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微聚焦超声固液萃取(muFUSLE)结合高效液相色谱法和荧光检测用于沉积物中多环芳烃的测定:优化及与分析简约主义概念的关联

Micro-focused ultrasonic solid-liquid extraction (muFUSLE) combined with HPLC and fluorescence detection for PAHs determination in sediments: optimization and linking with the analytical minimalism concept.

作者信息

Capelo J L, Galesio M M, Felisberto G M, Vaz C, Pessoa J Costa

机构信息

Centro de Química Estrutural, Instituto Superior Técnico, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.

出版信息

Talanta. 2005 Jun 15;66(5):1272-80. doi: 10.1016/j.talanta.2005.01.046. Epub 2005 Feb 24.

Abstract

Analytical minimalism is a concept that deals with the optimization of all stages of an analytical procedure so that it becomes less time, cost, sample, reagent and energy consuming. The guide-lines provided in the USEPA extraction method 3550B recommend the use of focused ultrasound (FU), i.e., probe sonication, for the solid-liquid extraction of Polycyclic Aromatic Hydrocarbons, PAHs, but ignore the principle of analytical minimalism. The problems related with the dead sonication zones, often present when high volumes are sonicated with probe, are also not addressed. In this work, we demonstrate that successful extraction and quantification of PAHs from sediments can be done with low sample mass (0.125g), low reagent volume (4ml), short sonication time (3min) and low sonication amplitude (40%). Two variables are here particularly taken into account for total extraction: (i) the design of the extraction vessel and (ii) the solvent used to carry out the extraction. Results showed PAHs recoveries (EPA priority list) ranged between 77 and 101%, accounting for more than 95% for most of the PAHs here studied, as compared with the values obtained after soxhlet extraction. Taking into account the results reported in this work we recommend a revision of the EPA guidelines for PAHs extraction from solid matrices with focused ultrasound, so that these match the analytical minimalism concept.

摘要

分析极简主义是一个涉及优化分析程序各个阶段的概念,目的是减少时间、成本、样品、试剂和能源消耗。美国环境保护局(USEPA)萃取方法3550B中提供的指南推荐使用聚焦超声(FU),即探头超声处理,用于多环芳烃(PAHs)的固液萃取,但忽略了分析极简主义原则。使用探头对大量样品进行超声处理时经常出现的与超声死区相关的问题也未得到解决。在这项工作中,我们证明了可以用低样品量(0.125g)、低试剂量(4ml)、短超声时间(3分钟)和低超声振幅(40%)成功地从沉积物中萃取和定量多环芳烃。这里特别考虑了两个用于完全萃取的变量:(i)萃取容器的设计和(ii)用于进行萃取的溶剂。结果表明,多环芳烃(EPA优先清单)的回收率在77%至101%之间,与索氏萃取后获得的值相比,本文研究的大多数多环芳烃的回收率超过95%。考虑到这项工作中报告的结果,我们建议修订美国环境保护局关于用聚焦超声从固体基质中萃取多环芳烃的指南,使其符合分析极简主义概念。

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