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Fiber-Optic Evaporation Sensing: Monitoring Environmental Conditions and Urinalysis

机译:光纤蒸发传感:监测环境条件和尿液分析

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摘要

The evaporation dynamics of subnanoliter chained droplets from the cleaved facet of a standard fiber are monitored by reflectivity measurements of incident light. The rate of evaporation of doubly distilled water droplets is calibrated as a function of temperature and relative humidity (RH). The experimental uncertainty in the rate of evaporation corresponds to measurement errors of ±0.5 °C in temperature or ±1.5% in RH. The evaporation analysis distinguishes between binary mixtures of gasoline and methanol, used as alternative fuel blends, with mixing ratios that differ by 5%. Finally, the analysis properly estimates the concentration of synthetic samples, designed to replicate human urine. Knowledge of sample concentration is central to the correct interpretation of urinary sodium measurements and to provide accurate estimates of sodium intake by hypertension patients. This last result may form the basis for a potential consumer application of the sensor, in mobile point-of-care diagnostics.
机译:通过入射光的反射率测量,可以监测亚纳升链状液滴从标准纤维切割面的蒸发动力学。根据温度和相对湿度(RH)校准双蒸馏水滴的蒸发速率。蒸发速率的实验不确定性对应于温度为±0.5°C或相对湿度为±1.5%的测量误差。蒸发分析可区分用作替代燃料混合物的汽油和甲醇的二元混合物,混合比例相差5%。最后,分析可正确估算旨在复制人尿的合成样品的浓度。样品浓度的知识对于正确解释尿钠测量值以及提供高血压患者钠摄入量的准确估算至关重要。最后的结果可以为移动即时诊断中传感器潜在的消费者应用奠定基础。

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