首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Kinetic Modeling for Thermal Dehydration of Ferrous Oxalate Dihydrate Polymorphs: A Combined Model for Induction Period- Surface Reaction-Phase Boundary Reaction
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Kinetic Modeling for Thermal Dehydration of Ferrous Oxalate Dihydrate Polymorphs: A Combined Model for Induction Period- Surface Reaction-Phase Boundary Reaction

机译:草酸亚铁二水合物多晶型物热脱水的动力学模型:诱导周期-表面反应-相边界反应的组合模型

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摘要

In this study, ferrous oxalate dihydrate polymorph particles, α- and β- phases, with square bipyramidal and quadratic prismatic shapes, respectively, were synthesized. Thermal dehydration of the samples was subjected to kinetic study as a typical reaction that indicates a significant induction period and a sigmoidal mass-loss behavior. On the basis of the formal kinetic analysis of the mass-loss traces recorded under isothermal, nonisothermal, and constant transformation rate conditions and the morphological observations of the surface textures of the partially reacted sample particles, a combined kinetic model for the induction period-surface reaction-phase boundary reaction was developed. The sigmoidal mass-loss behavior after the significant induction period under isothermal conditions was satisfactorily simulated by the combined kinetic model. The kinetic parameters for the component processes of induction period, surface reaction, and phase boundary reaction were separately determined from the kinetic simulation. The differences in the kinetic behaviors of the induction period and the phase boundary reaction between α- and β-phase samples were well described by the kinetic parameters. The applicability of the combined kinetic model to practical systems was demonstrated through characterizing the physicogeometrical kinetics of the thermal dehydration of ferrous oxalate dihydrate polymorphs.
机译:在这项研究中,合成了草酸亚铁二水合物多晶型物颗粒,α-相和β-相,分别具有方形双锥体和二次棱柱形。对样品的热脱水进行动力学研究,作为典型的反应,表明存在明显的诱导期和S形质量损失行为。根据在等温,非等温和恒定转化率条件下记录的质量损失痕迹的形式动力学分析以及部分反应样品颗粒表面纹理的形态学观察,得出了诱导期-表面的组合动力学模型反应相边界反应的发展。通过组合动力学模型令人满意地模拟了等温条件下显着诱导期后的S形质量损失行为。从动力学模拟分别确定了诱导期,表面反应和相边界反应的组成过程的动力学参数。动力学参数很好地描述了诱导期动力学行为的差异以及α相和β相样品之间的相界反应。通过表征草酸亚铁二水合物多晶型物热脱水的物理几何动力学,证明了组合动力学模型对实际系统的适用性。

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