首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Efficient solid-phase microextraction of triazole pesticides from natural water samples using a Nafion-loaded trimethylsilane-modified mesoporous silica coating of type SBA-15
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Efficient solid-phase microextraction of triazole pesticides from natural water samples using a Nafion-loaded trimethylsilane-modified mesoporous silica coating of type SBA-15

机译:使用载有Nafion的SBA-15型三甲基硅烷改性的介孔二氧化硅涂层从天然水样品中高效固相微萃取三唑类农药

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摘要

A mesoporous silica surface of type SBA-15 was made more hydrophobic by modification with ethoxytrimethylsilane to obtain a hybrid organic-inorganic mesoporous nanocomposite, which then was impregnated with Nafion. The resulting nanocomposite was used as a fiber coating for solid-phase microextraction (SPME). The trimethylsilyl-modified Nafion/SBA-15 nanocomposite with high surface area was characterized by SEM and FTIR. It was immobilized on a stainless steel wire in order to fabricate a fiber for SPME. This fiber was evaluated for its suitability for extracting triazolic agrochemicals from water samples before their quantification through a combination of gas chromatography and mass spectrometry. Experimental conditions for fiber coating, extraction time, stirring rate, ionic strength, pH value, desorption temperature and desorption time were optimized. Under optimum conditions, the repeatability for one fiber (for n = 3) ranges from 4.3 to 5.6 % (relative standard deviation). The detection limits are between 50 and 90 pga <...mL(-1). The method is simple, fast, low-cost (in terms of equipment), and the fiber used for SPME has high thermal stability and good recovery.
机译:通过用乙氧基三甲基硅烷改性,使SBA-15型介孔二氧化硅表面疏水性更强,从而获得杂化的有机-无机介孔纳米复合材料,然后将其浸入Nafion中。所得的纳米复合材料用作固相微萃取(SPME)的纤维涂层。用SEM和FTIR对具有高表面积的三甲基甲硅烷基改性的Nafion / SBA-15纳米复合材料进行了表征。将其固定在不锈钢线上以制造用于SPME的纤维。在通过气相色谱和质谱联用对其进行定量之前,评估了该纤维在从水样品中提取三唑类农药的适用性。优化了纤维涂层的实验条件,萃取时间,搅拌速率,离子强度,pH值,解吸温度和解吸时间。在最佳条件下,一根光纤(n = 3)的可重复性在4.3%至5.6%(相对标准偏差)的范围内。检出限在50至90 pga <... mL(-1)之间。该方法简单,快速,成本低(就设备而言),用于SPME的纤维具有较高的热稳定性和良好的回收率。

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