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超声作用下FeO-2 4在不同浓度NaOH溶液中的分解动力学
引用本文:许文林,孟蒹蒹,王雅琼. 超声作用下FeO-2 4在不同浓度NaOH溶液中的分解动力学[J]. 化工学报, 2007, 58(6): 1461-1465
作者姓名:许文林  孟蒹蒹  王雅琼
作者单位:扬州大学化学化工学院
基金项目:国家自然科学基金项目(20476087,20176047,20576111).
摘    要:采用分光光度法研究了静止条件和超声作用(500W, 25kHz)下FeO42-在7.0 mol•L-1、10.0 mol•L-1和14.0 mol•L-1 NaOH溶液中的均相分解反应,分别测定了不同浓度NaOH溶液中FeO42-的浓度随反应时间的变化。实验结果表明,在不同浓度的NaOH溶液中,无论是否有超声作用,FeO42-的分解均满足一级反应动力学规律。无超声作用时,在7.0 mol•L-1、10.0 mol•L-1、14.0 mol•L-1 NaOH溶液中,FeO42-的分解反应活化能分别为52.4 kJ•mol-1、70.5 kJ•mol-1和91.5 kJ•mol-1;在有超声作用下,活化能则分别为49.6 kJ•mol-1、66.6 kJ•mol-1和85.9 kJ•mol-1。有超声作用时FeO42-的分解反应速率高于静止条件的分解反应速率。随着NaOH溶液浓度的增加,FeO42-分解反应的活化能增大,即在较高浓度的NaOH溶液中FeO42 -分解反应较慢。

关 键 词:高铁酸盐  超声  分解反应  反应动力学  
文章编号:0438-1157(2007)06-1461-05
收稿时间:2006-05-16
修稿时间:2006-05-162007-02-02

Decomposition kineticsof FeO-24 in various concentrations of NaOH solutions under ultrasonic action
XU Wenlin,MENG Jianjian,WANG Yaqion. Decomposition kineticsof FeO-24 in various concentrations of NaOH solutions under ultrasonic action[J]. Journal of Chemical Industry and Engineering(China), 2007, 58(6): 1461-1465
Authors:XU Wenlin  MENG Jianjian  WANG Yaqion
Affiliation:School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou 225002, Jiangsu, China
Abstract:The decomposition kinetics of FeO-24 in the aqueous NaOH solutions of 7.0 mol·L-1, 10.0 mol·L-1 and 14.0 mol·L-1 were determined by spectrophotometry with and without ultrasonic action at 500 W and 25 kHz.The results showed that the decomposition followed first-order kinetics and the rate was faster with ultrasonic action than without ultrasonic action.The decomposition activation energies were 52.4 kJ·mol-1, 70.5 kJ·mol-1 and 91.5 kJ·mol-1 without ultrasonic action, and 49.6 kJ·mol-1, 66.6 kJ·mol-1 and 85.9 kJ·mol-1 with ultrasonic action, in the aqueous NaOH solutions of 7.0 mol·L-1, 10.0 mol·L-1 and 14.0 mol·L-1respectively.The fact that the activation energies increased with increasing concentrations of NaOH indicated that FeO-4 was much stable in a higher concentration NaOH solution.The effect of ultrasound on the decomposition kinetics of FeO-24 decreased with operating temperature.
Keywords:ferrate   ultrasound   decomposition reaction   kinetics
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