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Recovery of palladium from spent catalyst with supercritical CO2 and chelating agent

机译:超临界二氧化碳和螯合剂从废催化剂中回收钯

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摘要

A system designed to efficiently recover palladium (Pd) from palladium-based catalysts using supercritical carbon dioxide (scCO2) and a chelating agent has been investigated. The scCO2 extraction of Pd directly from a spent Pd-based solid catalyst is reported. The scCO2 was modified with chelating agents in order to bind Pd from the solid matrix. The effects of pressure, temperature, extraction time, scCO2 density, and the type of chelating agent on the extraction efficiency of Pd were considered. Findings suggested that among the studied chelating agents of acetyl acetone (AA), tri-n-butyl phosphateitric acid complex (TBP/HNO3/H2O), and bis(2,2,4-trimethylpentyl)monothiophosphinic acid (Cyanex 302), Cyanex 302 was the best ligand for the extraction of Pd. At pressures ranging from 8 to 20 MPa and temperatures ranging from 313 to 353 K and a 10 min dynamic extraction time, Pd was successfully recovered from the solid matrix with an extraction efficiency of almost 100%. The extraction efficiencies for AA and TBP/HNO3/H2O were around 80 and 60%, respectively.
机译:已经研究了一种系统,该系统旨在使用超临界二氧化碳(scCO2)和螯合剂从钯基催化剂中有效回收钯(Pd)。据报道,直接从用过的钯基固体催化剂中用scCO2萃取钯。用螯合剂修饰scCO2,以结合固体基质中的Pd。考虑了压力,温度,萃取时间,scCO2密度和螯合剂类型对Pd萃取效率的影响。研究结果表明,在研究的乙酰丙酮(AA),磷酸三正丁酯/硝酸络合物(TBP / HNO3 / H2O)和双(2,2,4-三甲基戊基)单硫代次膦酸(Cyanex 302)螯合剂中Cyanex 302是提取Pd的最佳配体。在8至20 MPa的压力和313至353 K的温度以及10分钟的动态萃取时间下,成功从固体基质中回收Pd,萃取效率几乎为100%。 AA和TBP / HNO3 / H2O的萃取效率分别约为80%和60%。

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