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用于制备由分层水滑石(Mg-Al)和多孔碳组成的混合材料的生物模板路线,该混合材料负载在钢纤维上,用于农药的固相微萃取。

Bio template route for fabrication of a hybrid material composed of hierarchical boehmite, layered double hydroxides (Mg-Al) and porous carbon on a steel fiber for solid phase microextraction of agrochemicals.

机构信息

Department of Chemistry, Faculty of Science, University of Maragheh, PO Box: 5518183111, Maragheh, Iran.

出版信息

Mikrochim Acta. 2019 Sep 12;186(10):678. doi: 10.1007/s00604-019-3782-1.

Abstract

Nanosheets of a porous layered double hydroxide were directionally arranged on boehmite nanowires and porous carbon and used as a coating for solid-phase microextraction (SPME) method. Porous carbon tubes were prepared from goat grass and then coated with layered double hydroxide nanosheets and boehmite nanowires. The nanomaterial was placed on a stainless-steel wire which then was used for the extraction of fifteen agrochemicals from aqueous sample solutions. The extraction temperature, extraction time, ionic strength, stirring rate, and desorption temperature and time were optimized. Following thermal desorption of the agrochemicals in the injector of the gas chromatograph, they were quantified by GC/MS. Under optimum conditions, the repeatability for one fiber, expressed as relative standard deviation, was between 2.9 and 11.1%. The detection limits for the agrochemicals are between 2-29 ng L. The method is simple, fast, and inexpensive (in terms of equipment). The fiber is thermally stable, and the relative recoveries from spiked samples are better compared to conventional methods of extraction. Graphical abstract Schematic illustration of the preparation of three-dimensional hierarchical boehmite/ layered double hydroxides/ porous carbon (Boeh/LDH/pC) SPME fibers and application for the extraction of fifteen agrochemicals from aqueous sample solutions following quantification by GC/MS.

摘要

多孔层状双氢氧化物纳米片在水铝石纳米线和多孔碳上定向排列,并用作固相微萃取(SPME)方法的涂层。多孔碳管是由山羊毛草制备的,然后涂覆有层状双氢氧化物纳米片和水铝石纳米线。将纳米材料放置在不锈钢丝上,然后用于从水样溶液中提取十五种农药。优化了萃取温度、萃取时间、离子强度、搅拌速度以及解吸温度和时间。在气相色谱仪的进样器中对农药进行热解吸后,通过 GC/MS 进行定量分析。在最佳条件下,一个纤维的重复性(表示为相对标准偏差)在 2.9%至 11.1%之间。农药的检测限在 2-29ng/L 之间。该方法简单、快速且经济实惠(设备方面)。纤维热稳定性好,与传统提取方法相比,从加标样品中的回收率更好。

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