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Thermal modes of heterogeneous exothermic reactions. Solid-phase interaction

机译:异构放热反应的热模式。固相相互作用

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In the present paper, the theoretical analysis of the thermal explosion critical conditions for solid state exothermic reactions was conducted. The model proposed is based on the concept of diffusion kinetics of reaction product layer formation (Ginstling-Brownstein law). The dependence of the critical temperatures on the parameters of reacting system was obtained. The parametric boundary of the thermal explosion realization and conditions of its degeneration were defined. The influence of the size of the preformed diffusion zone on the critical conditions was investigated for the solid phase heterostructures. The demarcation lines that separate the modes of solid phase exothermic reactions were defined on the parametric diagram: Todes parameter - Semenov parameter. The results of analytical calculations and numerical analysis are in satisfactory agreement. (C) 2017 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:本文对固态放热反应的热爆炸临界条件进行了理论分析。提出的模型基于反应产物层形成的扩散动力学概念(Ginstling-Brownstein定律)。得到了临界温度对反应体系参数的依赖性。定义了热爆炸实现的参数边界及其退化条件。对于固相异质结构,研究了预先形成的扩散区的尺寸对临界条件的影响。在参数图上定义了分隔固相放热反应模式的分界线:Todes参数-Semenov参数。分析计算和数值分析的结果令人满意。 (C)2017燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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