湿法冶金法从SCR催化剂浸出液中回收钒钨

In-hyeok Choi, Gyeonghye Moon, J. Jeon, Jin-Young Lee, K. Rajesh
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引用次数: 2

摘要

新千年以来,对选择性催化还原(SCR)催化剂的广泛需求逐渐增加。SCR催化剂可以防止NOx的排放,保护环境。在SCR催化剂中,催化剂的主要成分通常是TiO2(70~80%)、WO3(7~10%)、V2O5(~1%)等。SCR催化剂的可降解性极低,当其使用完并被弃置到垃圾填埋场后,是否应长期存在于垃圾填埋场是一个问题。首先需要开发一种新的先进技术来保护环境,然后回收有价金属。设计并开发了用于SCR的湿法冶金技术,如浸出和液液萃取。研究方向为:①①①①①①①①①①①①①①①①①①①①①①①①①①①①①①①①①①①①
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recovery of the Vanadium and Tungsten from Spent SCR Catalyst Leach Solutions by Hydrometallurgical Methods#
In new millennium, wide-reaching demands for selective catalytic reduction (SCR) catalyst have been increased gradually in new millennium. SCR catalyst can prevent the NOx emission to protect the environment. In SCR catalyst the main composition of the catalyst is typically TiO2 (70~80%), WO3 (7~10%), V2O5 (~1%) and others. When the SCR catalysts are used up and disposed to landfills, it is problematic that those should exist in the landfill site permanently due to their extremely low degradability. A new advanced technology needs to be developed primarily to protect environment and then recover the valuable metals. Hydrometallurgical techniques such as leaching and liquid-liquid extraction was designed and developed for SCR 폐촉매 침출액으로부터 습식제련법에 의한 바나듐, 텅스텐의 회수 63 자원리싸이클링 제 29권 제 2호, 2020
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