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Conversion of orange peel waste biomass to bioelectricity using a mediator-less microbial fuel cell

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논문

Conversion of orange peel waste biomass to bioelectricity using a mediator-less microbial fuel cell

학술지

The Science of the total environment

저자명

Miran, W.; Nawaz, M.; Jang, J.; Lee, D.S.

초록

<P>Microorganisms have the potential to become a game-changer in sustainable energy production in the coming generations. Microbial fuel cells (MFCs) as an alternative renewable technology can capture bioenergy (electricity) from carbon-based sources by utilizing microorganisms as biocatalysts. This study demonstrated that MFC technology can be explored for bioelectricity production from orange peel waste (OPW), an agricultural byproduct and an organic substrate, without any chemical pretreatment or the addition of extra mediators. A maximum voltage generation of 0.59 +/- 0.02 V (at 500 Omega) was achieved in a dual chamber MFC during stable voltage generation stages. The maximum power density and current density obtained were 358.8 +/- 15.6 mW/m(2) and 847 +/- 18.4 mA/m(2), respectively. Key components of OPW, namely pectin and cellulose, were also tested in their pure form, with pectin giving a stable current, while no significant current generation was achieved using cellulose alone as the substrate, thus demonstrating the absence of cellulose-degrading bacteria. Maximum pectinase and polygalacturonase enzyme activities of 18.55 U/g and 9.04 U/g (per gram of substrate), respectively were achieved during orange peel degradation in MFCs. Bacterial identification using 16S rRNA analysis of the initial inoculum fed to the MFC, the biofilm attached to the anode, and the anode suspension, showed significant diversity in community composition. A well-known exoelectrogen, Pseudomonas, was present among the predominant genera in the anode biofilm. (C) 2016 Elsevier B.V. All rights reserved.</P>

발행연도

2016

발행기관

Elsevier Pub.Co

ISSN

0048-9697

ISSN

1879-1026

547

페이지

pp.197-205

주제어

Bioconversion; Waste treatment; Enzyme activity; Microbial growth; Microbial fuel cell; Microbial community

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1 2023-12-11

논문; 2016-03-01

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