首页> 外文期刊>Bulletin of the Korean Chemical Society >Bifurcation Phase Studies of Belousov-Zhabotinsky Reaction Containing Oxalic Acid and Acetone as a Mixed Organic Substrate in an Open System
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Bifurcation Phase Studies of Belousov-Zhabotinsky Reaction Containing Oxalic Acid and Acetone as a Mixed Organic Substrate in an Open System

机译:含有草酸和丙酮作为开放系统混合有机基质的Belousov-Zhabotinsky反应的分叉阶段研究

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Belousov-Zhabotinsky (BZ) reaction containing oxalic acid and acetone as a mixed organic substrate catalyzed by Ce(IV) in a flow system has been investigated. The reaction system is analyzed by varying flow rate, inflow concentrations, and temperature. Interchangeable oscillating patterns are observed in a certain range of concentrations, and above or below the condition a steady state is obtained. The increase in temperature increases the frequency and decreases the amplitude of oscillations. The apparent activation energy for the system is calculated by using the Arrhenius equation, which means that temperature has a greater effect on the reaction. Bifurcation phase diagrams for the system show the region of oscillations or steady states along with a small region of multistability. Further the behavioral trend observed in this system is discussed by mechanistic character of the system.
机译:研究了含有草酸和丙酮作为通过CE(IV)在流动系统中催化的混合有机基质的Beloupov-Zhabotinsky(BZ)反应。通过不同的流速,流入浓度和温度分析反应体系。在一定的浓度范围内观察到可互换的振荡图案,并且在获得稳定状态的情况下方或低于条件的上方或低于。温度的增加会增加频率并降低振荡的振幅。通过使用Arrhenius方程计算系统的表观激活能量,这意味着温度对反应具有更大的影响。系统的分叉阶段图显示了振荡或稳态的区域以及小区域。此外,通过系统的机械特征讨论了该系统中观察到的行为趋势。

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