首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Dynamic single-interface hollow fiber liquid phase microextraction of Cr (VI) using ionic liquid containing supported liquid membrane
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Dynamic single-interface hollow fiber liquid phase microextraction of Cr (VI) using ionic liquid containing supported liquid membrane

机译:含负载型液膜的离子液体对Cr(VI)的动态单界面中空纤维液相微萃取

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摘要

The concept of dynamic single -interface hollow fiber membrane liquid-phase microextraction (HF-LPME), where the target analyte was extracted on-line and eluted inside the lumen of the HF membrane, was explored. An ionic liquid containing supported liquid membrane was used for the trace determination of Cr(VI) as a model compound. Since the extraction took place on-line inside the hollow fiber membrane, the mass transfer behavior was described and discussed in comparison with the conventional HF-LPME. The extraction efficiency was improved by a recirculation configuration of the sample solution at relatively high sampling flow rates as a result of the increased effective contact area. The positive pressure observed to be built up during extraction was overcome by a flow-balancing pressure design. The dynamic single-interface HF-LPME method with an enrichment factor of 41, a detection limit of 1.2 mu g L-1 and determination limit of 4.0 mu g L-1 was successfully applied to the reliable determination of Cr(VI) from environmental water samples. The quantification limit is below the maximum contaminant level in drinking water, set at 10 mu g L-1 of hexavalent chromium by the California Environmental Protection Agency.
机译:探索了动态单界面中空纤维膜液相微萃取(HF-LPME)的概念,其中目标分析物被在线提取并洗脱在HF膜腔内。含有离子液体的负载液膜用于痕量测定Cr(VI)作为模型化合物。由于萃取是在中空纤维膜内部在线进行的,因此与传统的HF-LPME进行了比较,对传质行为进行了描述和讨论。由于有效接触面积的增加,通过在相对较高的采样流速下进行样品溶液的再循环配置,提高了萃取效率。流量平衡压力设计克服了萃取过程中积累的正压。富集因子为41,检测限为1.2μgL-1,测定限为4.0μgL-1的动态单界面HF-LPME方法已成功用于环境中Cr(VI)的可靠测定水样本。定量极限低于饮用水中的最大污染物含量,加利福尼亚环境保护署将其定为10微克L-1的六价铬。

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