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Ultrasound-assisted solvent extraction of porous membrane packed solid samples: A new approach for extraction of target analytes from solid samples

机译:多孔膜填充固体样品的超声辅助溶剂萃取:从固体样品中提取靶分析物的新方法

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摘要

For the first time, a porous membrane-based method is proposed for the extraction of target analytes directly from the solid samples. This method involves the packing of solid sample inside a porous polypropylene membrane sheet whose edges are heat-sealed to fabricate a bag. This bag is immersed in a suitable solvent and the analytes are extracted by the application of ultrasound energy. The various factors that affect the extraction performance such as extraction solvent, ultrasonication time, and ultrasound power are suitably optimized. The scope of this extraction method is very general, it can be used for the extraction of different classes of analytes from a variety of solid samples using suitable extraction solvents. The beauty of this method lies in the fact that only the small molecules such as analytes can pass through the membrane while the interfering or complex matrix species cannot pass through the membrane bag to the extraction solvent. Previously, the solid samples were first digested/dissolved into liquid medium and then analytes were extracted by membrane-protected adsorbents involving adsorption and desorption steps. With the proposed procedure, the steps of digestion/dissolution and the adsorption of analytes onto a suitable adsorbent are eliminated. Likewise, the steps of filtration and centrifugation are not required as the solid is effectively packed inside the membrane bag. Moreover, the extraction device is low cost, portable, easy to fabricate, and simple to use in the extraction process. In this work, proof of the concept is demonstrated by the extraction of polyaromatic hydrocarbons from the soil samples using GC MS. This method provided reasonably low LODs ranging from 0.19 to 0.93 ng/mg. The intra-day accuracy and precision ranged from 87.5 to 109% and 0.8 to 5%, respectively while recoveries varied from 75.1 +/- 4.9 to 106 +/- 4.5%.
机译:首次,提出了一种基于多孔膜的方法,用于直接从固体样品提取靶分析物。该方法包括在多孔聚丙烯膜片内填充固体样品,其边缘被热封以制造袋子。将该袋子浸入合适的溶剂中,通过应用超声能量提取分析物。影响诸如提取溶剂,超声时间和超声波的提取性能的各种因素得到适当优化。这种提取方法的范围非常一般,它可以使用合适的提取溶剂来用于从各种固体样品中提取不同类别的分析物。这种方法的美丽在于,只有在干扰或复合基质物质不能通过萃取溶剂的情况下,只有诸如分析物的小分子可以通过膜。以前,首先将固体样品溶解/溶解到液体培养基中,然后通过涉及吸附和解吸步骤的膜保护吸附剂萃取分析物。利用所提出的方法,消化/溶解的步骤和分析物的吸附在合适的吸附剂上。同样,由于固体有效地填充在膜袋内,不需要过滤和离心的步骤。此外,提取装置的成本低,便携式便携,易于制造,在提取过程中使用简单。在这项工作中,通过使用GC MS从土壤样品中的多芳芳烃提取来证明该概念证明。该方法提供了合理低的腰层,范围为0.19至0.93ng / mg。在日内的准确度和精度范围为87.5至109%和0.8〜5%,而回收率在75.1 +/- 4.9至106 +/- 4.5%之间变化。

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