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Optimization of in-cell accelerated solvent extraction technique for the determination of organochlorine pesticides in river sediments

机译:细胞内加速溶剂萃取技术测定河流沉积物中有机氯农药的优化

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Organochlorine pesticides (OCPs) are ubiquitous environmental contaminants with adverse impacts on aquatic biota, wildlife and human health even at low concentrations. However, conventional methods for their determination in river sediments are resource intensive. This paper presents an approach that is rapid and also reliable for the detection of OCPs. Accelerated Solvent Extraction (ASE) with in-cell silica gel clean-up followed by Triple Quadrupole Gas Chromatograph Mass Spectrometry (GCMS/MS) was used to recover OCPs from sediment samples. Variables such as temperature, solvent ratio, adsorbent mass and extraction cycle were evaluated and optimized for the extraction. With the exception of Aldrin, which was unaffected by any of the variables evaluated, the recovery of OCPs from sediment samples was largely influenced by solvent ratio and adsorbent mass and, to some extent, the number of cycles and temperature. The optimized conditions for OCPs extraction in sediment with good recoveries were determined to be 4 cycles, 4.5 g of silica gel, 105 degrees C, and 4:3 v/v DCM: hexane mixture. With the exception of two compounds (alpha-BHC and Aldrin) whose recoveries were low (59.73 and 47.66% respectively), the recovery of the other pesticides were in the range 85.35-117.97% with precision < 10% RSD. The method developed significantly reduces sample preparation time, the amount of solvent used, matrix interference, and is highly sensitive and selective. (C) 2015 Elsevier B.V. All rights reserved.
机译:有机氯农药(OCPs)是普遍存在的环境污染物,即使浓度很低也会对水生生物,野生生物和人类健康产生不利影响。但是,用于测定河流沉积物中常规方法的资源密集。本文提出了一种快速且可靠的OCP检测方法。加速溶剂萃取(ASE)进行细胞内硅胶净化,然后使用三重四极杆气相色谱质谱仪(GCMS / MS)从沉淀物样品中回收OCP。评估并优化了温度,溶剂比,吸附剂质量和萃取周期等变量,并对萃取进行了优化。除Aldrin不受任何评估变量影响外,沉积物样品中OCP的回收率在很大程度上受溶剂比率和吸附剂质量的影响,在一定程度上还受循环次数和温度的影响。确定具有良好回收率的沉积物中OCP的最佳萃取条件为4个循环,4.5 g硅胶,105摄氏度和4:3 v / v DCM:己烷混合物。除了两种化合物(α-BHC和艾氏剂)的回收率较低(分别为59.73和47.66%)外,其他农药的回收率在85.35-117.97%之间,精密度<10%RSD。所开发的方法显着减少了样品制备时间,溶剂用量,基质干扰,并且具有高度的灵敏度和选择性。 (C)2015 Elsevier B.V.保留所有权利。

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