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Effects of thiol substitution in deep-eutectic solvents (DESs) as solvents for metal oxides

机译:深层溶剂(DESS)在深层溶剂(DESS)中的影响为金属氧化物的溶剂

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This study deals with an investigation of how substitution of an alcohol group by a thiol group in mixtures of choline chloride with a series of bio-sourceable molecules affects the physico-chemical properties of the mixtures and their ability to dissolve metal oxides. All of the thiol mixtures studied showed a higher affinity and selectivity for late transition metals and the physical properties of the mixtures were improved compared to their alcohol analogues ( i.e. lower viscosity, wider liquid range). The metal solubility was assessed via determination of the final concentration of the metal oxides dissolved in thiol mixtures via inductively coupled plasma optical emission spectroscopy (ICP-OES). The thiol function selectively improved the solubilities of the late transition metal oxides ( i.e. copper and zinc), which are valuable metals often present as residue in industrial waste. The solubility of iron oxides was much lower than that of the valuable metals, which is a significant benefit in industrial applications. The different solubilization behaviour of metal oxides in the thiol and alcohol mixtures was further investigated via UV-vis absorption and infrared spectroscopy. This study allowed the potential of these deep-eutectic solvents for the selective recovery of metals to be assessed.
机译:该研究涉及如何通过胆碱氯化物的混合物中替代醇组,其中一系列生物可增性分子影响混合物的物理化学性质及其溶解金属氧化物的能力。所研究的所有硫醇混合物显示出更高的亲和力和可结晚过渡金属的选择性,与其醇类似物相比,混合物的物理性质得到改善(即较低的粘度,较宽的液体范围)。通过电感耦合等离子体光发射光谱(ICP-OES)测定溶解在硫醇混合物中的金属氧化物的最终浓度的金属溶解度。硫醇功能选择性地改善了后期过渡金属氧化物(即铜和锌)的溶解度,其是通常作为工业废物中残留物的有价值的金属。氧化铁的溶解度远低于有价值金属的溶解度,这在工业应用中是一个显着的益处。通过UV-Vis吸收和红外光谱进一步研究了硫醇和醇混合物中金属氧化物中金属氧化物的不同溶解行为。该研究允许这些深鉴定溶剂的潜力用于评估待评估金属的选择性恢复。

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