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Metal Extraction from Deep-Ocean Mineral Deposits

机译:从深海矿床中提取金属

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The future extraction of deep-ocean mineral deposits depends on being able to recover the metals in an economic and environmentally sensitive way. Metal production is one of the most energy intensive industrial sectors. The characteristics of some deep-ocean mineral deposits permit them to be readily dissolved and to release their contained metals into solution. Current innovations in hydrometallurgy, including metal leaching with ionic liquids and solvent extraction in non-dispersive phase contactors, demonstrate how metals could potentially be extracted from Fe-Mn deposits with increased energy efficiency and a reduced environmental footprint compared with traditional processing techniques. The importance of biological processes in the formation of deep-ocean Fe-Mn deposits is poorly understood. However, understanding how microorganisms select and deposit metal ions could further enhance targeted extraction of 'critical' metals.
机译:未来深海矿物矿床的开采取决于能否以经济和环境敏感的方式回收金属。金属生产是能源消耗最大的工业部门之一。一些深海矿物沉积物的特征使其易于溶解并将其所含金属释放到溶液中。湿法冶金的当前创新,包括用离子液体浸提金属和在非分散相接触器中萃取溶剂,证明了与传统的加工技术相比,如何可以潜在地从铁锰矿中提炼出金属,从而提高了能源效率并减少了环境足迹。人们对生物过程在深海铁锰矿床形成中的重要性了解甚少。然而,了解微生物如何选择和沉积金属离子可以进一步增强“关键”金属的靶向提取。

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