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The effect of temperature on the dynamics of a homogeneous oscillatory system operated in batch and under flow

机译:温度对批次及流量运行的均相振荡系统动力学的影响

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The effect of temperature on a network of chemical reactions is not obvious, especially when compared to the effect exerted on elementary steps. There are few reports regarding the estimation of parameters such as activation energies for oscillating chemical systems. Still less investigated is the importance of the relative distance from thermodynamic equilibrium on the way in which temperature influences the oscillators' dynamics – a crucial aspect for the understanding of chemical and bio-chemical oscillating networks. In this paper we use the bromate–oxalic acid–acetone–cerium oscillatory system to study the influence of temperature under close and far-from-equilibrium regimes. The research was carried out under identical conditions for batch and flow (in a continuous flow stirred tank reactor, CSTR) regimes, and the main oscillation features were preserved, so that it was possible to isolate the effect of flow. Overall, increasing the flow results in an increase of the oscillatory frequency. The apparent oscillatory activation energy was found to decrease from 72 ± 6 kJ mol ~(?1) , for the system operated in batch, to 50 ± 2 kJ mol ~(?1) , under the flow regime. The role of the distance from the thermodynamic equilibrium on the temperature dependence is generalized and discussed in connection with other systems. Numerical simulations using the Brusselator model under batch and flow regimes further helped the discussion of the main experimental results.
机译:温度对化学反应网络的影响是不明显的,特别是与基本步骤施加的效果相比。关于估计用于振荡化学系统的激活能量的参数估计很少有报道。仍然较少研究是对热力平衡的相对距离对温度影响振荡器动态的方式的重要性 - 了解化学和生物化学振荡网络的关键方面。在本文中,我们使用溴酸草酸 - 丙酮 - 铈振荡系统来研究在近距离和远离均衡制度下的温度的影响。该研究在批量和流动的相同条件下进行(在连续流搅拌釜反应器,CSTR)制度下,并保存了主振荡特征,因此可以隔离流动的效果。总的来说,增加流量导致振荡频率的增加。表观振荡激活能量被发现从72±6 kJ摩尔〜(?1)减少,为分批操作的系统,在流动状态下,50±2kJ mol〜(?1)。从热力学平衡对温度依赖性的距离的作用是广泛的,并与其他系统结合讨论。使用Brusselator模型在批量和流动方案下的数值模拟进一步帮助了对主要实验结果的讨论。

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