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Dispersive Solid Phase Extraction for In-Sorbent Surface Attenuated Total Reflection Infrared Detection

机译:吸收性表面衰减全反射红外检测的分散固相萃取

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The combination of dispersive solid phase extraction (DSPE) and attenuated total reflection (ATR) infrared spectroscopy is presented using the joint determination of sorbic and benzoic acids in juice samples as a model analytical problem. The dispersive extraction process allows the selective extraction of the target analytes from the sample matrix allowing their preconcentration prior to their infrared detection. The extraction efficiency is improved compared to the conventional procedures since the interaction between sorbent and analytes is favored with the stirring process. Moreover, the extracted analytes are directly determined in the sorbent. As no elution step is required, analyte dilutions and consumption of organic solvents are avoided. The proposed approach has been qualitative and quantitative studied. The hierarchical cluster analysis permits the sample classification according to the relative concentration of the analytes. The precision of the quantitative analysis was better than 6percent with analyte recoveries in the range 87-90percent. The proposed method was applied to the analysis of different commercial fruit juice samples. Finally, the main advantages and limitations of the new proposal are presented and compared with existing alternatives.
机译:以果汁样品中山梨酸和苯甲酸的联合测定为模型分析问题,提出了分散固相萃取(DSPE)和衰减全反射(ATR)红外光谱的组合。分散萃取过程允许从样品基质中选择性萃取目标分析物,从而在进行红外检测之前对其进行预浓缩。与常规方法相比,萃取效率有所提高,因为搅拌过程有利于吸附剂和分析物之间的相互作用。此外,提取的分析物直接在吸附剂中测定。由于不需要洗脱步骤,因此避免了分析物稀释和有机溶剂的消耗。所提出的方法已经进行了定性和定量研究。层次聚类分析允许根据分析物的相对浓度对样品进行分类。定量分析的精度优于6%,分析物的回收率在87%至90%之间。所提出的方法可用于分析各种商业果汁样品。最后,介绍了新提案的主要优点和局限性,并将其与现有替代方案进行了比较。

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