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Quantitative Analysis in Field-Flow Fractionation Using Ultraviolet-Visible Detectors: an Experimental Design for Absolute Measurements

机译:使用紫外-可见检测器对流分馏过程进行定量分析:绝对测量的实验设计

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摘要

In previous works, it has been shown that a standard ultraviolet-visible detection system can be used for quantitative analysis of heterogeneous systems (dispersed supermicron particles) in field-flow fractionation (FFF) by single peak area measurements. Such an analysis method was shown to require either experimental measurements (standardless analysis) or an accurate model (absolute analysis) to determine the extinction efficiency of the particulate samples. In this work, an experimental design to assess absolute analysis in FFF through prediction of particles' optical extinction is presented. Prediction derives from the semiempirical approach by van de Hulst and Walstra. Special emphasis is given to the restriction of the experimental domain of instrumental conditions within which absolute analysis is allowed. Validation by statistical analysis and a practical application to real sample recovery studies are also given.
机译:在以前的工作中,已经表明,标准的紫外可见检测系统可用于通过单峰面积测量对场流分馏(FFF)中的非均相系统(分散的超微粒子)进行定量分析。事实证明,这种分析方法需要实验测量(无标准分析)或精确模型(绝对分析)来确定颗粒样品的消光效率。在这项工作中,提出了一种通过预测粒子的光学消光来评估FFF中的绝对分析的实验设计。预测源自van de Hulst和Walstra的半经验方法。特别强调限制仪器条件的实验范围,在此范围内可以进行绝对分析。还给出了通过统计分析进行的验证以及在实际样品回收研究中的实际应用。

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