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Discrimination of the glucose and the white sugar based on the pulsed laser-induced photoacoustic technique

机译:基于脉冲激光诱导的光声技术区分葡萄糖和白糖

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In this study, to discriminate the glucose and the white sugar gradient in the food, a noninvasive optical detection system based on pulsed laser-induced photoacoustic technique was developed. Meanwhile, the Nd: YAG 532nm pumped OPO pulsed laser was used as the excitation light source to generate of the photoacoustic signals of the glucose and white sugar. The focused ultrasonic transducer with central detection frequency of 1MHz was used to capture the photoacoustic signals. In experiments, the real-time photoacoustic signals of the glucose and the white sugar aqueous solutions were gotten and compared with each other. In addition, to discriminate the difference of the characteristic photoacoustic signals between both of them, the difference spectrum and the first order derivative technique between the peak-to-peak photoacoustic signals of the water and that of the glucose and white sugar were employed. The difference characteristic photoacoustic wavelengths between the glucose and the white sugar were found based on the established photoacoustic detection system. This study provides the potential possibility for the discrimination of the glucose and the white sugar by using the photoacoustic detection method.
机译:在这项研究中,为了区分食物中的葡萄糖和白糖梯度,开发了一种基于脉冲激光诱导的光声技术的无创光学检测系统。同时,将Nd:YAG 532nm抽运的OPO脉冲激光用作激发光源,以产生葡萄糖和白糖的光声信号。中心检测频率为1MHz的聚焦超声换能器用于捕获光声信号。在实验中,获得了葡萄糖和白糖水溶液的实时光声信号并进行了比较。另外,为了区分它们之间的特征性光声信号的差异,采用了水与葡萄糖和白糖的峰-峰光声信号之间的差异谱和一阶导数技术。基于已建立的光声检测系统,发现葡萄糖和白糖之间的特征光声波长差异。这项研究为通过使用光声检测方法鉴别葡萄糖和白糖提供了潜在的可能性。

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