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结合尖端反应和红外热成像技术实现快速便携的焓分析。

Combining In-Tip Reaction and Infrared Thermal Imaging for Fast and Portable Enthalpimetric Analysis.

机构信息

Departamento de Tecnologia e Ciência dos Alimentos, Universidade Federal de Santa Maria, Santa Maria, RS 97105-900, Brazil.

Grupo de Pesquisa em Quimiometria - Programa de Pós-Graduação em Sistemas e Processos Industriais, Universidade de Santa Cruz do Sul, Santa Cruz do Sul, RS 96815-900, Brazil.

出版信息

Anal Chem. 2020 Nov 17;92(22):14959-14966. doi: 10.1021/acs.analchem.0c02537. Epub 2020 Oct 28.

DOI:10.1021/acs.analchem.0c02537
PMID:33112616
Abstract

In this work, the in-tip thermal infrared enthalpimetry (in-tip TIE) method is proposed for fast enthalpimetric analysis. In this method, the reactions inside the tips of a multichannel pipette were combined with temperature monitoring by an infrared camera. The filter paper was used inside the tips to retain reagents as solutions (wetted paper mode) or as solids (dried paper mode) to perform neutralization, redox, or precipitation reactions. The dried reagents inside the tips were obtained by oven drying a solution retained in the filter paper. The determination of the total acidity of the vinegar, ascorbic acid in vitamin C tablets, and chloride in soy sauces and saline inhalation solutions was performed as examples of the application of the proposed method. The agreement with reference methods ranged from 98 to 107%. The use of reagents dried inside the tip was feasible, leading to a simple aspiration of sample solution within the 12 tips of the pipette to perform a rapid analysis (1 min). Therefore, up to 720 measurements in 1 h were feasible for in-tip TIE over up to 12 measurements for the reference methods. Moreover, miniaturization reduced reagent consumption and residue generation. For example, for in-tip TIE, only 3.6 mL of residues was generated ( = 12) over 60-240 mL in reference methods ( = 3). Contrarily to other TIE methods, no microplates or stirring was required, opening possibilities for field analysis since the multichannel pipette and the infrared camera are both operated with batteries.

摘要

在这项工作中,提出了尖端热红外焓法(in-tip TIE)用于快速焓分析。在该方法中,将多通道移液器尖端内的反应与红外摄像机进行的温度监测相结合。在尖端内使用滤纸将试剂保留为溶液(润湿纸模式)或固体(干纸模式)以进行中和、氧化还原或沉淀反应。通过在滤纸上保留的溶液在烤箱中干燥来获得尖端内的干燥试剂。作为所提出方法的应用实例,测定了醋的总酸度、维生素 C 片剂中的抗坏血酸以及酱油和盐水吸入溶液中的氯。与参考方法的一致性范围为 98%至 107%。使用在尖端内干燥的试剂是可行的,只需将样品溶液吸入移液器的 12 个尖端内即可进行快速分析(1 分钟)。因此,在 1 小时内可以进行多达 720 次 in-tip TIE 测量,而参考方法的测量次数最多为 12 次。此外,微型化减少了试剂消耗和残留物生成。例如,对于 in-tip TIE,仅生成 3.6 毫升残留物(n=12),而参考方法的残留物生成量为 60-240 毫升(n=3)。与其他 TIE 方法不同,不需要微量板或搅拌,由于多通道移液器和红外摄像机都由电池操作,因此为现场分析开辟了可能性。

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