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通过湿法冶金从液晶显示玻璃中提取铟并回收。

Beneficiation and recovery of indium from liquid-crystal-display glass by hydrometallurgy.

作者信息

Swain Basudev, Mishra Chinmayee, Hong Hyun Seon, Cho Sung-Soo

机构信息

Institute for Advanced Engineering, Advanced Materials & Processing Center, Yongin 449-863, Republic of Korea.

Institute for Advanced Engineering, Advanced Materials & Processing Center, Yongin 449-863, Republic of Korea.

出版信息

Waste Manag. 2016 Nov;57:207-214. doi: 10.1016/j.wasman.2016.02.019. Epub 2016 Mar 2.

DOI:10.1016/j.wasman.2016.02.019
PMID:26944866
Abstract

Considering indium scarcity, the end-of-life (EOL) LCD, which accounts for up to 90% of market share can be a feasible secondary resource upon successful recycling. In the preferred hydrometallurgical process of such critical metals, leaching is the essential primary and essential phase has been investigated. In this process, LCD was mechanically separated along with other parts from EOL TVs through a smartly engineered process developed at our institute, Institute for Advanced Engineering (IAE), the Republic of Korea. After removing plastics and metals from the LCD, it was mechanically shredded for size reduction. The mechanically shredded LCD waste was leached with HCl for recovery of indium. Possible leaching parameters such as; effect of acid concentration, pulp density, temperature and effect of oxidant HO concentration were investigated to identify the best conditions for indium extraction. Indium (76.16×10g/L) and tin (10.24×10g/L) leaching was achieved at their optimum condition, i.e. lixiviant of 5M HCl, a pulp density of 500g/L, temperature 75°C, agitation speed of 400rpm and time for 120min. At optimum condition the glass, plastic and the valuable metal indium have completely been separated. From indium enriched leach liquor, indium can be purified and recovered through hydrometallurgy.

摘要

考虑到铟的稀缺性,占市场份额高达90%的报废液晶显示器(LCD)在成功回收后可以成为一种可行的二次资源。在这种关键金属的首选湿法冶金工艺中,浸出是必不可少的首要阶段,并且已经对此进行了研究。在这个过程中,通过韩国先进工程研究所(IAE)我们研究所开发的一个精心设计的工艺,将LCD与其他部件从报废电视机中机械分离出来。从LCD中去除塑料和金属后,将其进行机械粉碎以减小尺寸。将机械粉碎后的LCD废料用盐酸浸出以回收铟。研究了诸如酸浓度、矿浆密度、温度等可能的浸出参数以及氧化剂过氧化氢浓度的影响,以确定铟提取的最佳条件。在最佳条件下实现了铟(76.16×10g/L)和锡(10.24×10g/L)的浸出,即浸出剂为5M盐酸、矿浆密度为500g/L、温度75°C、搅拌速度400rpm、时间120分钟。在最佳条件下,玻璃、塑料和有价值的金属铟已完全分离。从富含铟的浸出液中,可以通过湿法冶金对铟进行提纯和回收。

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