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Behavior of Platinum Group Metals during Their Pyrometallurgical Recovery from Spent Automotive Catalysts

机译:从用过的汽车催化剂中火成金回收铂族金属的行为

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The behavior of platinum group metals (PGMs) during their recovery with smelting of spent automotive ceramic catalysts powder in the presence of metallic copper at elevated temperatures is studied in this paper. Two different metal recovery mechanisms proved to be active in this process: 1) Wetting of micro-dispersed particulates of PGMs in the slag by molten copper, formation of copper droplets with attracted microparticles of PGMs and settling of the molten droplets of Cu-PGMs alloy through the slag at the bottom of the crucible (“wetting”); 2) Settling of solid PGMs microparticles through the molten slag and formation of a solid solution with the molten copper at the bottom of the crucible (“settling”). The PGMs are divided in two separate groups. Platinum has under the same experimental conditions substantially higher recovery in comparison with the palladium and rhodium that behave as a group having almost identical recoveries. The heavier Pt is recovered primarily in big extent (almost 88%) through the “settling” mechanism while Pd and Rh are recovered following a more balanced mixture of both mechanisms with the “settling” one to be again more important (66% for Pd and 57% for Rh). Slag viscosity is the most important physical property and the design of an appropriate slag system is the most important issue in developing an efficient process for the recovery of PGMs.
机译:本文研究了铂族金属(PGM)在金属铜的存在下在高温下通过熔化废旧的汽车陶瓷催化剂粉末进行熔炼的过程中的行为。事实证明,两种不同的金属回收机制在该过程中是有效的:1)熔融铜润湿炉渣中微细分散的PGM颗粒,形成具有吸引PGM微粒的铜滴,并沉淀Cu-PGMs合金的熔融滴通过坩埚底部的炉渣(“湿润”); 2)固态PGMs微粒通过熔融炉渣沉降,并在坩埚底部与熔融铜形成固溶体(“沉降”)。 PGM分为两个单独的组。与作为具有几乎相同的回收率的基团的钯和铑相比,在相同的实验条件下,铂的回收率要高得多。较重的Pt主要通过“沉降”机理大量回收(几乎88%),而Pd和Rh则通过两种机理的更平衡混合而回收,而“沉降”机理则更为重要(Pd的66% Rh占57%)。矿渣粘度是最重要的物理性质,在开发有效的回收PGM的过程中,设计合适的矿渣系统是最重要的问题。

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