些子过程的动力学。本文回顾了生物采矿过程的工艺设计基础,重点是工程参数。结论是,对这些工程参数的更好理解将使生物采矿过程更加稳健,并进一步帮助将其确立为优于全球其他湿法冶金工艺的有希望且在经济上可行的选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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