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Mathematical modelling and optimisation of a coulometric sensor-actuator system based on three-dimensional diffusion

机译:基于三维扩散的库仑传感器-执行器系统的数学建模和优化

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摘要

A mathematical model describing the processes taking place in a measuring cell with a coulometric sensor-actuator system was developed both for the cases of titration of strong and weak protolytes. It takes into consideration the three dimensional diffusion which occurs in the volume of the measuring cell. The boundary conditions express the fact that the walls of the measuring cell are impermeable to the chemical species participating in the protolytic interactions and that a constant current is applied at the actuator electrode. The model was numerically solved by the implicit alternating-direction finite-difference method. Experimental titration of diluted solution of nitric, acetic and butyric acid and potassium hydroxide with various concentrations were performed. The good agreement between the experimental results and the predictions of the model confirmed its validity and showed that the model can be used successfully for the quantitative description of real sensor-actuator systems. On the basis of model simulations, some important guidelines for manufacturing sensor-actuator systems with optimal design with respect to their performance (e.g., high sampling rates) were formulated. The conditions under which the general three-dimensional model can be reduced to a two dimensional one for speeding up the computations were determined. They cover most of the sensor-actuator systems currently used in practice. It was shown that the one-dimensional model, used until now, failed to describe quantitatively real sensor-actuator systems and can be applied only for deriving qualitative trends.
机译:在滴定强和弱原液的情况下,开发了一个数学模型来描述在带有库仑传感器-执行器系统的测量池中发生的过程。它考虑了在测量单元的体积中发生的三维扩散。边界条件表示以下事实:测量池的壁对于参与蛋白水解相互作用的化学物质是不可渗透的,并且恒定电流施加在致动器电极上。通过隐式交替方向有限差分法对模型进行了数值求解。进行了硝酸,乙酸,丁酸和氢氧化钾不同浓度的稀释溶液的实验滴定。实验结果与模型预测值之间的良好一致性证实了该模型的有效性,并表明该模型可成功用于实际传感器-执行器系统的定量描述。在模型仿真的基础上,制定了一些重要的指导原则,以针对其性能(例如高采样率)进行优化设计来制造传感器-执行器系统。确定了可以将通用三维模型简化为二维模型以加快计算速度的条件。它们涵盖了当前实际使用的大多数传感器-执行器系统。结果表明,迄今使用的一维模型未能描述定量的真实传感器-执行器系统,只能用于推导定性趋势。

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