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Matrix effect on the performance of headspace solid phase microextraction method for the analysis of target volatile organic compounds (VOCs) in environmental samples

机译:基质对顶空固相微萃取方法对环境样品中目标挥发性有机化合物(VOC)的分析性能的影响

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摘要

Solid phase microextraction (SPME) is a fast, cheap and solvent free methodology widely used for environmental analysis. A SPME methodology has been optimized for the analysis of VOCs in a range of matrices covering different soils of varying textures, organic matrices from manures and composts from different origins, and biochars. The performance of the technique was compared for the different matrices spiked with a multicomponent VOC mixture, selected to cover different VOC groups of environmental relevance (ketone, terpene, alcohol, aliphatic hydrocarbons and alkylbenzenes). VOC recovery was dependent on the nature itself of the VOC and the matrix characteristics. The SPME analysis of non-polar compounds, such as alkylbenzenes, terpenes and aliphatic hydrocarbons, was markedly affected by the type of matrix as a consequence of the competition for the adsorption sites in the SPME fiber. These non-polar compounds were strongly retained in the biochar surfaces limiting the use of SPME for this type of matrices. However, this adsorption capacity was not evident when biochar had undergone a weathering/aging process through composting. Polar compounds (alcohol and ketone) showed a similar behavior in all matrices, as a consequence of the hydrophilic characteristics, affected by water content in the matrix. SPME showed a good performance for soils and organic matrices especially for non-polar compounds, achieving a limit of detection (LD) and limit of quantification (LQ) of 0.02 and 0.03 ng g~(-1) for non-polar compounds and poor extraction for more hydrophilic and polar compounds (LD and LQ higher 310 and 490 ng g~(-1)). The characteristics of the matrix, especially pH and organic matter, had a marked impact on SPME, due to the competition of the analytes for active sites in the fiber, but VOC bio-degradation should not be discarded in matrices with active microbial biomass.
机译:固相微萃取(SPME)是一种快速,廉价且无溶剂的方法,广泛用于环境分析。已对SPME方法进行了优化,以分析各种基质中的VOC,这些基质涵盖质地不同的不同土壤,粪便中的有机基质和不同来源的堆肥以及生物炭。比较了掺有多组分VOC混合物的不同基质的技术性能,选择该混合物以涵盖与环境相关的不同VOC组(酮,萜烯,醇,脂族烃和烷基苯)。 VOC的回收取决于VOC本身的性质和基质特性。由于争夺SPME纤维中吸附位点的结果,基质类型显着影响了非极性化合物(如烷基苯,萜烯和脂肪烃)的SPME分析。这些非极性化合物牢固地保留在生物炭表面,限制了SPME用于此类基质。但是,当生物炭经过堆肥经过风化/老化过程时,这种吸附能力并不明显。由于亲水特性,极性化合物(酒精和酮)在所有基质中均表现出相似的行为,受基质中水含量的影响。 SPME在土壤和有机基质上表现出良好的性能,特别是对于非极性化合物,对非极性化合物的检测限(LD)和定量限(LQ)分别为0.02和0.03 ng g〜(-1),差。提取更多亲水性和极性化合物(LD和LQ分别为310和490 ng g〜(-1))。由于分析物对纤维中活性位点的竞争,基质的特性(尤其是pH和有机物)对SPME产生了显着影响,但在具有活性微生物生物量的基质中,不应丢弃VOC的生物降解作用。

著录项

  • 来源
    《Chemosphere》 |2013年第10期|2311-2318|共8页
  • 作者单位

    Department of Soil and Water Conservation and Organic Waste Management, Centra de Edafologia y Biologia Aplicada del Segura, CSIC, TO Box 4195, 30080 Murcia, Spain,Department of Soil Science, Federal University of Lavras, Department of Soil Science , PO Box 3037, 37200-000 Lavras, Minas Cerais, Brazil;

    Department of Soil and Water Conservation and Organic Waste Management, Centra de Edafologia y Biologia Aplicada del Segura, CSIC, TO Box 4195, 30080 Murcia, Spain;

    Department of Soil and Water Conservation and Organic Waste Management, Centra de Edafologia y Biologia Aplicada del Segura, CSIC, TO Box 4195, 30080 Murcia, Spain;

    Department of Soil Science, Federal University of Lavras, Department of Soil Science , PO Box 3037, 37200-000 Lavras, Minas Cerais, Brazil;

    Department of Soil and Water Conservation and Organic Waste Management, Centra de Edafologia y Biologia Aplicada del Segura, CSIC, TO Box 4195, 30080 Murcia, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Soil; Organic wastes; Limit of detection; Limit of quantification; SPME;

    机译:生物炭;土壤;有机废物;检出限定量限;固相微萃取;

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