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绿色策略在微流控装置中使用无溶剂可生物降解膜。液相微萃取和电膜萃取。

Green strategies using solvent-free biodegradable membranes in microfluidic devices. Liquid phase microextraction and electromembrane extraction.

机构信息

Department of Analytical Chemistry, Faculty of Chemistry, University of Seville, C/Prof. García González s/n, 41012, Seville, Spain.

Department of Analytical Chemistry, Faculty of Chemistry, University of Seville, C/Prof. García González s/n, 41012, Seville, Spain.

出版信息

Anal Chim Acta. 2023 Sep 15;1274:341572. doi: 10.1016/j.aca.2023.341572. Epub 2023 Jun 28.

Abstract

In this work, a novel solvent-free microfluidic method based liquid phase microextraction has been proposed for the first time. A comprehensive study of liquid phase microextraction (LPME) and electromembrane extraction (EME) implemented in microfluidic formats has been carried out to investigate the efficiency of biodegradable membranes (such as agarose) without organic solvent to develop fully environmental microfluidic methods. For this study, non-polar and polar basic compounds (five) were selected as model analytes and different agarose membrane compositions were synthesized and tested with and without organic solvent (solvent-free). Under optimal experimental conditions, the extraction efficiencies obtained using solvent-free LPME-chip devices were similar to the ones obtained using solvent-free EME-chip devices at very low voltages (0.25 V), however, LPME microfluidic format was selected due to its simplicity. The proposed green microfluidic device was successfully applied in urine samples with recoveries between 80 and 93% for all analytes and relative standard deviation below 7% for all analytes. Results were compared with experiments previously conducted using conventional (polypropylene) membranes, observing that solvent-free microfluidic systems based on biodegradable solid support materials have proven to be an attractive alternative and offered the same advantages in terms of membrane stability allowing consecutive extractions compared to supported liquid membranes (SLM) microfluidic methods.

摘要

在这项工作中,首次提出了一种基于无溶剂微流控的新型溶剂微萃取方法。对微流控格式中的液相微萃取(LPME)和电膜萃取(EME)进行了全面研究,以研究无有机溶剂的可生物降解膜(如琼脂糖)的效率,从而开发完全环保的微流控方法。在这项研究中,选择了非极性和极性碱性化合物(五种)作为模型分析物,并合成了不同的琼脂糖膜成分,并在有无有机溶剂(无溶剂)的情况下进行了测试。在最佳实验条件下,使用无溶剂 LPME 芯片装置获得的萃取效率与在非常低的电压(0.25 V)下使用无溶剂 EME 芯片装置获得的萃取效率相似,但是由于其简单性,选择了 LPME 微流控格式。所提出的绿色微流控装置成功地应用于尿液样品中,所有分析物的回收率在 80%至 93%之间,所有分析物的相对标准偏差均低于 7%。结果与先前使用常规(聚丙烯)膜进行的实验进行了比较,观察到基于可生物降解固体支撑材料的无溶剂微流控系统已被证明是一种有吸引力的替代方案,与支撑液膜(SLM)微流控方法相比,在膜稳定性方面具有相同的优势,允许连续萃取。

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