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用于检测有限样品体积水溶液中有机化合物的红外中空波导采样器的研制。

Development of an infrared hollow waveguide sampler for the detection of organic compounds in aqueous solutions with limited sample volumes.

作者信息

Yang Jyisy, Chen Pon-Yen

机构信息

Department of Chemistry, National Chung-Hsing University, Taichung, Taiwan.

出版信息

Anal Sci. 2002 May;18(5):555-60. doi: 10.2116/analsci.18.555.

Abstract

In this study, an infrared (IR) hollow waveguide sampler was developed to detect organic compounds in aqueous samples with sample volumes less than 50 microL. This sampler was prepared by coating a thin hydrophobic film inside the IR hollow waveguide. After injecting a certain amount of aqueous solution, organic compounds could be absorbed into the hydrophobic film by partitions. By removing the residual water in the hollow waveguide sampler with a nitrogen purging gas, the absorbed organic compounds could be sensed using IR radiation. To investigate the applicability of this hollow waveguide sampler in the detection of small amounts of aqueous samples, an analytical working function was developed following an examination of the parameters which influence the analytical signals. Such factors as the volume of the aqueous solution, the sample concentration, the length of the hollow waveguide, and the sensitivity of this method were investigated. Excellent agreement between the analytical and theoretical predicted values was observed. Upon examining the linear relationship between the analyte signals and the concentration, the regression coefficients were generally higher than 0.998 in the examined concentration range of 1 to 100 ppm. Under the condition that the sample volume was 300 microL and based on three-times the spectra noise level, the calculated detection limits for this method were found at around 1 ppm for the examined analytes.

摘要

在本研究中,开发了一种红外(IR)中空波导采样器,用于检测体积小于50微升的水性样品中的有机化合物。该采样器是通过在IR中空波导内部涂覆一层薄的疏水膜制备而成。注入一定量的水溶液后,有机化合物可通过分配作用被吸收到疏水膜中。通过用氮气吹扫气体去除中空波导采样器中的残留水分,利用红外辐射可检测到被吸收的有机化合物。为了研究这种中空波导采样器在检测少量水性样品中的适用性,在考察影响分析信号的参数后,开发了一种分析工作函数。研究了水溶液体积、样品浓度、中空波导长度以及该方法的灵敏度等因素。观察到分析值与理论预测值之间具有良好的一致性。在考察分析物信号与浓度之间的线性关系时,在所考察的1至100 ppm浓度范围内,回归系数一般高于0.998。在样品体积为300微升的条件下,基于三倍光谱噪声水平,该方法对所考察分析物的计算检测限约为1 ppm。

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