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Effect of Tungsten on Precious Metal Extraction During Processing of Radio-Electronic Scrap

机译:钨对无线电电子废料加工过程中贵金属提取的影响

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摘要

An increase in demand for metal creates a requirement for finding new ways of supply. Toughening of ecological requirements for ore recovery necessitates ways for intensifying treatment processes with the aim of more complete extraction of economic components. In the forefront is secondary metallurgy technology making it possible to extract nonferrous and precious metals from waste. Ecological standards become an important condition for processing radio-electronic engineering scrap. Enrichment product compositions obtained from radio-electronic industry scrap are provided and results are described for melting radio-electronic scrap and dissolution of anodes prepared from this waste. The compositions of concentrates entering processing are provided. These compositions are analyzed in a Lab Center XRF-1800 x-ray fluorescence spectrometer. Anode potential measurements are given. The degree of tungsten oxidation in relation to temperature is analyzed. Kinetics of tungsten oxidation are studied and tungsten apparent oxidation activation energy is determined. It is concluded that tungsten may be a collector for gold. Tungsten oxidation is a required condition for reducing gold loss.
机译:对金属需求的增加会产生寻找新的供应方式的要求。对矿石恢复的生态要求增韧需要加强治疗过程的方法,以便更完整地提取经济部件。在最前沿是二级冶金技术,使得可以从废物中提取有色和贵金属。生态标准成为加工无线电电子工程废料的重要条件。提供了从无线电电子工业废料中获得的富集产品组合物,并针对从该废物制备的阳极溶解的熔融电子废料和溶解的结果。提供了浓缩物进入加工的组合物。在实验室中心XRF-1800 X射线荧光光谱仪中分析这些组合物。给出了阳极电位测量。分析了与温度相关的钨氧化程度。研究了钨氧化的动力学,并确定了钨表观氧化活化能。得出结论,钨可能是金的收藏家。钨氧化是减少金损失所需的条件。

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