Affiliation:
1. Politeknik Negeri Padang
2. Andalas University
3. Riau University
Abstract
Identification of the potential of cacao peel as the basic material of environmentally friendly supercapacitor electrodes had been identified. This identification was carried out through analysis of specific dimensions, densities, and capacitances. Activated carbon electrodes were made by a combination of chemical and physics activation methods. The technique of preparing carbon electrodes started from pre-carbonization, milling, chemical activation, pellet making, carbonization, and completed it with physics activation. In addition, the chemical activation applied 0.3 M KOH activator, whereas the physical activation used CO2 gas at a temperature of 700°C. The physical properties were tested by density and X-Ray Diffraction (XRD), Scanning Electron Microscopy (SEM), and Energy Dipersive X-Ray (EDX). While the electrochemical properties were tested using the Ciclic Voltammetric (CV) method. The results showed that the mass, diameter, thickness, and density of the electrode decreased after passing the carbonization-activation process. A value of 2θ in the range of 23,569o for the reflection fields 002 and 44,781o for the reflection field 100 was obtained in the XRD measurements . The X-ray diffraction curve pointed out that the surface area of C 0,3 M sample was sizeable with the Lc value and lattice distance d002 around 20,01669 Å and 3,771705 Å. SEM analysis indicated the presence of pores between particles spread almost evenly on the surface of the sample, with an irregular and elongated shape. EDX testing showed carbon element of 87.05% while atomic percentage of 91.02%, and correspondently, electrochemical test showed the value of specific capacitance obtained at a concentration of 0.3 M was 90.2 F/gr with a density of 0.850gr/cm3. From the results of the tests obtained, it was shown that cacao peels was very potential to be used as electrodes for supercapacitors.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference20 articles.
1. Abioye, A. M and Ani, F.N.,2015, Recent development in the production of activated carbon electrodes from agricultural waste biomass for supercapacitors: A review. Renewable and Sustainable Energy Reviews 5, p.1282–1293.
2. Taer. E., M. Deraman., R.Taslim., Iwantono. 2013. Preparation of binderless activated carbon monolith from pre-carbonization rubber wood sawdust by controlling of carbonization and activation condition in the 4th Nanoscience and Nanotechnology Symphosium (NNS)- AIP/ Conference Proceedings 1554, American Insitute of Physic, Melville, NY. pp.33-37.
3. Taer E., Yusra H., Iwantono., Taslim R., 2016, Analisa Dimensi, Densitas dan kapasitansi Spesifik Elektroda Karbon Superkapasitor dari Bunga Rumput Gajah dengan Variasi Konsentrasi Pengaktifan KOH, Jurnal Fisika dan Aplikasinya, vol. 1, no. 1, pp.2541-3384.
4. Basri N.H., Deraman M., Suleman M., Nor N.S.M., Dolah B.S.M., Sahri M.I., Aisyah S.S., 2016, Energy and Power of Supercapacitor Using Carbon Electrode Deposited with Nanoparticles Nickel Oxide. International Journal of Electrochemical science, pp.95-110.
5. J.S. Nazzal, W. Kaminska, B. Michalkiewicz, dan Z.C. Koren, 2013, Production, characterization and methane storage potential of KOH-activated carbon from sugarcane molasses. Industrial Crops and Products, 47, p.153– 159.
Cited by
8 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献