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Perspective nouvelle pour la récupération de l'indium issu des e-déchets par électrodéposition dans les liquides ioniques à température ambiante

机译:透视新闻发布会电子节目电子节目电影节目电影节

摘要

Faced with explosive growth in demand for indium and, faced with challenges to both socio-economic and political potential it represents, the recycling of indium content in the equipments of end of life remains the only alternative to address risk of shortages. Beyond the economic and strategic aspects, recycling of indium can help preserving the environment by preventing large-scale exploitation of mineral ores containing indium. In addition, the toxicity of indium alone justifies the development of methods for treating waste containing indium. However, the recovery of indium from electronic waste is currently fairly limited, except in Japan where there are several processes at an industrial scale. However, these processes are not environmentally friendly and are energy-intensive In this PhD work, recycling of indium by liquid / liquid extraction in an ionic liquid followed by its electrodeposition in situ appeared to us as a promising process, to overcome the often difficult step of de-extraction of the metal cation. Among the ionic liquids that we have synthesized and characterized in terms of structure and of physicochemical properties, 1-butyl-1-ethylpiperidinium bis(trifluoromethylsulfonyl) imide (BEPipNTf2) has been shown most suitable because of its cathodic stability, its low viscosity, its hydrophobic and weakly hygroscopic character. We have shown that in synergy with the trioctylphosphine oxide (TOPO) as extractant, it is possible to extract more than 90% of the indium contained in a 10-2 M HCl aqueous phase. The electrochemical system In(III)/In(0) in the BEPipNTf2 was then studied in the presence of chlorides, of water, of oxygen and of TOPO, which are the species present after the liquid/liquid extraction step of the In(IIII). A detailed study of the influence of chloride ions has been particularly carried out, highlighting the formation of chlorocomplexes of indium when applying a cathodic potential of reduction of In(III), which significantly changes the electrochemical characteristics of the system In(III)/In(0), The results obtained show that indium (III) can be electrodeposited in its metallic form in the range of electrochemical stability of the ionic liquid and that this is non-reversible in presence of TOPO, whose electroactivity in the corresponding potential range suggests that the reduction could result in the presence of organic impurities in the deposition of indium and could limit the amount of metal deposited.
机译:面对铟需求的爆炸性增长,并且面临其所代表的社会经济和政治潜力的挑战,寿命终止设备中铟含量的回收仍然是解决短缺风险的唯一选择。除经济和战略方面外,铟的回收还可以通过防止大规模开采含铟矿石来帮助保护环境。另外,仅铟的毒性证明处理含铟废物的方法的发展是合理的。但是,除了在日本有工业规模的多个工艺的日本以外,目前从电子废物中回收铟的能力相当有限。然而,这些工艺对环境不利,并且耗能高。在本博士研究中,通过在离子液体中进行液/液萃取然后原位电沉积铟的回收对我们来说是一个很有前途的方法,以克服通常很困难的步骤金属阳离子的提取。在我们已经合成并就结构和物理化学性质进行表征的离子液体中,1-丁基-1-乙基哌啶双(三氟甲基磺酰基)酰亚胺(BEPipNTf2)已被证明是最合适的,因为它具有阴极稳定性,低粘度,疏水性和弱吸湿性。我们已经表明,与三辛基氧化膦(TOPO)作为萃取剂协同作用,可以萃取10-2 M HCl水相中所含铟的90%以上。然后在氯化物,水,氧气和TOPO的存在下研究了BEPipNTf2中的电化学系统In(III)/ In(0),这些氯化物是In(IIII的液/液萃取步骤之后存在的物质) )。特别是对氯离子的影响进行了详细的研究,突出了在施加In(III)还原的阴极电位时铟的氯配合物的形成,这显着改变了In(III)/ In体系的电化学特性。 (0),获得的结果表明,在离子液体的电化学稳定性范围内,铟(III)可以其金属形式进行电沉积,并且在TOPO的存在下这是不可逆的,TOPO在相应电位范围内的电活性表明还原可能导致铟沉积过程中存在有机杂质,并可能限制沉积的金属量。

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    Traore Youssouf;

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  • 年度 2012
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