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Mg(OH)2热分解反应的非等温动力学研究
引用本文:岳林海,金达莱,吕德义,徐铸德.Mg(OH)2热分解反应的非等温动力学研究[J].物理化学学报,2005,21(7):752-757.
作者姓名:岳林海  金达莱  吕德义  徐铸德
作者单位:Department of Chemistry, Zhejiang University, Hangzhou 310027; College of Chemical Engineering and Materials Science, Zhejiang Industrial University, Hangzhou 310014
摘    要:用非等温动力学方法对氢氧化镁的热分解动力学进行了研究. 分解反应机理符合晶核形成及生长机理A,且随着升温速率的升高,机理由A2转变为A1.5. 根据Kissinger非机理方程计算和数值回归方法验证所得的分解反应活化能结果相互印证,约为148 kJ?mol-1. 进一步研究发现,水蒸气的存在对氢氧化镁热分解反应具有非常明显的影响,可能是其动力学机理随升温速率升高而改变的主要影响因素.

关 键 词:氢氧化镁  热分解  非等温动力学  
收稿时间:2004-12-20
修稿时间:2004年12月20

The Non-isothermal Kinetic Analysis of Thermal Decomposition of Mg(OH)2
YUE Lin-hai,JIN Da-Lai,L De-Yi,XU Zhu-de.The Non-isothermal Kinetic Analysis of Thermal Decomposition of Mg(OH)2[J].Acta Physico-Chimica Sinica,2005,21(7):752-757.
Authors:YUE Lin-hai  JIN Da-Lai  L De-Yi  XU Zhu-de
Institution:Department of Chemistry, Zhejiang University, Hangzhou 310027; College of Chemical Engineering and Materials Science, Zhejiang Industrial University, Hangzhou 310014
Abstract:The thermal decomposition kinetics of magnesium hydroxide was investigated using the non-isothermal approach. It was proved that the mechanism of this reaction corresponded to the nucleation and growth mechanism A, but changed from A2 to A15with rising heating rate. The activation energy of decomposition, both estimated by the non-mechanismic Kinssinger equation and calculated by a numerical regression method according to the deduced effect on the thermal decomposition mechanism of magnesium hydroxide.
Keywords:Magnesium hydroxide  Thermal decomposition  Non-isothermal kinetics  
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