首页> 外文期刊>Journal of the Chinese Institute of Chemical Engineers >KINETICS OF THE CHELATED COPPER CEMENTATION ON ALUMINUM PARTICLES IN A ROTARY DRUM REACTOR
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KINETICS OF THE CHELATED COPPER CEMENTATION ON ALUMINUM PARTICLES IN A ROTARY DRUM REACTOR

机译:旋转鼓式反应器中铝颗粒上螯合铜固结的动力学

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Copper recovery from EDTA containing solutions by cementation on aluminum particles was studied in a laboratory scale rotary drum reactor. The kinetics was investigated as a function of variables such as hydrogen ion concentration (pH), aluminum charge, and EDTA concentration. The kinetic model agrees very well with the experimental data and the induction time is due to the time needed for the growth of steady state copper deposit. The specific rate constant decreases with the increase of pH independent of the presence of EDTA. The specific rate constant is proportional to aluminum charge. The presence of EDTA has dramatic influence on the reduction of cementation rate, It is found that cementation rate decreases with the increasing concentration of EDTA. The structure of deposit and then the pore diffusion should have a pronounced effect on the diffusion of copper species and the dissolution of aluminum. [References: 10]
机译:在实验室规模的转鼓反应器中研究了通过胶结在铝颗粒上从含EDTA的溶液中回收铜的方法。研究了动力学作为变量的函数,例如氢离子浓度(pH),铝电荷和EDTA浓度。动力学模型与实验数据非常吻合,感应时间是稳态铜沉积物生长所需的时间。比速率常数随着pH的增加而降低,而与EDTA的存在无关。比速率常数与铝电荷成正比。 EDTA的存在对胶结速率的降低具有显着影响,发现胶结速率随EDTA浓度的增加而降低。沉积物的结构以及随后的孔扩散应对铜种类的扩散和铝的溶解产生显着影响。 [参考:10]

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