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基于分散固相萃取法探究石墨烯对菜油样品中五类不同农药的吸附潜力

The Potential of Graphene as an Adsorbent for Five Pesticides from Different Classes in Rape Oil Samples Using Dispersive Solid-Phase Extraction.

作者信息

Madej Katarzyna, Janiga Katarzyna, Piekoszewski Wojciech

机构信息

Department of Analytical Chemistry, Faculty of Chemistry, Jagiellonian University, Krakow 30-387, Poland.

Department of Food Science and Technology, School of Biomedicine, Far Eastern Federal University, Vladivostok, Russia.

出版信息

J Anal Methods Chem. 2018 Apr 1;2018:3587860. doi: 10.1155/2018/3587860. eCollection 2018.

Abstract

Isolation conditions for five pesticides (metazachlor, tebuconazole, -cyhalothrin, chlorpyrifos, and deltamethrin) from rape oil samples were examined using the dispersive solid-phase graphene extraction technique. To determine the optimal extraction conditions, a number of experimental factors (amount of graphene, amount of salt, type and volume of the desorbing solvent, desorption time with and without sonication energy, and temperature during desorption) were studied. The compounds of interest were separated and detected by an HPLC-UV employing a Kinetex XB-C18 column and a mobile phase consisting of acetonitrile and water flowing in a gradient mode. The optimized extraction conditions were: the amount of graphene 15 mg, desorbing solvent (acetonitrile) 5 mL, time desorption 10 min at 40°C, and amount of NaCl 1 g. The detection limit for metazachlor, tebuconazole, -cyhalothrin, and chlorpyrifos was 62.5 ng·g, and for deltamethrin, it was 500 ng·g. The obtained results lead to the conclusion that graphene may be successfully used for the isolation of the five pesticides from rape oil. However, their determination at low concentration levels, as they occur in real oil samples, requires the employment of appropriately highly sensitive analytical methods, as well as a more suitable graphene form (e.g., magnetically modified graphene).

摘要

采用分散固相石墨烯萃取技术研究了从菜油样品中分离五种农药(异丙甲草胺、戊唑醇、高效氯氟氰菊酯、毒死蜱和溴氰菊酯)的条件。为确定最佳萃取条件,研究了多个实验因素(石墨烯用量、盐用量、解吸溶剂的类型和体积、有无超声能量时的解吸时间以及解吸过程中的温度)。采用Kinetex XB - C18色谱柱和由乙腈和水组成的梯度流动相的高效液相色谱 - 紫外检测法对目标化合物进行分离和检测。优化后的萃取条件为:石墨烯用量15 mg、解吸溶剂(乙腈)5 mL、40℃下解吸时间10 min、氯化钠用量1 g。异丙甲草胺、戊唑醇、高效氯氟氰菊酯和毒死蜱的检测限为62.5 ng·g,溴氰菊酯的检测限为500 ng·g。所得结果表明,石墨烯可成功用于从菜油中分离这五种农药。然而,要测定实际油样中低浓度水平的这些农药,需要采用灵敏度足够高的分析方法以及更合适的石墨烯形式(如磁性修饰石墨烯)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98bd/5901433/dc911b08c9c1/JAMC2018-3587860.001.jpg

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