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Selective recovery of pure copper nanopowder from indium-tin-oxide etching wastewater by various wet chemical reduction process: Understanding their chemistry and comparisons of sustainable valorization processes

机译:通过各种湿化学还原工艺从氧化铟锡蚀刻废水中选择性回收纯铜纳米粉:了解其化学性质和可持续增值工艺的比较

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摘要

Sustainable valorization processes for selective recovery of pure copper nanopowder from Indium-Tin-Oxide (ITO) etching wastewater by various wet chemical reduction processes, their chemistry has been investigated and compared. After the indium recovery by solvent extraction from ITO etching waste-water, the same is also an environmental challenge, needs to be treated before disposal. After the indium recovery, ITO etching wastewater contains 6.11 kg/m~3 of copper and 1.35 kg/m~3 of aluminum, pH of the solution is very low converging to 0 and contain a significant amount of chlorine in the media. In this study, pure copper nanopowder was recovered using various reducing reagents by wet chemical reduction and characterized. Different reducing agents like a metallic, an inorganic acid and an organic acid were used to understand reduction behavior of copper in the presence of aluminum in a strong chloride medium of the ITO etching wastewater. The effect of a polymer surfactant Polyvinylpyrrolidone (PVP), which was included to prevent aggregation, to provide dispersion stability and control the size of copper nanopowder was investigated and compared. The developed copper nanopowder recovery techniques are techno-economical feasible processes for commercial production of copper nanopowder in the range of 100-500 nm size from the reported facilities through a one-pot synthesis. By all the process reported pure copper nanopowder can be recovered with > 99% efficiency. After the copper recovery, copper concentration in the wastewater reduced to acceptable limit recommended by WHO for wastewater disposal. The process is not only beneficial for recycling of copper, but also helps to address environment challenged posed by ITO etching wastewater. From a complex wastewater, synthesis of pure copper nanopowder using various wet chemical reduction route and their comparison is the novelty of this recovery process.
机译:通过各种湿法化学还原工艺从铟锡氧化物(ITO)蚀刻废水中选择性回收纯铜纳米粉的可持续增值工艺,已对其化学性质进行了研究和比较。通过从ITO蚀刻废水中萃取溶剂回收铟后,同样也是环境挑战,需要在处置前进行处理。铟回收后,ITO蚀刻废水中含有6.11 kg / m〜3的铜和1.35 kg / m〜3的铝,溶液的pH值很低,收敛到0,并且介质中含有大量的氯。在这项研究中,使用各种还原剂通过湿化学还原法回收了纯铜纳米粉并进行了表征。使用不同的还原剂(如金属,无机酸和有机酸)来了解在ITO蚀刻废水的强氯化物介质中铝存在下铜的还原行为。研究并比较了聚合物表面活性剂聚乙烯吡咯烷酮(PVP)的作用,该作用可防止聚集,提供分散稳定性并控制铜纳米粉的尺寸。从报告的设施到一锅合成,已开发的铜纳米粉回收技术是技术经济可行的商业生产铜纳米粉的工艺,尺寸范围为100-500 nm。通过所有方法报道,可以以> 99%的效率回收纯铜纳米粉。回收铜后,废水中的铜浓度降至世界卫生组织建议的废水处理可接受的极限。该工艺不仅有益于铜的再循环,而且还有助于解决ITO蚀刻废水所带来的环境挑战。从复杂的废水中,使用各种湿法化学还原途径合成纯铜纳米粉及其比较是该回收工艺的新颖之处。

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