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    • 1. 发明授权
    • Electrochemistry with porous flow cell
    • 多孔流化床电化学
    • US06952013B2
    • 2005-10-04
    • US10849098
    • 2004-05-19
    • Michael C. GrangerGary J. Van Berkel
    • Michael C. GrangerGary J. Van Berkel
    • B01D59/44B05B20060101H01J49/04H01J49/10
    • H01J49/165H01J49/0436
    • Disclosed are systems and methods that include a flow-cell that includes porous conductive material(s) that provides a working electrode(s), an inlet connected to the flow-cell to deliver a solution continuing an analyte(s), an outlet connected to the flow-cell to allow the solution to exit the flow-cell, a counter electrode positioned proximate to the outlet, and a voltage source(s) coupled to the working electrode(s) and the counter electrode. The methods can include delivering a solution containing an analyte(s) through an inlet to a flow-cell that includes porous conductive material(s) that provides a working electrode(s), connecting the flow-cell to an outlet for allowing the solution to exit the flow-cell, placing a counter-electrode proximate the outlet, and supplying a voltage from a voltage source(s) to the working electrode(s) and/or the counter-electrode.
    • 公开了包括流动池的系统和方法,流动池包括提供工作电极的多孔导电材料,连接到流动池以输送连续分析物的溶液的入口,连接的出口 流动池以允许溶液离开流动池,靠近出口定位的对电极和耦合到工作电极和对电极的电压源。 所述方法可以包括将含有分析物的溶液通过入口输送到流动池,该流动池包括提供工作电极的多孔导电材料,将流动池连接到出口以允许溶液 离开流通池,将反电极放置在靠近出口处,并将电压从电压源提供给工作电极和/或对电极。