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Improved electro-assisted removal of phosphates and nitrates using mesoporous carbon aerogels with controlled porosity

机译:使用孔隙率可控的中孔碳气凝胶改进电辅助去除磷酸盐和硝酸盐

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Three-activated carbon aerogels were synthesized by CO_2 activation of the materials prepared by the polycondensation of resorcinol and formaldehyde mixtures followed by supercritical drying. The obtained carbon aerogels were characterized and used as electrodematerials for the electrosorption of sodium phosphate and nitrate. X-ray diffraction and Raman spectroscopy showed the dependence of the structural ordering of the aerogels with the resorcinol/catalyst ratio and the extent of activation. The electrosorption capacitance evaluated by cyclic voltammetry revealed large values for the activated samples containing a large contribution of mesopores, regardless the electrolyte salt. Due to an adequate combination of chemical and porous features, the desalting capacity of the activated carbon aerogel electrodes exceeded that of the as-prepared materials. The evaluation of the kinetic properties by chronocoulometric relaxation and impedance spectroscopy showed a decrease of time constant and resistances for highly mesoporous activated samples. A high deionization capacity and fast electrode discharge was detected for the deionization of sodium nitrate on the highly mesoporous activated aerogel. Data also showed the efficient electrosorption of ionic species on consecutive charge/discharge cycles, confirming the stability of the aerogel electrodes at the high applied potentials.
机译:通过间苯二酚和甲醛混合物缩聚制备的材料进行CO_2活化,然后进行超临界干燥,可以合成三活化碳气凝胶。对获得的碳气凝胶进行表征,并将其用作电吸附磷酸钠和硝酸盐的电极材料。 X射线衍射和拉曼光谱表明气凝胶的结构有序与间苯二酚/催化剂的比例和活化程度有关。通过循环伏安法评估的电吸附电容显示,无论电解质盐如何,含有大量中孔的活化样品的值都很大。由于化学和多孔特征的充分结合,活性炭气凝胶电极的脱盐能力超过了所制备材料的脱盐能力。通过计时库仑弛豫和阻抗谱对动力学性质的评估表明,时间常数和电阻的降低对于高度介孔的活化样品而言是减小的。在高介孔活性气凝胶上检测到高的去离子容量和快速的电极放电,可将硝酸钠去离子。数据还显示了在连续的充电/放电循环中离子种类的有效电吸附,证实了气凝胶电极在高施加电势下的稳定性。

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