Rakhmawati Farma, Amalia Apriliani Putri, Irma Apriyani
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摘要

蛇果中脉(SFM)生物质具有作为制造碳电极的前体材料的潜力,因为它具有用于超级电容器应用的高木质纤维素含量。以蛇果中脉生物质为原料,采用200℃预碳化、0.1 M KOH活化、500℃、600℃、700℃氮气碳化、800℃co2气体物理活化等工艺制备碳电极。热重分析表明,碳粉的热阻温度为317.1℃。通过对蛇果中脉制备的超级电容器电池的电化学性能分析,SFM-500、SFM-600和SFM-700样品的比电容值分别为123.23、169.05和213.27 F/g。结果表明,700℃是蛇果中脉碳电极的最佳碳化温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SIKLIS VOLTAMETRI SEL SUPERKAPASITOR DARI BIOMASSA PELEPAH SALAK
Snake fruit midrib (SFM) biomass has the potential to be used as a precursor material for making carbon electrodes because it has a high lignocellulosic content for supercapacitor applications. Carbon electrodes were made from snake fruit midrib biomass using a pre-carbonization process at 200 °C, chemical activation with 0.1 M KOH as an activating agent, a carbonization process with temperature variations of 500 °C, 600 °C, and 700 °C using N 2 gas, and a physical activation process at 800 °C with CO 2 gas. Thermogravimetric analysis shows the thermal resistance temperature of carbon powder is 317.1 °C. Analysis of the electrochemical properties of supercapacitor cells from snake fruit midrib obtained specific capacitance values of 123.23 F/g, 169.05 F/g, and 213.27 F/g for samples SFM-500, SFM-600, and SFM-700, respectively. The results showed that 700 °C was the best carbonization temperature for carbon electrodes from snake fruit midrib.
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