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Kinetics of high-sulphur and high-arsenic refractory gold concentrate oxidation by dilute nitric acid under mild conditions

机译:在温和条件下稀硝酸氧化高硫高砷难处理金精矿的动力学

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摘要

On one hand, high-sulphur and high-arsenic refractory gold concentrate (HGC) leads to regional ecological damage. On the other hand, it contains a lot of valuable elements. So utilization of it can bring social and environmental benefits. In this paper, the kinetics of HGC oxidation by dilute nitric acid under mild conditions was investigated. The effects of particle size (50-335 mum), reaction temperature (25-85 deg), initial acid concentration (10-30 wt. percent) and stirring speed (400-800 rpm) on the iron extraction rate (C_r) were determined. It is obvious that C_r increases with the rise of initial nitric acid concentration, reaction time and stirring speed, but decreases with the increase of particle size. Oxidation kinetics indicates that the rate of reaction is diffusion controlled. The activation energies were determined to be 10.70 kJ/ mol in the 10 percent HNO_3 and 12.25 kJ/mol in the 25 percent HNO_3.
机译:一方面,高硫高砷难处理金精矿(HGC)导致区域生态破坏。另一方面,它包含许多有价值的元素。因此,利用它可以带来社会和环境效益。本文研究了在温和条件下稀硝酸对HGC的氧化动力学。粒径(50-335微米),反应温度(25-85度),初始酸浓度(10-30重量%)和搅拌速度(400-800 rpm)对铁提取速率(C_r)的影响为决心。显然,C_r随初始硝酸浓度,反应时间和搅拌速度的增加而增加,但随着粒径的增加而降低。氧化动力学表明反应速度受扩散控制。确定在10%HNO_3中的活化能为10.70 kJ / mol,在25%HNO_3中的活化能为12.25 kJ / mol。

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