Non-isothermal Activation Kinetics

A. Arango-Restrepo, J. Rubí
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引用次数: 1

Abstract

We analyze the activation kinetics of a system immersed in a non-isothermal bath. Using mesoscopic nonequilibrium thermodynamics, we show that activation is not only driven by the affinity but also by the temperature gradient. Both thermodynamic forces play a role in the kinetics. The presence of a thermal gradient makes the detailed balance principle not fulfilled. We show that although the law of mass action holds locally, in terms of the local temperature, it is in general not valid globally, when the local values of the activation rate and the fugacity difference are replaced by their corresponding spatial averages. We analyze numerically the deviations of that global law from the actual activation kinetics as a function of the temperature gradient and the activation energy. Our analysis shows how to control the reaction rate by means of a temperature gradient.
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非等温活化动力学
我们分析了浸在非等温浴中的系统的活化动力学。利用介观非平衡热力学,我们发现活化不仅受亲和作用的驱动,还受温度梯度的驱动。这两种热力学力在动力学中都起作用。热梯度的存在使得详细的平衡原理无法实现。我们表明,虽然质量作用定律在局部温度方面成立,但当激活率和逸度差的局部值被相应的空间平均值所取代时,它通常不是全局有效的。我们用数值方法分析了该总体规律与实际活化动力学的偏差作为温度梯度和活化能的函数。我们的分析表明如何用温度梯度来控制反应速率。
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