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Highly selective extraction of platinum group metals with silica-based (poly)amine ion exchangers applied to industrial metal refinery effluents

机译:使用二氧化硅基(聚)胺离子交换剂选择性萃取铂族金属,用于工业金属精炼厂废水

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摘要

Batches of authentic industrial base metal refinery (BMR) and precious metal refinery (PMR) effluents containing large amounts of Ni, Cu and Fe ions and relatively small amounts of the valuable Pt, Pd and Rh metal ions have been treated with silica based (poly)amine anion exchangers. In most eases, notably with the PMR effluents, the extraction of Pt and Pd appeared to be very effective, with recuperation of more than 95 percent from some of the effluents, while an increase in temperature was not necessary to obtain maximum metal ion uptake. Successive Rh extraction from the BMR effluents resulted in a maximum removal of 22 percent of the metal ions initially present. A higher percentage could not be reached apparently due to the presence of large amounts of competing sulphate and chloride counter ions. The removal of Rh from PMR effluents containing smaller amounts of other transition metal ions was somewhat more effective. Despite the large amounts of Ni, Cu and Fe in many of the tested effluents, no uptake of any of these metal ions has been observed. The platinum group metal (PGM) selectivity of these ion exchangers over the other transition metals has thus proven to be very high.
机译:批量处理的正宗工业贱金属精炼厂(BMR)和贵金属精炼厂(PMR)废水中含有大量的Ni,Cu和Fe离子以及相对少量的有价值的Pt,Pd和Rh金属离子已经用二氧化硅处理过(胺阴离子交换剂。在大多数情况下,特别是在PMR废水中,Pt和Pd的萃取似乎非常有效,其中某些废水的回热率超过95%,而不必为了获得最大的金属离子吸收而升高温度。从BMR废水中连续提取Rh导致最大去除了最初存在的22%的金属离子。由于存在大量竞争性硫酸根和氯离子抗衡离子,显然无法达到较高的百分比。从含有少量其他过渡金属离子的PMR废水中去除Rh更为有效。尽管许多测试废水中含有大量的Ni,Cu和Fe,但未观察到任何这些金属离子的吸收。因此,已证明这些离子交换剂对其他过渡金属的铂族金属(PGM)选择性非常高。

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