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表征沉积技术对混合电容去离子中钠离子电吸附用 MnO 正极性能的影响。

Characterizing the Impacts of Deposition Techniques on the Performance of MnO Cathodes for Sodium Electrosorption in Hybrid Capacitive Deionization.

机构信息

Department of Civil & Environmental Engineering University of Illinois at Urbana-Champaign , Urbana, Illinois 61801-2352, United States.

出版信息

Environ Sci Technol. 2017 Oct 17;51(20):12027-12034. doi: 10.1021/acs.est.7b03060. Epub 2017 Sep 29.

Abstract

Capacitive deionization (CDI) is currently limited by poor ion-selectivity and low salt adsorption capacity of porous carbon electrodes. To enhance selectivity and capacity via sodium insertion reactions, carbon aerogel electrodes were modified by depositing amorphous manganese dioxide layers via cyclic voltammetry (CV) and electroless deposition (ED). MnO-coated electrodes were evaluated in a hybrid capacitive deionization system to understand the relationship between oxide coating morphology, electrode capacitance, and sodium removal efficacy. Both deposition techniques increased electrode capacitance, but only ED electrodes improved desalination performance over bare aerogels. SEM imaging revealed ED deposition distributed MnO throughout the aerogel, while CV deposition created a discrete crust, indicating that CV electrodes were limited by diffusion. Sodium adsorption capacity of ED electrodes increased with MnO mass deposition, reaching a maximum of 0.77 mmol-Na per gram of cathode (2.29 mmol-Na g-MnO), and peak charge efficiency of 0.95. The presence of MnO also positively shifted the electrode potential window of sodium removal, reducing parasitic oxygen reduction and inverting the desalination cycle so that energy discharge coincides with salt removal (1.96 kg-NaCl kWh). These results highlight the importance of deposition technique in improving desalination with MnO-coated electrodes.

摘要

电容去离子 (CDI) 目前受到多孔碳电极离子选择性差和盐吸附容量低的限制。为了通过钠插入反应提高选择性和容量,通过循环伏安法 (CV) 和化学镀沉积 (ED) 在碳气凝胶电极上修饰非晶态二氧化锰层。在混合电容去离子系统中评估了 MnO 涂层电极,以了解氧化物涂层形态、电极电容和钠离子去除效率之间的关系。两种沉积技术都增加了电极电容,但只有 ED 电极在裸气凝胶基础上提高了脱盐性能。SEM 成像表明 ED 沉积将 MnO 分布在整个气凝胶中,而 CV 沉积则形成离散的外壳,表明 CV 电极受到扩散的限制。ED 电极的钠离子吸附容量随 MnO 质量沉积的增加而增加,达到每克阴极 0.77mmol-Na(2.29mmol-Na g-MnO)的最大值,峰值电荷效率为 0.95。MnO 的存在还使钠离子去除的电极电势窗口正向移动,减少了寄生的氧气还原,并使脱盐循环反转,使能量释放与盐去除(1.96kg-NaCl kWh)相吻合。这些结果强调了沉积技术在提高 MnO 涂层电极脱盐性能方面的重要性。

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