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The Evolution, Current Status, and Future Prospects of Using Biotechnologies in the Mineral Extraction and Metal Recovery Sectors

机译:使用生物技术在矿物萃取和金属回收部门中使用生物技术的演变,现状和未来前景

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摘要

The current global demand in terms of both the amounts and range of metals for industrial and domestic use greatly exceeds that at any previous time in human history. Recycling is inadequate to meet these needs and therefore mining primary metal ores will continue to be a major industry in the foreseeable future. The question of how metal mining can develop in a manner which is less demanding of energy and less damaging of the environment in a world whose population is increasingly aware of, and concerned about, the environment, requires urgent redress. Increased application of biotechnologies in the mining sector could go some way in solving this conundrum, yet, biomining (harnessing microorganisms to enhance the recovery of base and precious metals) has remained a niche application since it was first knowingly used in the 1960s. This manuscript reviews the development and current status of biomining applications and highlights their limitations as well as their strengths. New areas of biotechnology that could be applied in the mining sector, and their potential impact in terms of both their potential environmental and economic benefits, are also discussed.
机译:目前的工业和国内使用金属的金属量和范围的全球需求大大超过了人类历史上一次的最终时间。回收不足以满足这些需求,因此采矿原代金属矿石将继续成为可预见的未来的主要行业。金属采矿的问题是如何以对人口越来越意识到的世界中的环境苛刻的苛刻和对环境越来越严重的方式发展,这些环境越来越意识到,环境,需要紧急纠正。增加了生物技术在采矿部门的应用可能会在解决这一难题方面进行一些方法,但是生物线路(利用微生物来增强基地和贵金属的恢复)仍然是利基应用,因为它首先在20世纪60年代首次被故意使用。此手稿审查生物化应用程序的开发和当前状态,并突出显示其限制以及它们的优势。还讨论了可以在采矿部门应用的新型生物技术领域,以及对潜在的环境和经济效益的潜在影响。

著录项

  • 作者

    D. Johnson;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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