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THERMODYNAMICS AND FLUID-SOLID REACTION KINETICS: EFFECTS ON THE RATE AND ACTIVATION ENERGY

机译:热力学和流体固相反应动力学:对速率和活化能的影响

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摘要

The purpose of this article is to analyze critically and quantitatively the effect of chemical equilibrium on the overall rates of fluid-solid reactions. It is shown through a mathematical analysis that a reaction with a small equilibrium constant (a positive standard free energy of reaction) is more likely to be rate-controlled by pore diffusion or mass transfer than a reaction with a large equilibrium constant. The overall reaction rate of the former also tends to be slow. Furthermore, the apparent activation energy of such a reaction approaches the standard enthalpy of reaction (ΔH°), rather than the true activation energy of the chemical reaction. The Law of Additive Reaction Times developed by the author is shown to apply to equilibrium-limited fluid-solid reactions and to be useful in quantitatively analyzing the behavior of such reactions.
机译:本文的目的是严格和定量地分析化学平衡对流固反应总速率的影响。通过数学分析表明,与具有较大平衡常数的反应相比,具有较小平衡常数(反应的正标准自由能)的反应更可能通过孔扩散或传质进行速率控制。前者的总反应速率也趋于缓慢。此外,这种反应的表观活化能接近标准反应焓(ΔH°),而不是化学反应的真实活化能。作者开发的“加成反应时间定律”显示适用于平衡受限的液-固反应,并且在定量分析此类反应的行为方面很有用。

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