Marek M, Stuchl I
Biophys Chem. 1975 Jul;3(3):241-8. doi: 10.1016/0301-4622(75)80016-0.
Nonlinear phenomena arising from the interaction of two oscillating systems of chemical reactions are studied experimentally. The system of two connected flow-through continuous stirred tank reactors (cells) with controlled exchange of reaction mixture is used. The Belousov reaction (oxidation of malonic acid by bromate in sulphuric acid with ceric/cerous ions as catalyst) served as model system. The frequency of oscillations was controlled by change of the reaction temperature. Phenomena such as synchronization of oscillations at a common frequency, synchronization at multiples of a common frequency, rhythm splitting and amplitude amplification were observed, depending on the degree of interaction and the differences in the original oscillation frequencies. Mathematical modelling of the above phenomena failed, probably due to insufficient knowledge of a kinetic model.
对由两个化学反应振荡系统相互作用产生的非线性现象进行了实验研究。使用了两个相连的流通式连续搅拌釜式反应器(单元)系统,该系统可控制反应混合物的交换。以贝洛索夫反应(在硫酸中以铈/铈离子为催化剂,溴酸盐氧化丙二酸)作为模型系统。通过改变反应温度来控制振荡频率。根据相互作用程度和原始振荡频率的差异,观察到了诸如以共同频率同步振荡、以共同频率的倍数同步振荡、节奏分裂和振幅放大等现象。对上述现象进行数学建模失败,可能是由于对动力学模型的了解不足。