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Industrial-Scale Indium Recovery from Various e-Waste Resources Through Simulation and Integration of Developed Processes

机译:通过模拟和集成已开发的流程,从各种电子废物资源中回收工业规模的铟

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Various e-wastes like waste LCD, LED, and LCD etching industry wastewater are important secondary resources for indium, which is a critical metal. In this research, the industrial-scale indium recovery from e-waste resources like waste LCD, LED, and LCD industry etching wastewater is being emphasized through simulation and integration of the developed processes. A demonstration plant for indium recovery on one ton/day of ITO etching wastewater has been developed with almost complete (99%) recovery of indium. For the indium recovery, integration of the processes can be managed by following two approaches unique to this system, (ⅰ) utilization of ITO etching industry wastewaters for the leaching of waste LCD, (ⅱ) integration of leaching processes developed for waste LCD and LED with that of the treatment process for ITO wastewaters. Through the proposed approach, the semiconductor manufacturing industry and ITO industry can address various pressing issues like (ⅰ) waste disposal, (ⅱ ) indium recovery, (ⅲ) circular economy.
机译:各种电子废物,如废LCD、LED和LCD蚀刻工业废水,是铟的重要二次资源,铟是一种关键金属。在本研究中,通过模拟和集成已开发的工艺,强调从废弃LCD、LED和LCD工业蚀刻废水等电子废物资源中进行工业规模的铟回收。已开发了一个示范工厂,用于在一吨/天的ITO蚀刻废水中回收铟,铟的回收率几乎达到99%。对于铟回收,可通过以下两种本系统独有的方法来管理流程的集成:(ⅰ) 利用ITO蚀刻工业废水浸出废弃LCD(ⅱ) 集成为废LCD和LED开发的浸出工艺与ITO废水处理工艺。通过提出的方法,半导体制造业和ITO产业可以解决各种紧迫问题,如(ⅰ) 废物处理(ⅱ ) 铟回收(ⅲ) 循环经济。

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