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An Efficient Leaching of Palladium from Spent Catalysts through Oxidation with Fe(III)

机译:通过Fe(III)氧化从废催化剂中有效浸出钯

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摘要

Reclamation of spent catalysts for the efficient recovery of palladium (Pd) is gaining growing attention due to its scarcity and high supply risk. Currently Pd extraction from spent catalysts through an efficient, economical, and green method has remained a challenge. In this study, Fe3+ is utilized for leaching through oxidation of Pd in a mild condition. Before leaching, distillation was proposed to remove and recover the organics from spent catalysts. The effects of HCl concentration, Fe3+ concentration, NaCl concentration, leaching time, and temperature on the leaching efficiency of Pd were investigated to determine the optimum leaching conditions. The results show that Pd extraction and dissolution of Al2O3 increase with higher HCl concentration. The effect of NaCl on Pd leaching efficiency is significant at low acid concentration (2.0 mol/L HCl). The leaching efficiency was 99.5% for Pd under the following conditions: 2.0 mol/L HCl, 4.0 mol/L NaCl, and 0.67 mol/L Fe3+ at 80 °C for 90 min. The leaching kinetics fits best to the shrinking-core model of surface chemical reaction. The activation energy for the leaching of Pd was 47.6 kJ/mol. PdCl42− was selectively adsorbed by anion exchange resin. The filtrate containing adequate H+, Cl-, and Fe3+ was reused as leaching agent. Pd leaching efficiency was over 96% after five cycle times. This study provides an efficient process for recovery of Pd from spent catalysts.
机译:废催化剂的回收以有效回收钯(Pd)由于其稀缺性和高供应风险而受到越来越多的关注。当前,通过有效,经济和绿色的方法从废催化剂中提取钯仍然是一个挑战。在这项研究中,Fe 3 + 用于在温和条件下通过Pd的氧化进行浸出。在浸出之前,建议进行蒸馏以从废催化剂中除去并回收有机物。研究了HCl浓度,Fe 3 + 浓度,NaCl浓度,浸出时间和温度对Pd浸出效率的影响,确定了最佳浸出条件。结果表明,随着HCl浓度的增加,Pd的萃取和Al2O3的溶解度增加。在低酸浓度(2.0 mol / L HCl)下,NaCl对Pd浸出效率的影响显着。在以下条件下,Pd的浸出效率为99.5%:2.0 mol / L HCl,4.0 mol / L NaCl和0.67 mol / L Fe 3 + 在80°C下持续90分钟。浸出动力学最适合表面化学反应的收缩核模型。 Pd浸出的活化能为47.6 kJ / mol。 PdCl4 2-被阴离子交换树脂选择性吸附。含有足够的H + ,Cl -和Fe 3 + 的滤液被重新用作浸出剂。五次循环后,钯的浸出效率超过96%。这项研究提供了一种从废催化剂中回收钯的有效方法。

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