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首页> 外文期刊>Journal of separation science. >In-syringe-assisted dispersive liquid-liquid microextraction coupled to gas chromatography with mass spectrometry for the determination of six phthalates in water samples
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In-syringe-assisted dispersive liquid-liquid microextraction coupled to gas chromatography with mass spectrometry for the determination of six phthalates in water samples

机译:注射器内分散液-液微萃取-质谱联用气相色谱法测定水样中的六种邻苯二甲酸酯

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摘要

A fully automated method for the determination of six phthalates in environmental water samples is described. It is based in the novel sample preparation concept of in-syringe dispersive liquid-liquid microextraction, coupled as a front end to GC-MS, enabling the integration of the extraction steps and sample injection in an instrumental setup that is easy to operate. Dispersion was achieved by aspiration of the organic (extractant and disperser) and the aqueous phase into the syringe very rapidly. The denser-than-water organic droplets released in the extraction step, were accumulated at the head of the syringe, where the sedimented fraction was transferred to a rotary micro-volume injection valve where finally was introduced by an air stream into the injector of the GC through a stainless-steel tubing used as interface. Factors affecting the microextraction efficiency were optimized using multivariate optimization. Figures of merit of the proposed method were evaluated under optimal conditions, achieving a detection limit in the range of 0.03-0.10 μg/L, while the RSD% value was below 5% (n=5). A good linearity (0.9956≥r~2 ≥0.9844) and a broad linear working range (0.5-120 μg/L) were obtained. Themethod exhibited enrichment factors and recoveries, ranging from 14.11-16.39 and 88-102%, respectively.
机译:描述了一种测定环境水样品中六种邻苯二甲酸盐的全自动方法。它基于注射器内分散液-液微萃取的新颖样品制备概念,并作为前端与GC-MS结合使用,可将萃取步骤和样品进样整合到易于操作的仪器中。通过将有机物(萃取剂和分散剂)和水相快速抽吸到注射器中来实现分散。在萃取步骤中释放的比水密的有机液滴积聚在注射器的头部,在那里将沉淀的馏分转移到旋转式微体积注入阀中,最后通过气流将其引入到注射器的注射器中。 GC通过一根不锈钢管作为接口。使用多元优化对影响微萃取效率的因素进行了优化。在最佳条件下评估了所提出方法的优值,实现了0.03-0.10μg/ L的检出限,而RSD%值低于5%(n = 5)。获得了良好的线性(0.9956≥r〜2≥0.9844)和宽的线性工作范围(0.5-120μg/ L)。该方法的富集因子和回收率分别为14.11-16.39和88-102%。

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