填料床旋转圆柱阴极生物电化学反应器电化学除镍动力学研究

Zahraa Zahraa A.kadhim, Ali H. Abbar
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引用次数: 1

摘要

研究了填料床旋转圆柱阴极生物电化学反应器对水溶液中镍的去除动力学。研究了施加电压、初始镍浓度、阴极转速和pH对反应速率常数k的影响。结果表明,无论施加何种电压,阴极沉积都是在传质控制下发生的。因此,浓度和时间之间的关系可以用一阶方程来表示。速率常数与外加电压、初始镍浓度、pH值和转速有关。它随外加电压的增加而增大,随初始浓度的增加而减小。其与外加电压的关系可拟合如下:其中ko =0.01695 min-1, -β=0.431。pH值和转速对速率常数有不同的影响。pH= 3-6时,反应速率常数增大,pH=6后反应速率常数减小。将转速从100转增加到300转,会导致速率常数的增加。然而,转速超过300转时,速率常数显著降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetics of Electrochemical Removal of Nickel using Bio-electrochemical Reactor with Packed Bed Rotating Cylinder Cathode
The kinetics of nickel removal from aqueous solutions using a bio-electrochemical reactor with a packed bed rotating cylinder cathode was investigated. The effects of applied voltage, initial nickel concentration, the rotation speed of the cathode, and pH on the reaction rate constant (k) were studied. The results showed that the cathodic deposition occurred under mass transfer control for all values of the applied voltage used in this research. Accordingly, the relationship between concentration and time can be represented by a first-order equation. The rate constant was found to be dependent on the applied voltage, initial nickel concentration, pH, and rotation speed. It was increased as the applied voltage increased and decreased as the initial concentration increased. Its relation to the applied voltage can be fitted as follows: where ko =0.01695 min-1 and -β=0.431. pH and rotation speed have two dissimilar effects on the rate constant. Increasing the pH from 3-6 leads to an increase in the rate constant, while a decrease in the rate constant beyond pH=6 has occurred. Increasing the rotation from 100 to 300 rpm results in an increase in the rate constant. However, the rate constant decreases significantly beyond a rotation speed of 300 rpm.  
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