Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste

This work reports on the physical characteristics and electrochemical properties of the carbon derived from treated food-waste as electrode material. The eco-green carbon was produced by means of chemical activation using phosphoric acid as activating agent with varies activation temperature, 500 de...

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Main Authors: Sim, Cheng Kim, Majid, Siti Rohana, Mahmood, Noor Zalina
Format: Article
Published: Electrochemical Science Group 2015
Subjects:
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author Sim, Cheng Kim
Majid, Siti Rohana
Mahmood, Noor Zalina
author_facet Sim, Cheng Kim
Majid, Siti Rohana
Mahmood, Noor Zalina
author_sort Sim, Cheng Kim
collection UM
description This work reports on the physical characteristics and electrochemical properties of the carbon derived from treated food-waste as electrode material. The eco-green carbon was produced by means of chemical activation using phosphoric acid as activating agent with varies activation temperature, 500 degrees C, 600 degrees C and 700 degrees C. Highest specific surface area of 535.80 m(2)g(-1) was achieved and consists mainly of mesoporous. Field Emission Scanning Electron Microscopy images illustrated the morphology of the activated carbon was porous and homogenously distributed. The electrochemical properties of activated carbon electrodes were analyzed using cyclic voltammetry, galvanostatic charge-discharge and electrochemical impedance spectroscopy in KOH as electrolyte. The specific capacitance from cyclic voltammetry and galvanostatic charge-discharge showed 85 Fg(-1) and 106 Fg(-1). Results demonstrated that the carbon produced from treated food-waste was a promising electrode material for supercapacitor.
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spelling um.eprints-164672021-01-20T08:01:30Z http://eprints.um.edu.my/16467/ Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste Sim, Cheng Kim Majid, Siti Rohana Mahmood, Noor Zalina QD Chemistry This work reports on the physical characteristics and electrochemical properties of the carbon derived from treated food-waste as electrode material. The eco-green carbon was produced by means of chemical activation using phosphoric acid as activating agent with varies activation temperature, 500 degrees C, 600 degrees C and 700 degrees C. Highest specific surface area of 535.80 m(2)g(-1) was achieved and consists mainly of mesoporous. Field Emission Scanning Electron Microscopy images illustrated the morphology of the activated carbon was porous and homogenously distributed. The electrochemical properties of activated carbon electrodes were analyzed using cyclic voltammetry, galvanostatic charge-discharge and electrochemical impedance spectroscopy in KOH as electrolyte. The specific capacitance from cyclic voltammetry and galvanostatic charge-discharge showed 85 Fg(-1) and 106 Fg(-1). Results demonstrated that the carbon produced from treated food-waste was a promising electrode material for supercapacitor. Electrochemical Science Group 2015 Article PeerReviewed Sim, Cheng Kim and Majid, Siti Rohana and Mahmood, Noor Zalina (2015) Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste. International Journal of Electrochemical Science, 10 (12). pp. 10157-10172. ISSN 1452-3981, http://www.electrochemsci.org/papers/vol10/101210157.pdf
spellingShingle QD Chemistry
Sim, Cheng Kim
Majid, Siti Rohana
Mahmood, Noor Zalina
Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste
title Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste
title_full Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste
title_fullStr Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste
title_full_unstemmed Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste
title_short Electrochemical Performance of Activated Carbon Derived from Treated Food-Waste
title_sort electrochemical performance of activated carbon derived from treated food waste
topic QD Chemistry
work_keys_str_mv AT simchengkim electrochemicalperformanceofactivatedcarbonderivedfromtreatedfoodwaste
AT majidsitirohana electrochemicalperformanceofactivatedcarbonderivedfromtreatedfoodwaste
AT mahmoodnoorzalina electrochemicalperformanceofactivatedcarbonderivedfromtreatedfoodwaste