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Reduction of the Measurement Time by the Prediction of the Steady-State Response for Quartz Crystal Microbalance Gas Sensors

机译:通过预测石英微天平气体传感器的稳态响应来减少测量时间

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摘要

This paper presents a new approach to reduce the measurement time by the prediction of the steady-state using the transient response to ethanol for quartz crystal microbalance gas sensors coated with ethyl cellulose. The experimentally measured response curves were successively fitted using a mathematical model based on the sum of two exponentials with different time constants. The parameters of the model were determined, and the time constants and the magnitude of the steady-state response were analyzed. Even though the time constants did not stabilize well, the parameter corresponding to the magnitude of the steady-state response quickly converged and stabilized after 37 s. Moreover, this calculated parameter was highly correlated with the measured values of the steady-state response, which was measured at five times the longest time constant (83 s) of the model. Therefore, the steady-state response could be predicted with a 55% reduction in the measurement (detection) time.
机译:本文提出了一种新的方法,通过使用乙醇对涂有乙基纤维素的石英晶体微天平气体传感器的乙醇瞬态响应进行稳态预测,从而减少了测量时间。使用数学模型,基于具有不同时间常数的两个指数之和,依次拟合实验测得的响应曲线。确定了模型的参数,并分析了时间常数和稳态响应的大小。即使时间常数不能很好地稳定下来,但与稳态响应的大小相对应的参数在37 s后仍迅速收敛并稳定下来。此外,此计算出的参数与稳态响应的测量值高度相关,该稳态响应的测量值是模型最长时间常数(83 s)的五倍。因此,可以将测量(检测)时间减少55%来预测稳态响应。

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