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Kinetics of the Cupric Catalyzed Oxidation of Fe-II by Oxygen at High Temperature and High Pressure

机译:高温高压下氧催化铜催化Fe-II氧化的动力学

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The oxidation of Fe-II to Fe-III by oxygen in sulfate media plays an important role in the pressure leaching of copper sulfide concentrates because ferric ion is a more effective oxidant of copper sulfide minerals than oxygen. In this work, the cupric catalyzed oxidation of ferrous sulfate by oxygen at high temperature and high pressure has been investigated. The effects of the variables temperature (393 to 493 K)), sulfuric acid concentration (0.15 to 1.2 M), copper sulfate (0 to1.6x10(-2) M) and partial pressure of oxygen (343 to 1379 kPa) were studied. The presence of cupric ions in the solution greatly accelerated the rate of ferrous oxidation in the range of experimental conditions studied but the rate was not a function of the cupric concentration over 4x10(-3) M. The following empirical equation was found to accurately describe the rate of the cupric catalyzed oxidation of Fe-II by oxygen: The experimental activation energy for the cupric catalyzed ferrous oxidation was 36.5 kJ/mol while in the absence of cupric ions in the solution, the oxidation of Fe-II by oxygen proceeds through a second order model with respect to Fe-II concentration with an activation energy of 78.0 kJ/mol.
机译:在硫酸盐介质中,氧气将Fe-II氧化为Fe-III在硫化铜精矿的压力浸出中起重要作用,因为三价铁离子是硫化铜矿物比氧气更有效的氧化剂。在这项工作中,已经研究了铜在高温和高压下被氧气催化硫酸亚铁的氧化。研究了变量温度(393至493 K),硫酸浓度(0.15至1.2 M),硫酸铜(0至1.6x10(-2)M)和氧分压(343至1379 kPa)的影响。在所研究的实验条件范围内,溶液中铜离子的存在极大地促进了亚铁的氧化速率,但该速率不是4x10(-3)M上铜浓度的函数。发现以下经验方程式可以准确地描述铜对Fe-II的氧催化氧化速率:铜催化的亚铁氧化的实验活化能为36.5 kJ / mol,而在溶液中不存在铜离子的情况下,氧对Fe-II的氧化通过关于Fe-II浓度的二阶模型,其活化能为78.0 kJ / mol。

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