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首页> 外文期刊>Analytical and bioanalytical chemistry >Development of a new three-phase membrane-assisted liquid-phase microextraction method: Determination of nitrite in tap water samples as model analytical application
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Development of a new three-phase membrane-assisted liquid-phase microextraction method: Determination of nitrite in tap water samples as model analytical application

机译:新型三相膜辅助液相微萃取方法的开发:自来水样品中亚硝酸盐的测定作为模型分析应用

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摘要

A novel and simple device for membrane-assisted liquid-phase microextraction is used for the first time in a three-phase system. The device consists of a glass vial containing the aqueous acceptor phase, whose septum of its screw stopper has been replaced by a sized piece of polytetrafluoroethylene membrane impregnated with n-decane. The vial is assembled to a volumetric flask containing the aqueous donor phase, and the membrane comes in contact alternatively with both donor and acceptor aqueous phases by orbital agitation. The device has been tested for the determination of nitrite in tap water samples, which is extensively carried out in routine analysis, as model analytical application. Experimental variables, such as the organic solvent used to form the supported liquid membrane, the volumes of both donor and acceptor phases, the orbital agitation rate, and the extraction time were studied and optimized in terms of enrichment factor. Under the selected working conditions, the analytical figures of merit for nitrite determination were a linearity range up to 50 ng mL~(-1), limits of detection and quantification of 0.15 and 0.50 ng mL~(-1), respectively, and a good repeatability (RSD∈<∈10%). The method has been applied to four tap water samples of different origins, and accurate and precise results were achieved. Besides, the very low volume of organic solvent used, its low cost and the no-risk of cross-contamination are significant operational advantages.
机译:一种新颖,简单的膜辅助液相微萃取装置在三相系统中首次使用。该装置由一个玻璃瓶组成,该玻璃瓶中有含水的受主相,其螺塞的隔垫已被一块浸有正癸烷的聚四氟乙烯膜片替代。将小瓶组装到含有水供体相的容量瓶中,并且通过轨道搅拌使膜交替地与供体和受体水相接触。该设备已经过测试,可以测定自来水样品中的亚硝酸盐,这在常规分析中作为模型分析应用广泛进行。对实验变量进行了研究,并根据富集因子对实验变量进行了优化,例如用于形成负载液膜的有机溶剂,供体和受体相的体积,轨道搅拌速率和萃取时间。在选定的工作条件下,亚硝酸盐测定的分析品质因数为线性范围,最高50 ng mL〜(-1),检出限和定量限分别为0.15和0.50 ng mL〜(-1),并且重复性好(RSD∈<∈10%)。该方法已应用于四个不同来源的自来水样品,并获得了准确而精确的结果。此外,所用有机溶剂的量非常少,成本低且无交叉污染的风险是重要的操作优势。

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