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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Advancing liquid/liquid extraction through a novel microfluidic device: Theory, instrumentation and applications in gas chromatography
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Advancing liquid/liquid extraction through a novel microfluidic device: Theory, instrumentation and applications in gas chromatography

机译:通过新型微流控装置推进液/液萃取:气相色谱的理论,仪器及应用

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摘要

A new chip-based liquid-liquid extraction technique for sample preparation of aqueous samples for GC was developed. Extraction is performed in a segmented flow system with additional mixing provided by an etched channel structure. The dimensions of the device are optimized to allow benefiting of the advantages of chip technology without suffering from the limitations of over-miniaturization. Phase separation is performed with a novel phase separator developed in house. The instrumental set-up is simple. The results obtained for selected test analytes show that the extraction is quantitative (recoveries=92-110%, RSD<6%) for a wide range of hydrophobicities (LogK _(o/w)=0.86-4.79). The performance at different flow rates (0.5-6.0mL/min) and flow ratios (β=1-10) was evaluated, confirming the flexibility and the possibility to perform enrichment. The results obtained for a few selected applications demonstrate the suitability of the method to perform quick, simple and reliable sample preparation for analytes of interest in real samples.
机译:开发了一种新的基于芯片的液-液萃取技术,用于制备GC的水性样品。提取是在分段流系统中进行的,蚀刻通道结构可提供额外的混合。器件的尺寸经过优化,可以充分利用芯片技术的优势,而不会受到超小型化的限制。相分离是通过内部开发的新型相分离器进行的。仪器设置很简单。从选定的测试分析物获得的结果表明,对于多种疏水性(LogK _(o / w)= 0.86-4.79),萃取是定量的(回收率= 92-110%,RSD <6%)。评价了在不同流速(0.5-6.0mL / min)和流速比(β= 1-10)下的性能,证实了灵活性和进行浓缩的可能性。从一些选定的应用中获得的结果表明,该方法适用于对真实样品中的目标分析物进行快速,简单和可靠的样品前处理。

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