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首页> 外文期刊>Journal of the Physical Society of Japan >Rate constant in far-trom-equilibrium states of a replicating system with mutually catalyzing chemicals
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Rate constant in far-trom-equilibrium states of a replicating system with mutually catalyzing chemicals

机译:具有相互催化化学物质的复制系统在远离平衡态的速率常数

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摘要

As a first step to study reaction dynamics in far-from-equilibrium open systems, we propose a stochastic protocell model in which two mutually catalyzing chemicals are replicating depending on the external flow of energy resources J. This model exhibits an Arrhenius type reaction; furthermore, it produces a non-Arrhenius reaction that exhibits a power-law reaction rate with regard to the activation energy. These dependences are explained using the dynamics of J; the asymmetric random walk of J results in the Arrhenius equation and conservation of J results in a power-law dependence. Further, we find that the discreteness of molecules results in the power change. Effects of cell divisions are also discussed in our model.
机译:作为研究远离平衡开放系统中的反应动力学的第一步,我们提出了一个随机的原始细胞模型,其中两种相互催化的化学物质根据能源J的外部流动而复制。此外,它产生非阿累尼乌斯反应,该反应在活化能方面表现出幂律反应速率。这些依赖关系用J的动力学来解释。 J的非对称随机游动导致Arrhenius方程,J的守恒导致幂律依赖性。此外,我们发现分子的离散性导致功率变化。细胞分裂的影响也在我们的模型中讨论。

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