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HPO/KOH 活化剂在酸性介质超级电容器中用于高性能稻壳活性炭电极。

HPO/KOH Activation Agent for High Performance Rice Husk Activated Carbon Electrode in Acidic Media Supercapacitors.

机构信息

Chemical Engineering Department, Faculty of Engineering, Minia University, Minya 61519, Egypt.

Department of Mechanical Engineering, College of Engineering, Qassim University, Buraydah 51452, Saudi Arabia.

出版信息

Molecules. 2022 Dec 30;28(1):296. doi: 10.3390/molecules28010296.

Abstract

HPO/KOH combined solution is proposed as a new effective activation agent for activated carbon production from rice husk. Several activated carbon samples were produced by using different volumes of the utilized acid and alkali individually, in addition to the combined solution. FTIR results indicated that the mixed agent partially decomposed the chemical compounds on the rice husk char surface, resulting in an increase in the surface area. Moreover, XRD and EDS analyses showed the presence of a considerable amount of amorphous silica. Electrochemical measurements concluded that the volume of the activation agent solution should be optimized for both single and mixed activation agents. Numerically, for 0.3 g treated rice husk char, the maximum specific capacitance was observed at 7, 10 and 14 mL of HPO, KOH (3 M) and mixed (1:1 by volume) activation agents, respectively; the determined specific capacitance values were 73.5, 124.2 and 241.3 F/g, respectively. A galvanostatic charging/discharging analysis showed an approximate symmetrical triangular shape with linear voltage versus time profile which indicates very good electrochemical performance as an electrode in the supercapacitors application. The stability of the proposed activated carbon was checked by performing a cyclic voltammetry measurement for 1000 cycles at 2 mV/s and for 30,000 cycles at 10 mV/s. The results indicate an excellent specific capacitance retention, as no losses were observed.

摘要

HPO/KOH 混合溶液被提议作为一种从稻壳中生产活性炭的新型有效活化剂。使用不同体积的酸和碱单独以及混合溶液制备了几种活性炭样品。FTIR 结果表明,混合剂部分分解了稻壳炭表面的化合物,导致表面积增加。此外,XRD 和 EDS 分析表明存在相当数量的无定形二氧化硅。电化学测量表明,对于单一和混合活化剂,都应该优化活化剂溶液的体积。数值上,对于 0.3 g 处理过的稻壳炭,在 HPO、KOH(3 M)和混合(体积比 1:1)活化剂的 7、10 和 14 mL 时观察到最大比电容,分别为 73.5、124.2 和 241.3 F/g。恒流充放电分析显示出近似对称的三角形形状,具有线性的电压与时间关系,表明作为超级电容器应用中的电极具有非常好的电化学性能。通过在 2 mV/s 下进行 1000 次循环和在 10 mV/s 下进行 30000 次循环的循环伏安法测量检查了所提出的活性炭的稳定性。结果表明,比电容保持率非常好,因为没有观察到任何损失。

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