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Recovery of tungsten and cobalt from tungsten carbide tool waste by hydrometallurgical method

机译:湿法冶金从碳化钨工具废料中回收钨和钴

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In a present process to treat the tungsten carbide (WC) tool waste, the wastes are roasted in air and then an alkali leaching is carried out in an autoclave. An environmentally friendly process is required to recover rare metals (Co and W) from the wastes. The effect of mechano-chemical (MC) treatment on leaching of rare metals was investigated in this study. The solvent extraction and crystallization-stripping methods were applied to separate and recover tungsten and cobalt in the leached solutions. The MC treatment for the rare metal leaching is effective to dissolve rare metals from the wastes due to the change in crystalline structure of WC and oxidation of WC with KMnO4. Cobalt ions are extracted with di-2-ethylhexyl phosphoric acid by a cation-exchange reaction. Tungsten in the leachate can be extracted by tri-octyl amine as an extractant, because tungsten species exist as anionic species in acidic solution. The rare metals in organic phase are recovered as insoluble salts such as oxalates and ammonium salts in the crystallization-stripping process.
机译:在处理碳化钨(WC)工具废料的当前方法中,将废料在空气中焙烧,然后在高压釜中进行碱浸。从废物中回收稀有金属(Co和W)需要一种环保的过程。本研究研究了机械化学(MC)处理对稀有金属浸出的影响。应用溶剂萃取和结晶汽提方法分离并回收浸出溶液中的钨和钴。由于WC的晶体结构变化和WC被KMnO4氧化,用于稀有金属浸出的MC处理有效地溶解了废物中的稀有金属。钴离子通过阳离子交换反应用二-2-乙基己基磷酸萃取。渗滤液中的钨可以用三辛胺作为萃取剂进行萃取,因为在酸性溶液中钨以阴离子形式存在。在结晶汽提过程中,有机相中的稀有金属以不溶性盐(如草酸盐和铵盐)的形式回收。

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