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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >A critical evaluation of a long pathlength cell for flow-based spectrophotometric measurements
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A critical evaluation of a long pathlength cell for flow-based spectrophotometric measurements

机译:对基于流的分光光度法测量长光程池的关键评估

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Coupling of a flow cell based on a liquid core waveguide (LCW) to flow systems for spectro photometric measurements was critically evaluated. Flow-based systems with and without chemical reactions were exploited to estimate the increase in analytical signal in comparison to those obtained with a conventional I cm cell under different experimental conditions. The Schlieren effect associated to intense concentration gradients in the sample zone was investigated with model solutions that do not absorb visible electromagnetic radiation. The effect of radiation scattering was lower than the expected by considering the increase in the optical path, being the magnitude of the perturbation up to 40% higher for the 100-cm LCW cell. Several alternatives for compensation of the Schlieren effect were experimentally investigated. The potentiality of the LCW for turbidimetric measurements and coupling to monosegmented flow analysis was also evaluated. (C) 2008 Elsevier B.V. All rights reserved.
机译:严格评估了基于液芯波导(LCW)的流通池与用于分光光度测量的流通系统的耦合。与在不同实验条件下使用常规I cm电池获得的系统相比,利用有和没有化学反应的基于流动的系统来估计分析信号的增加。用不吸收可见电磁辐射的模型溶液研究了与样品区中浓浓度梯度相关的席列林效应。考虑到光路的增加,辐射散射的影响比预期的要低,这是100厘米LCW电池的扰动幅度高出40%。实验研究了补偿Schlieren效应的几种方法。还评估了LCW用于比浊测量和耦合到单段流量分析的潜力。 (C)2008 Elsevier B.V.保留所有权利。

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