Carbon materials from high ash biochar for supercapacitor and improvement of capacitance with HNO sub(3) surface oxidation

The hierarchical carbon, with high specific surface area (2959 m super(2) g super(-1)) and high pore volume (1.65 cm super(3) g super(-1)) was prepared from sustainable feedstock - biochar, which was a waste from a thermochemical process optimized for bio-oil production, using KOH catalytic activati...

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Bibliographic Details
Published inJournal of power sources Vol. 236; pp. 285 - 292
Main Authors Jin, H, Wang, X, Gu, Z, Polin, J
Format Journal Article
LanguageEnglish
Published 15.08.2013
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Summary:The hierarchical carbon, with high specific surface area (2959 m super(2) g super(-1)) and high pore volume (1.65 cm super(3) g super(-1)) was prepared from sustainable feedstock - biochar, which was a waste from a thermochemical process optimized for bio-oil production, using KOH catalytic activation. The hierarchical carbon after HNO sub(3) treatment, as electrode materials, showed improved specific capacitance 260 F g super(-1) in 6 mol L super(-1) KOH at a current density of 0.6 A g super(-1), while the specific capacitance of carbon without oxidation exhibits relative high (200 F g super(-1)) at a higher current density (0.5 A g super(-1)) after 2000 cycles. More importantly, the capacitive performances of the hierarchical carbons are much better than general bio-inspired activated carbons, ordered mesoporous carbons and commercial graphene, thus highlighting the success of preparing high performance supercapacitor electrode material from biochar and potential for improving economic viability of thermochemical biofuel processes by converting biochar to a high value added carbon materials.
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ISSN:0378-7753