School of Chemistry, University of Birmingham, Edgbaston, Birmingham, UK.
Phys Chem Chem Phys. 2011 Jul 14;13(26):12321-7. doi: 10.1039/c1cp21096c. Epub 2011 Jun 3.
The low frequency forcing of chemical oscillations by temperature is investigated experimentally in the Belousov-Zhabotinsky (BZ) reaction and in simulations of the Oregonator model with Arrhenius temperature dependence of the rate constants. Forcing with temperature leads to modulation of the chemical frequency. The number of response cycles per forcing cycle is given by the ratio of the natural frequency to the forcing frequency and phase locking is only observed in simulations when this ratio is a whole number and the forcing amplitude is small. The global temperature forcing of flow-distributed oscillations in a tubular reactor is also investigated and synchronisation is observed in the variation of band position with the external signal, reflecting the periodic modulation of chemical oscillations by temperature.
实验研究了温度对化学振荡的低频强迫作用,在 Belousov-Zhabotinsky (BZ) 反应和 Arrhenius 速率常数温度依赖性的 Oregonator 模型的模拟中都进行了研究。温度强迫导致化学频率的调制。每个强迫周期的响应周期数由自然频率与强迫频率的比值给出,只有当该比值为整数且强迫幅度较小时,才会观察到相位锁定。还研究了管状反应器中流动分布振荡的全局温度强迫,并且在外信号作用下观察到带宽位置的同步变化,这反映了温度对化学振荡的周期性调制。