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利用负载离子液体相从废旧汽车催化剂中回收铂族金属

Toward the Recovery of Platinum Group Metals from a Spent Automotive Catalyst with Supported Ionic Liquid Phases.

作者信息

Lanaridi Olga, Sahoo Apurba Ranjan, Limbeck Andreas, Naghdi Shaghayegh, Eder Dominik, Eitenberger Elisabeth, Csendes Zita, Schnürch Michael, Bica-Schröder Katharina

机构信息

Institute of Applied Synthetic Chemistry, TU Wien, Getreidemarkt 9/163, 1060 Vienna, Austria.

Institute of Chemical Technologies and Analytics, TU Wien, Getreidemarkt 9/164, 1060 Vienna, Austria.

出版信息

ACS Sustain Chem Eng. 2021 Jan 11;9(1):375-386. doi: 10.1021/acssuschemeng.0c07384. Epub 2020 Dec 28.

Abstract

We present a novel approach for the separation and recovery of Pt and Pd leached from a spent automotive catalyst relying on conventional and polymerized supported ionic liquid phases (SILPs and polySILPs, respectively). A variety of parameters with possible effects on the separation behavior, namely, acidity and concentration of the platinum group metal (PGM) containing solution, as well as different SILP and polySILP loadings, were evaluated for the separation of PGMs in the presence of high concentrations of Al, Fe, Zn, and Ce. The polySILP material demonstrated the ability to separate the PGMs from major accompanying interferences in a single separation step, while problems arising from ionic liquid leaching in the case of SILPs could be avoided. Moreover, the use of supported ionic liquid phases allowed the drastic reduction of the amount of required ionic liquid compared to conventional liquid-liquid separation, while avoiding problems arising from emulsion formation. Subsequent stripping experiments lead to further purification of the PGMs and finally desorption from the solid material into a pure solution. Eventually, the concept of chemisorbed polySILPs provides a new and convenient approach for the recycling of platinum group metals.

摘要

我们提出了一种全新的方法,用于从废旧汽车催化剂中浸出的铂(Pt)和钯(Pd)的分离与回收,该方法分别依赖于传统的负载离子液体相(SILP)和聚合负载离子液体相(polySILP)。针对在高浓度铝(Al)、铁(Fe)、锌(Zn)和铈(Ce)存在下铂族金属(PGM)的分离,评估了各种可能影响分离行为的参数,即含铂族金属溶液的酸度和浓度,以及不同的SILP和polySILP负载量。polySILP材料展示了在单个分离步骤中从主要伴随干扰物中分离铂族金属的能力,同时可以避免SILP情况下离子液体浸出所产生的问题。此外,与传统液 - 液分离相比,负载离子液体相的使用大幅减少了所需离子液体的量,同时避免了乳液形成带来的问题。随后的反萃实验进一步纯化了铂族金属,最终使其从固体材料解吸到纯溶液中。最终,化学吸附polySILP的概念为铂族金属的回收提供了一种新的便捷方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e6a/7874140/b7f32736f278/sc0c07384_0001.jpg

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