通过生物炭涂层采样管改进样品制备:从真实水体中提取性激素的概念验证

IF 5.2 Q1 CHEMISTRY, ANALYTICAL
Petra Bianchini, Francesca Merlo, Valentina Quarta, Luca Ferrari, Chiara Milanese, Antonella Profumo, Andrea Speltini
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引用次数: 0

摘要

这项工作展示了生物炭在分析样品处理中的新应用。通过热解(550°C)橘皮废料而获得的碳质材料无需进行任何合成后处理或功能化,这种碳质材料具有全面的特征,并且很容易固定在采样管的内壁上,以便进行某种 "体内 "固相萃取(SPE)。我们测试了从自来水、湖水、河水和污水处理厂废水样品中萃取七种性类固醇(每种化合物的浓度为 0.2-5 µg L-1)作为水污染物探针的过程。吸附动力学曲线显示,样品(25 毫升)在 20 分钟的接触时间内被定量吸收,随后在纯乙醇(2 毫升,15 分钟)中被完全洗脱,这得益于吸附亲和力和洗脱难易度之间的适当平衡。在选定的条件下,回收率在 60-123 % 之间,日间精度良好(RSD 10-18 %,n=3)。在对三个单独制备的采样管进行的日间批间回收率测试中,发现总体 RSD 低于 15%,证明了其出色的重现性。该过程在滚筒式混合器上进行,可同时提取 10 个样品,提高了样品处理量。此外,可重复使用性测试表明,同一设备可在连续 10 个吸附/解吸循环中保持其效率。由两个专用软件进行的绿色评估进一步证明了这种基于生物炭的样品制备方法作为 SPE 替代方法的可持续性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Improving sample preparation by biochar-coated sampling tubes: proof-of-concept extraction of sex hormones from real waters

Improving sample preparation by biochar-coated sampling tubes: proof-of-concept extraction of sex hormones from real waters
This work showcases a novel application of biochar for analytical sample treatment. The carbonaceous material, obtained by pyrolysis of orange peel waste (550°C) without any post-synthesis treatment or functionalization, was thoroughly characterized and easily immobilized on the inner wall of sampling tubes in order to perform a sort of “in-vial” solid-phase extraction (SPE). The as-obtained device was tested for the extraction of seven sexual steroids, as probe water pollutants, from tap, lake, river water and wastewater treatment plant effluent samples spiked with 0.2-5 µg L−1 of each compound. The sorption kinetics profiles showed quantitative uptake from the sample (25 mL) in 20 min contact time, followed by complete elution in pure ethanol (2 mL, 15 min), thanks to the proper balance between sorption affinity and ease of elution. Under the selected conditions, recovery was in the range 60-123 %, with good inter-day precision (RSD 10-18 %, n=3). As evidence of the excellent reproducibility, an overall RSD below 15 % was observed from inter-day inter-batch recovery tests on three individually prepared sampling tubes. The procedure, carried out on a roller mixer, allows 10 samples to be extracted simultaneously, improving the sample throughput. Moreover, reusability tests showed that the same device maintains its efficiency for 10 consecutive sorption/desorption cycles. The greenness assessment, carried out by two dedicated software, further supported the sustainability of this biochar-based sample preparation as an alternative SPE.
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CiteScore
3.50
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