微波超声辅助氢氧化钾活化竹活性炭的化学和电化学性能

Q4 Chemical Engineering ASEAN Journal of Chemical Engineering Pub Date : 2021-12-30 DOI:10.22146/ajche.64617
Norakmalah Mohd Zawawi, F. Hamzah, H. Veny, Miradatul Najwa Mohd Rodhi, M. Sarif
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引用次数: 3

摘要

介绍了利用筷子工业的竹渣作为超级电容器的改性炭。采用氢氧化钾(KOH)对竹材活性炭(BAC)进行活化,并辅以微波超声(Mw-U)照射,提高竹材活性炭(BAC)的性能。采用100 W、300 W和500 W的微波功率,在保留时间30 min的条件下进行活化,并在800℃下进行炭化过程。采用扫描电镜、近端分析和终端分析对BAC进行形态学分析。然后对比表面积较大的BAC进行电化学分析,确定其电化学性能。研究表明,Mw-U辐照改善了BAC的形貌,消除了样品中的杂质,提高了BAC的含碳量。结果表明,低Mw-U辐照功率可使BAC的表面积增大。在功率强度为Mw-U、激活功率为100 W的条件下,得到了比表面积为646.87 m2/g、总孔容为2.8x10-1 cm3/g的材料。电化学性能方面,在1 mol/L KOH电解质条件下,BAC在25 mVs-1条件下的循环伏安比电容Cs为77 gf -1,表明制备的BAC具有作为超级电容器电极的能力。本研究确定了Mw-U辐照可以改善竹材在化学活化过程中的性能,形成具有超级电容器性能的BAC。
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Chemical and Electrochemical Properties of Bamboo Activated Carbon Activate Using Potassium Hydroxide Assisted by Microwave-Ultrasonic Irradiation
This paper presents the utilization of bamboo residue from the chopstick industry as modified carbon (AC) for supercapacitor application.  Bamboo activated carbon (BAC) was activated using Potassium hydroxide (KOH) and assisted with microwave ultrasonic (Mw-U) irradiation to enhance the properties of bamboo activated carbon (BAC). Different microwave (Mw) power intensities of 100 W, 300 W, and 500 W at 30 minutes of retention time have been applied on activation and the carbonization process was conducted at temperature 800°C. The BAC was analyzed for the morphology using a scanning electron microscope and proximate and ultimate analysis. Then BAC with the higher surface area was subjected to the electrochemical analysis to determine the electrochemical properties. The study indicated Mw-U irradiation improved the morphology of the BAC, eliminated the impurity of the sample, and gave higher carbon content of BAC. The findings show that lower Mw-U irradiation power provided a higher surface area of BAC. The surface area of 646.87 m2/g and total pore volume of 2.8x10-1 cm3/g was obtained with a power intensity of Mw-U activation at 100 W. While, electrochemical properties, the specific capacitance (Cs) of BAC was 77 Fg-1 at 25 mVs-1 in 1 mol/L KOH of electrolyte for cyclic voltammetry (CV) which indicates the ability of the prepared BAC to be used as an electrode in supercapacitor application. This study determined that Mw-U irradiation can improve the properties of the bamboo during chemical activation and formed BAC that consists of supercapacitor properties.
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来源期刊
ASEAN Journal of Chemical Engineering
ASEAN Journal of Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
15
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