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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Synergistic Aqueous Biphasic Systems: A New Paradigm for the 'One-Pot' Hydrometallurgical Recovery of Critical Metals
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Synergistic Aqueous Biphasic Systems: A New Paradigm for the 'One-Pot' Hydrometallurgical Recovery of Critical Metals

机译:协同含水性双相系统:一种新的范式,用于“单罐”临界金属的液态冶金恢复

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摘要

An acidic aqueous biphasic system (AcABS), in which the inorganic salt component of a traditional aqueous biphasic system (ABS) is replaced by the inorganic acid inherently present in typical hydrometallurgical leachate solution, is shown to selectively separate cobalt from nickel, a separation relevant to the recycling of nickel metal hydride (NiMH) batteries. To overcome the limitation of electrodeposition in the presence of high acid concentration, a mixed ABS- AcABS approach is developed in which HCl is partially substituted by addition of a predictable amount of NaCl. This synergistic ABS-AcABS retains the metal extraction efficiency of AcABS while diminishing the acid concentration required to induce phase separation as well as its distribution to the ionic-liquid-rich phase. Selective deposition of cobalt in the presence of coextracted manganese impurities was achieved in AcABS, ABS, and ABS-AcABSs. The morphology and composition of the obtained deposits as well as the Faradaic efficiency of the process can be altered by varying the NaCl to HCl ratio and water content, resulting in highly tailored cobalt deposits. These results highlight the potential of AcABS-derived systems as a new extraction-separation platform for the integrated hydrometallurgical treatment of critical metals, from leaching to electrodeposition.
机译:酸性水性双相系统(ACAB),其中传统水性双相系统(ABS)的无机盐组分被固有的型液压冶金渗滤液溶液固有的无机酸代替,显示选择性地将钴从镍中分离,分离相关镍金属氢化物(NiMH)电池的再循环。为了克服在高酸浓度存在下电沉积的限制,开发了混合的吸收方法,其中通过加入可预测量的NaCl部分取代HCl。该协同ABS-acabs保留了acabs的金属提取效率,同时减少诱导相分离所需的酸浓度以及其分布在富含离子液的相中。在共浸渍锰杂质存在下钴的选择性沉积在Acabs,Abs和Abs-Acabs中实现。通过改变NaCl至HCl比和水含量,可以改变所得沉积物的形态和组成以及该方法的游览效率,得到高度定制的钴沉积物。这些结果突出了ACABS衍生系统作为一种新的辐射分离平台,用于对临界金属的一体化液态冶金处理,从浸出到电沉积。

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