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Enhanced nitrate reduction with copper phthalocyanine-coated carbon nanotubes in a solid polymer electrolyte reactor

机译:用铜酞菁涂覆的碳纳米管在固体聚合物电解质反应器中提高硝酸盐还原

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Research on nitrate removal has drawn more attention because of the increasing nitrate contamination in ground and surface water. In this work, copper phthalocyanine supported on functionalised multiwalled carbon nanotubes (CuPc/CNT) prepared using the impregnation method was characterised and tested for their electrocatalytic behaviour towards nitrate reduction. Cyclic voltammetry, rotating disc electrode and chronoamperometry techniques were employed for the electrochemical characterisation. The CuPc/CNT electrocatalyst showed higher catalytic activity towards nitrate reduction than CuPc supported on carbon black (CuPc/C). From kinetic studies, the order of reaction and the reaction rate constant were found to be 0.78, 15.03 and 0.81, 0.46 s(-1) for CuPc/CNT and CuPc/C, respectively. Electrolysis studies in an H-cell at 24 h showed the percentage of nitrate removal up to 76 and 45 % for CuPc/CNT and CuPc/C, respectively. Furthermore, nitrate reduction in a solid polymer electrolyte reactor with membrane electrode assemblies designed using supported CuPc cathode showed a maximum faradaic efficiency of 41 % for CuPc/CNT and 38 % for CuPc/C.
机译:由于地面和地表水中的硝酸盐污染增加,硝酸盐去除的研究更加受到关注。在这项工作中,在使用浸渍方法制备的官能化多晶碳纳米管(CupC / CNT)上负载的铜酞菁的特征和测试了它们对硝酸盐还原的电催化行为。用于电化学表征的循环伏安法,旋转盘电极和计时术技术。 CupC / CNT电催化剂显示出较高的催化活性,朝向炭黑(CUPC / C)上负载的CUPC达到硝酸盐的催化活性。来自动力学研究,发现反应顺序和反应速率常数分别为CUPC / CNT和CUPC / C的0.78,15.03和0.81,0.46 s(-1)。在24小时的H-Cell中的电解研究表明CupC / CNT和CupC / C的硝酸盐去除百分比高达76%和45%。此外,使用支撑的Cupc阴极设计的具有膜电极组件的固体聚合物电解质反应器中的硝酸盐降低显示CupC / CNT的最高竞争效率为41%,38%用于CupC / C.

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