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Development and Validation of a New Near-Infrared Sensor to Measure Polyethylene Glycol (PEG) Concentration in Water

机译:新型近红外传感器的开发和验证该传感器可测量水中的聚乙二醇(PEG)浓度

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摘要

A near-infrared absorption based laser sensor has been designed and validated for the real-time measurement of polyethylene glycol (PEG) concentration. The wavelength was selected after the determination of the absorption spectrum of deionised water and PEG solutions using a Varian Cary 6000i spectrophotometer, in order to limit the influence of PEG molecular mass on the absorption measurement. With this new sensor, the water is treated as the attenuating species and the addition of PEG in water reduces the absorbance of the medium. The concept was validated using three different PEG types (PEG 6000, 20,000, and 35,000) and it was found that the results follow Beer Lambert’s law. The influence of temperature was assessed by testing the PEG 20,000 at four different temperatures that could be encountered in a laboratory environment. The data show a slight temperature influence (increase of absorbance by 8% when the temperature rises from about 20° to about 29°). Following the validation phase conducted ex situ, a prototype of an immersible sensor was built and calibrated for in situ measurements.
机译:已经设计并验证了一种基于近红外吸收的激光传感器,用于实时测量聚乙二醇(PEG)的浓度。在使用Varian Cary 6000i分光光度计测定去离子水和PEG溶液的吸收光谱后,选择波长,以限制PEG分子量对吸收测量的影响。使用这种新的传感器,水被视为衰减物质,水中加入PEG会降低介质的吸收率。该概念已使用三种不同的PEG类型(PEG 6000、20,000和35,000)进行了验证,并且发现结果遵循比尔·兰伯特定律。通过在实验室环境中可能遇到的四个不同温度下测试PEG 20,000来评估温度的影响。数据显示出轻微的温度影响(当温度从约20°升至约29°时,吸光度增加8%)。在现场进行验证阶段之后,构建了可浸入式传感器的原型,并对其进行了校准以用于现场测量。

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