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水中微塑料的分析:采用新型热萃取解吸-气相色谱-质谱联用(TED-GC/MS)方法轻松处理样品。

Microplastics' analysis in water: Easy handling of samples by a new Thermal Extraction Desorption-Gas Chromatography-Mass Spectrometry (TED-GC/MS) methodology.

作者信息

Sorolla-Rosario Débora, Llorca-Porcel Julio, Pérez-Martínez Mónica, Lozano-Castelló Dolores, Bueno-López Agustín

机构信息

Labaqua, S.A. C/ Dracma 16-18 Pol., Industrial Las Atalayas, 03114, Alicante, Spain.

Labaqua, S.A. C/ Dracma 16-18 Pol., Industrial Las Atalayas, 03114, Alicante, Spain.

出版信息

Talanta. 2023 Feb 1;253:123829. doi: 10.1016/j.talanta.2022.123829. Epub 2022 Aug 27.

Abstract

Thermal Extraction-Desorption (TED) using a thermobalance coupled to a gas chromatograph (GC) with mass spectrometer (MS) detector is an extended method for polymers identification in complex matrixes. A new TED-GC/MS method for microplastics identification is developed in this study, where the whole filter with solids collected from water is thermal treated in a furnace, instead of using a small portion in a Thermogravimetric analysis (TGA) device, avoiding sample handling. Pyrolyzing the whole filter in a tubular furnace has advantages with respect to the standard procedure of using a TGA with a small crucible in TED-GC/MS. The main advantage is the easy manipulation of the sample, since the filter does not have to be manipulated to extract the sample or cut some portions, avoiding sample losses during handling and ensuring that inhomogeneity on the filter surface is not a problem. Furthermore, there are no limitations on the weight of the sample beyond the adsorbent's ability to trap decomposition compounds without becoming saturated, so high intensity signals can be obtained in order to avoid confuse signals with noise, false negatives or values so close of the quantification limit.

摘要

使用与配有质谱仪(MS)检测器的气相色谱仪(GC)联用的热重分析仪的热萃取-解吸(TED)是一种用于在复杂基质中鉴定聚合物的扩展方法。本研究开发了一种用于微塑料鉴定的新型TED-GC/MS方法,其中将从水中收集的带有固体的整个过滤器在炉中进行热处理,而不是在热重分析(TGA)装置中使用一小部分,从而避免了样品处理。在管式炉中对整个过滤器进行热解相对于在TED-GC/MS中使用带有小坩埚的TGA的标准程序具有优势。主要优点是样品易于操作,因为无需对过滤器进行操作以提取样品或切割某些部分,避免了处理过程中的样品损失,并确保过滤器表面的不均匀性不是问题。此外,除了吸附剂捕获分解化合物而不饱和的能力之外,对样品重量没有限制,因此可以获得高强度信号,以避免信号与噪声混淆、假阴性或值接近定量限。

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