KARAKTERISASI SIFAT ELEKTROKIMIA ELEKTRODA KARBON BERBAHAN PELEPAH AREN MENGGUNAKAN LARUTAN ELEKTROLIT Na2SO4

Decha Apriliany Suwandi, Awitdrus Awitdrus
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Abstract

The electrical energy crisis occurs due to the availability of non-renewable sources of electrical energy. The focus of research is currently developing on how to store electrical energy using biomass energy. This study aims to analyze the electrochemical properties of the palm frond based carbon electrode using electrolyte solution of Na 2 SO 4 . Pre-carbonization of palm fronds was carried out using an electric oven with a temperature of 100 °C – 250 °C for 2 hours. Chemical activation using KOH activating agent with a concentration of 0.3 M at 80 °C for 2 hours. Carbonization was carried out at a temperature of 600 °C using an N 2 gas environment and followed by a chemical activation process using CO 2 gas at a temperature of 850 °C for 2.5 hours. Na 2 SO 4 with a concentration of 0.5 M is used as a solution in the manufacture of supercapacitor cells. The scanning rate is inversely proportional to the specific capacitance value generated. Characterization of electrochemical properties was carried out using the cyclic voltammetry method resulting in a specific capacitance value of 61.71 F/g for a scan rate of 1 mV/s, 57.93 F/g for scan rate of 2 mV/s and 51.37 F/g for scan  rate of 5 mV/s.
用电石溶液 Na2SO4 制得的 ARENUTE 碳电极的电化学特性分析
电力能源危机的发生是由于不可再生的电力能源的可用性。目前研究的重点是如何利用生物质能储存电能。本研究旨在分析以na2so4为电解液的棕榈叶基碳电极的电化学性能。用电烤箱对棕榈叶进行预碳化,温度为100°C - 250°C,预碳化2小时。化学活化使用浓度为0.3 M的KOH活化剂,在80℃下活化2小时。在600℃的氮气环境下进行碳化,然后在850℃的co2环境下进行化学活化2.5小时。采用浓度为0.5 M的na2so4溶液制备超级电容器电池。扫描速率与产生的具体电容值成反比。利用循环伏安法对电化学性能进行了表征,扫描速率为1 mV/s时的比电容值为61.71 F/g,扫描速率为2 mV/s时的比电容值为57.93 F/g,扫描速率为5 mV/s时的比电容值为51.37 F/g。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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