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Assess the ability of detecting low concentration analyte with near-infrared spectroscopy based on dynamic enrichment

机译:评估基于动态富集的近红外光谱技术检测低浓度分析物的能力

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摘要

The ability to detect low concentration analyte with near-infrared diffuse reflectance spectroscopy (NIRDRS) based on dynamic enrichment method has been assessed. A special design of fluidized bed enrichment device was used to enrich a large volume of analyte's dilute solution before spectrum detection, in order to improve the detection sensitivity of NIRDRS. A kinetic model, which considers the mass transfer with liquid film diffusion, has been used to characterize the adsorption process in this device. The developed model agreed with the experimental results very well in a wide range of the influent flow rate (F) and solution concentration (C_0). Based on this model, the lowest detectable concentration was estimated, at the same time the effects of liquid fluid rate and operation time on this value were also investigated. Meanwhile, a comparison between this model and the static adsorption model was made. Furthermore, a series of carbaryl aqueous solutions at different concentrations were treated with the enrichment device to verify the estimated lowest concentration. This study reveals that the specially designed fluidized bed device is able to enrich enough amount of analyte in a quite short time, and based on this dynamic adsorption model, it is possible to detect analyte in solution quantitatively at ppm-level by NIRDRS.
机译:评估了基于动态富集方法的近红外漫反射光谱(NIRDRS)检测低浓度分析物的能力。为了提高NIRDRS的检测灵敏度,采用了特殊设计的流化床富集装置来富集大量分析物的稀溶液。考虑该液膜扩散传质的动力学模型已被用来表征该装置的吸附过程。所开发的模型在进水流速(F)和溶液浓度(C_0)的宽范围内与实验结果非常吻合。在此模型的基础上,估计了最低可检测浓度,同时还研究了液体流速和操作时间对该值的影响。同时,对该模型与静态吸附模型进行了比较。此外,用浓缩设备处理了一系列不同浓度的甲萘威水溶液,以验证估计的最低浓度。这项研究表明,特别设计的流化床设备能够在很短的时间内富集足够量的分析物,并且基于此动态吸附模型,可以通过NIRDRS定量检测溶液中的分析物(ppm级)。

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