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基于石墨烯的基质固相分散萃取法用于从环境样品中提取多溴二苯醚及其甲氧基和羟基类似物。

Graphene-assisted matrix solid-phase dispersion for extraction of polybrominated diphenyl ethers and their methoxylated and hydroxylated analogs from environmental samples.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

出版信息

Anal Chim Acta. 2011 Dec 5;708(1-2):61-8. doi: 10.1016/j.aca.2011.09.017. Epub 2011 Sep 19.

Abstract

In this work, we developed a novel graphene-assisted matrix solid-phase dispersion (GA-MSPD) method for extraction of polybrominated diphenyl ethers (PBDEs) and their methoxylated (MeO-) and hydroxylated (OH-) analogs from environmental samples. We found that grinding the solid sample with chemically converted graphene (CCG) powder yielded a tight contact and sufficient dispersion of the sample matrix due to the large surface area and flexible nanosheet morphology of CCG. The resultant blend was eluted using a two-step elution strategy: PBDEs and MeO-PBDEs were eluted firstly by hexane/dichloromethane and analyzed by GC-ECD, and then OH-PBDEs were eluted by acetone and determined by LC-ESI-MS/MS. The GA-MSPD conditions were optimized in detail. Better recoveries were obtained with GA-MSPD than with other sorbents (C18 silica, Florisil and carbon nanotubes) and other extraction techniques (Soxhlet and accelerated solvent extraction). Other advantages of GA-MSPD, including reduced consumption of sorbent and solvent, good selectivity and short extraction time, were also demonstrated. In analysis of soil samples, the method detection limits of five PBDEs, ten MeO-PBDEs and ten OH-PBDEs were in the range of 5.9-28.7, 14.3-46.6, and 5.3-212.6 pg g(-1) dry weight, respectively. The proposed method was successfully applied to the extraction of PBDEs, MeO-PBDEs and OH-PBDEs from different kinds of spiked environmental samples, including soil, tree bark and fish.

摘要

在这项工作中,我们开发了一种新型的石墨烯辅助基质固相分散(GA-MSPD)方法,用于从环境样品中提取多溴二苯醚(PBDEs)及其甲氧基(MeO-)和羟基(OH-)类似物。我们发现,由于 CCG 粉末的大表面积和灵活的纳米片形态,将固体样品与化学转化石墨烯(CCG)粉末研磨可获得紧密接触和充分分散的样品基质。然后使用两步洗脱策略洗脱所得混合物:首先用正己烷/二氯甲烷洗脱 PBDEs 和 MeO-PBDEs,并通过 GC-ECD 进行分析,然后用丙酮洗脱 OH-PBDEs,并通过 LC-ESI-MS/MS 进行测定。详细优化了 GA-MSPD 条件。与其他吸附剂(C18 硅胶、弗罗里硅土和碳纳米管)和其他提取技术(索氏提取和加速溶剂提取)相比,GA-MSPD 获得了更好的回收率。GA-MSPD 还具有其他优点,包括减少吸附剂和溶剂的消耗、良好的选择性和较短的提取时间。在土壤样品分析中,五种 PBDEs、十种 MeO-PBDEs 和十种 OH-PBDEs 的方法检出限范围分别为 5.9-28.7、14.3-46.6 和 5.3-212.6 pg g(-1) 干重。该方法成功应用于不同种类的加标环境样品(包括土壤、树皮和鱼类)中 PBDEs、MeO-PBDEs 和 OH-PBDEs 的提取。

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