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Design of environmentally-benign metal extraction systems: the use of CO_2 in metal extraction

机译:环境良性金属提取系统的设计:CO_2在金属提取中的使用

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Recovery of metals from dilute solution, whether the matrix is olid or liquid, remains a considerable technical and financial challenge. Methods currently exist whereby metals can be extracted from either type of matrix, yet these methods consume significant quantities of reagents and can also generate multiple waste streams in the process. Technology developed in our lab allows efficient application of environmentally-benign CO_2 to a number of separation problems involving metals. For example, we have employed biphasic mixtures of CO_2 and water as a green acid leach medium. Metals have been extracted from a steelmaking process residue and then recovered as metal carbonates through depressurization. In this process, metals are extracted and recovered without the use of reagents other than CO_2 and water,a nd CO_2 is sequestered as a solid. In addition, through synthesis of CO_2-miscible phase transfer agents, we have shown that CO_2 can replace the organic solvent currently used in refining of precious metals. The sensitivity to presusre of phase behavior in a CO_2-mixture may allow significant streamlining of the process as well. Finally, CO_2-soluble chelating agents have been used to extract toxic metals from acidic effluent such as that found in plating facilties.
机译:从稀释溶液中回收金属,是否矩阵是Olid或液体,仍然是相当大的技术和财务挑战。目前存在的方法可以从任一种基质中提取金属,但这些方法消耗了大量的试剂,并且还可以在该过程中产生多个废物流。我们实验室开发的技术允许高效地将环境良性的CO_2应用于涉及金属的许多分离问题。例如,我们使用CO_2和水的双相混合物作为绿酸浸出介质。已从炼钢工艺残余物中提取金属,然后通过减压作为金属碳酸盐回收。在该方法中,在不使用除Co_2和水之外的试剂的情况下提取并回收金属,将Nd CO_2作为固体隔离。另外,通过合成CO_2可混溶的相转移剂,我们已经表明,CO_2可以代替目前用于精炼贵金属的有机溶剂。在CO_2混合物中对阶段行为预测的敏感性也可以显着简化该过程。最后,CO_2可溶性螯合剂已被用于从酸性流出物中提取毒性金属,例如在电镀的平面内发现。

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