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结合高性能薄层色谱法和与智能手机耦合的微型光谱仪-光纤探头进行原位分析:几种基质中乳糖的定量分析。

Combining high performance thin layer chromatography with minispectrometer-fiber optic probe-coupled to smartphone for in place analysis: Lactose quantification in several matrices.

机构信息

MINTOTA research group. Departament de Química Analítica, Facultat de Química, Universitat de València, Dr. Moliner 50, Valencia, Burjassot 46100, Spain.

MINTOTA research group. Departament de Química Analítica, Facultat de Química, Universitat de València, Dr. Moliner 50, Valencia, Burjassot 46100, Spain.

出版信息

J Chromatogr A. 2022 Jan 4;1661:462694. doi: 10.1016/j.chroma.2021.462694. Epub 2021 Nov 19.

Abstract

An in place colorimetric method has been proposed for estimation of the quantity of lactose in several matrix (milk, water effluents and surfaces). Analyzing the amount of this carbohydrate it can be control the product, the cleanliness of the parts of the dairy companies and it can avoid contamination of milk products produced there. This method combines the use of HPTLC for sugars separation with novel analytical devices as minispectrophotometer with fiber optic coupled to a smartphone. In order to measure the lactose a colorimetric reaction has been used. Variable volumes of samples or stock solutions were deposited in nano-silica gel layer, a mobile phase of acetonitrile:water:acetic acid was used for carbohydrate separation and a solution of thymol (0.05 g Thymol in 95 mL of EtOH and 5 mL HSO) was used for revealed the carbohydrate spot. Finally, the reflectance of samples and stock solutions were measured. The achieved limits of detection were 0.03 mg mL and 0.003 mg mL for the working concentration range and the analysis at traces level respectively.

摘要

已提出一种原位比色法,用于估计多种基质(牛奶、水废水和表面)中乳糖的含量。分析这种碳水化合物的含量可以控制产品、乳制品公司部件的清洁度,并可以避免那里生产的乳制品受到污染。该方法将 HPTLC 用于糖的分离与新型分析设备(光纤耦合至智能手机的微型分光光度计)相结合。为了测量乳糖,已经使用了比色反应。将不同体积的样品或储备溶液沉积在纳米硅胶层上,乙腈:水:乙酸的流动相用于碳水化合物的分离,而麝香草酚溶液(95 毫升乙醇和 5 毫升 HSO 中的 0.05 克麝香草酚)用于显色碳水化合物斑点。最后,测量了样品和储备溶液的反射率。在工作浓度范围内,实现的检测限分别为 0.03mg mL 和 0.003mg mL,在痕量水平下的分析分别为 0.003mg mL 和 0.003mg mL。

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