首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Improved microfluidic chip-based sequential-injection trapped-droplet array liquid-liquid extraction system for determination of aluminium
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Improved microfluidic chip-based sequential-injection trapped-droplet array liquid-liquid extraction system for determination of aluminium

机译:改进的基于微流控芯片的连续注入陷落液滴阵列液液萃取系统测定铝

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An improved microfluidic chip-based sequential-injection trapped-droplet array liquid-liquid extraction system with chemiluminescence (CL) detection was developed in this work. Two recess arrays were fabricated on both sides of the extraction channel to produce droplet arrays of organic extractant. A chip integrated monolithic probe was fabricated at the inlet of the extraction channel on the glass chip instead of the capillary probe connected to the microchannel, in order to improve the system stability and reliability. A slotted-vial array system coupled with the monolithic probe was used to sequentially introduce sample and different solvents and reagents into the extraction channel for extraction and CL detection. The performance of the system was demonstrated in the determination of Al3+ using Al3+-dihydroxyazobenzene (DHAB) and tributyl phosphate (TBP) extraction system. The operation conditions, including extraction time, concentration and flow rate of the CL reagents, were optimized. Within one analysis cycle of 12 min, an enrichment factor of 85 was obtained in the extraction stage with a sample consumption of 1.8 mu L. The consumption of CL reagent, bis(2-carbopentyloxy-3,5,6-trichlorophenyl)oxalate (CPPO), was 120 nL/cycle. The detection limit of the system for Al3+ was 1.6 x 10(-6) mol/L with a precision of 4.5% (R.S.D., n =6). (c) 2008 Elsevier B.V. All rights reserved.
机译:在这项工作中开发了一种改进的基于微流控芯片的顺序注入陷落液滴阵列液-液萃取系统,具有化学发光(CL)检测功能。在萃取通道的两侧制造了两个凹槽阵列,以产生有机萃取剂的液滴阵列。为了提高系统的稳定性和可靠性,在玻璃芯片上提取通道的入口处制造了芯片集成的单片探针,而不是在毛细管探针上连接了微探针,该毛细管探针连接到微通道。缝隙小瓶阵列系统与整体式探针相连,用于将样品以及不同的溶剂和试剂顺序引入萃取通道,以进行萃取和CL检测。使用Al3 +-二羟基偶氮苯(DHAB)和磷酸三丁酯(TBP)萃取系统测定Al3 +可证明该系统的性能。优化了CL试剂的提取时间,浓度和流速等操作条件。在一个12分钟的分析周期内,在萃取阶段获得的富集因子为85,样品消耗量为1.8μL。消耗量为CL试剂双(2-碳戊基氧基-3,5,6-三氯苯基)草酸酯( CPPO)为120 nL /循环。该系统对Al3 +的检出限为1.6 x 10(-6)mol / L,精确度为4.5%(R.S.D.,n = 6)。 (c)2008 Elsevier B.V.保留所有权利。

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