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Preparation and Thermal Decomposition of MgSO4·5Mg(OH)2·2H2O

机译:MgSO4·5Mg(OH)2·2H2O的制备及热分解

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Magnesium hydroxide sulfate hydrate (MHSH) whisker was prepared using bitter, ammonia and magnesium sulfate heptahydrate as raw materials by hydrothermal synthesis in autoclave. X-ray powder diffraction (XRD), transmission electron microscopy (TEM) and differential thermal analysis- thermal gravity analysis (DTA -TG) were employed to characterize the structural features and composition of the MHSH samples. The thermal decomposition kinetics of the whisker was studied by thermogravimetric(TG) using the non-isothermal approach. The kinetic mechanism of thermal decomposition kinetics of MHSH whisker was studied using Satava method. The proposed models for thermal decomposition of the sample for the three stages are Avrami-Erofeev model function(n=2) of nucleus formation and growth A2 with integral form 2 / 1 )] 1 ln( [ ) (|á |á --=G , branching nuclei model Au with integral form )] 1 /( ln[ ) (|á |á |á -=G and nucleation model P1/2 with integral form 2 / 1 ) (|á |á =G respectively. The values of kinetic parameters, viz., the apparent activation energy (Ea), the pre-exponential factor (A) and the reaction order (n) had been evaluated by using the Kissinger equation to deal with the date of thermal gravimetric analysis.
机译:以苦,氨和七水合硫酸镁为原料,在高压釜中进行水热合成,制备了氢氧化镁水合晶须。 X射线粉末衍射(XRD),透射电子显微镜(TEM)和差热分析-热重分析(DTA -TG)被用来表征MHSH样品的结构特征和组成。使用非等温方法通过热重法(TG)研究了晶须的热分解动力学。利用Satava方法研究了MHSH晶须的热分解动力学。提议的三个阶段的样品热分解模型是原子形成和生长A2的Avrami-Erofeev模型函数(n = 2),其积分形式为2/1)] 1 ln([)(|á|á- = G,具有整数形式的分支核模型Au)] 1 /(ln [)(|á|á|á-= G和具有整数形式2/1的成核模型P1 / 2)(|á|á= G。动力学参数的值,即表观活化能(Ea),前指数因子(A)和反应阶数(n)已通过使用基辛格方程式进行了重量热分析的日期的评估。

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