Hui Yun, Liu Yujia, Tang William C, Song Dian, Madou Marc, Xia Shanhong, Wu Tianzhun
Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.
Department of Mechanical & Aerospace Engineering, University of California, Irvine, CA 92697, USA.
Micromachines (Basel). 2019 Aug 8;10(8):523. doi: 10.3390/mi10080523.
An integrated centrifugal microfluidic device was developed to preconcentrate and detect hazardous mercury (II) in water with ionic liquid as environmentally friendly extractant. An automatically salt-controlled ionic liquid dispersive liquid-liquid microextraction on a centrifugal microfluidic device was designed, fabricated, and characterized. The entire liquid transport mixing and separation process was controlled by rotation speed, siphon valves, and capillary valves. Still frame images on the rotating device showed the process in detail, revealing the sequential steps of mixing, siphon priming, transportation between chambers, and phase separation. The preconcentration of red dye could be clearly observed with the naked eye. By combining fluorescence probe and microscopy techniques, the device was tested to determine ppb-level mercury (II) in water, and was found to exhibit good linearity and low detection limit.
开发了一种集成离心微流控装置,以离子液体作为环境友好型萃取剂,对水中的有害汞(II)进行预浓缩和检测。设计、制造并表征了一种在离心微流控装置上自动控制盐分的离子液体分散液液微萃取方法。整个液体传输、混合和分离过程由转速、虹吸阀和毛细管阀控制。旋转装置上的静止帧图像详细显示了该过程,揭示了混合、虹吸启动、腔室间传输和相分离的连续步骤。用肉眼可以清楚地观察到红色染料的预浓缩。通过结合荧光探针和显微镜技术,对该装置进行了测试,以测定水中十亿分之一级的汞(II),发现其具有良好的线性和低检测限。