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Study of on-line monitoring of lactate based on optical fibre sensor and in-channel mixing mechanism

机译:基于光纤传感器和通道内混合机制的乳酸在线监测研究

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摘要

A PDMS-based microfluidic device with integrated optical fibres was developed for online monitoring of lactate. The detection is based on the optical adsorption of the colour solution formed by in-channel mixing of sample and reagent solutions. Computational Fluid Dynamics (CFD) simulation and kinetic study of the colour development were conducted to determine the minimum channel length and optimum residential time for homogenous mixing and maximum optical adsorption respectively. The system was proved to be able to detect lactate with good linearity (R~2 = 0.98), response time of about 130 s and estimated limitation of detection (LOD) of 0.52 mM (about 47 mg/L), which is sufficient for a general online lactate detection. Due to the miniaturization of sensing system and micro-scale mixing, higher detection sensitivity (0.15 V/mM) can be realized than the mixing in lab-scale equipments (0.08 V/mM).
机译:开发了基于PDMS的集成了光纤的微流控设备,用于在线监测乳酸。该检测基于通过样品和试剂溶液的通道内混合形成的色溶液的光学吸附。进行了计算流体动力学(CFD)模拟和显色动力学研究,分别确定了均匀混合和最大光学吸附的最小通道长度和最佳停留时间。事实证明,该系统能够检测线性良好的乳酸(R〜2 = 0.98),响应时间约为130 s,估计检测限(LOD)为0.52 mM(约47 mg / L),足以满足一般的在线乳酸检测。由于传感系统的小型化和微型混合,与实验室规模的设备混合(0.08 V / mM)相比,可以实现更高的检测灵敏度(0.15 V / mM)。

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