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首页> 外文期刊>Separation and Purification Technology >A systematic and comparative study of copper, nickel and cobalt-ammonia catalyzed thiosulfate processes for eco-friendly and efficient gold extraction from an oxide gold concentrate
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A systematic and comparative study of copper, nickel and cobalt-ammonia catalyzed thiosulfate processes for eco-friendly and efficient gold extraction from an oxide gold concentrate

机译:铜,镍和钴 - 氨催化硫代硫酸盐工艺的系统和对比研究,从氧化物金浓缩物中进行环保和有效的金提取

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摘要

A systematic and comparative research was performed using copper, nickel and cobalt-ammonia catalyzed thiosulfate processes for environmentally friendly and efficient gold extraction from an oxide gold concentrate. 88.3% of gold was leached by thiosulfate with conventional copper-ammonia catalysis while its thiosulfate consumption was as high as 53.6 kg/t-concentrate. Thiosulfate consumption was reduced to 26.5 and 30.6 kg/tconcentrate, and 81.2% and 90.2% of gold leaching percentages were obtained with nickel-ammonia and cobaltammonia catalyses. The electrochemical leaching mechanism combined with XPS and SEM-EDS analyses illustrated the essential reason for the differences of three catalyses in gold leaching percentage and thiosulfate consumption. For copper-ammonia catalysis, two-stage desorption was required to desorb gold from the goldloaded resin due to the co-adsorption of copper with gold while one-stage desorption was feasible for nickelammonia and cobalt-ammonia catalyses because nickel and cobalt did not co-adsorb with gold, and their gold recovery percentages were 82.4%, 98.5%, 97.7%, respectively. After 6-time cycles of barren leachate, the gold leaching and recovery percentages of copper-ammonia catalysis considerably decreased while those of nickelammonia and cobalt-ammonia catalyses only declined slightly. Thiosulfate leaching with cobalt-ammonia catalysis has the advantages of high gold leaching percentage, low thiosulfate consumption, simple desorption process, good leachate stability and recycle performance of barren leachate, and therefore it has a bright industrial application prospect.
机译:采用铜、镍和钴氨催化硫代硫酸盐工艺,对从氧化金精矿中提取环境友好且高效的金进行了系统的对比研究。常规铜氨催化硫代硫酸盐浸出金88.3%,硫代硫酸盐消耗量高达53.6kg/t精矿。硫代硫酸盐的消耗量分别降低到26.5和30.6 kg/t浓度,镍氨和钴氨催化的金浸出率分别为81.2%和90.2%。电化学浸出机理结合XPS和SEM-EDS分析阐明了三种催化剂在金浸出率和硫代硫酸盐消耗量方面存在差异的根本原因。对于铜氨催化,由于铜与金的共吸附,需要两级解吸才能从载金树脂中解吸金,而对于镍氨和钴氨催化,一级解吸是可行的,因为镍和钴不与金共吸附,其金回收率分别为82.4%、98.5%和97.7%。经过6次贫液循环后,铜氨催化的金浸出率和回收率显著降低,而镍氨和钴氨催化的金浸出率和回收率仅略有下降。钴氨催化硫代硫酸盐浸出法具有金浸出率高、硫代硫酸盐消耗低、解吸工艺简单、渗滤液稳定性好、贫渗滤液回用性能好等优点,具有广阔的工业应用前景。

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