Pacific Island countries rely heavily on imported, expensive and unsustainable fossil fuels as their primary source for energy production. Establishing an alternative energy source from local resources would have considerable benefits; thus, the purpose of this research was to investigate the biogas generation potential of coconut copra during anaerobic digestion. Both batch and semi-continuous stirred tank reactors (SCSTRs) were investigated to optimise methane (CH4) production and increase overall conversion efficiency. The results suggest that coconut copra is amenable to anaerobic digestion with high theoretical methane yields available from the substrate’s high lipid content. However, the optimal organic loading (OL) was limited to within a narrow range of 3·6–6·0 g volatile solids (VS) (2·4–4·0 g VS/L reactor) for the batch reactors. A maximum of 0·420 L CH4/g VS was achieved at an OL of 3·6 g VS. High average methane yields of 0·708 L CH4/g VS·day were also successfully achieved for the SCSTRs, whereas increased mixing improved methane production.
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September 2014
Research Article|
September 01 2014
Anaerobic digestion of coconut copra: methane generation potential
David G. Wareham, PhD;
David G. Wareham, PhD
Associate Professor
Department of Civil and Natural Resources Engineering, University of Canterbury, Christchurch, New Zealand
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Panagiotis Elefsiniotis, PhD;
Panagiotis Elefsiniotis, PhD
Research Fellow
Department of Civil and Environmental Engineering, University of Auckland, Auckland, New Zealand
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Jeanette White, ME
Jeanette White, ME
Civil Engineer
Water Division, Aurecon Engineering, Christchurch, New Zealand
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Publisher: Emerald Publishing
Received:
March 19 2014
Accepted:
June 16 2014
Online ISSN: 1496-256X
Print ISSN: 1496-2551
ICE Publishing: All rights reserved
2014
Journal of Environmental Engineering and Science (2014) 9 (3): 162–170.
Article history
Received:
March 19 2014
Accepted:
June 16 2014
Citation
Wareham DG, Elefsiniotis P, White J (2014), "Anaerobic digestion of coconut copra: methane generation potential". Journal of Environmental Engineering and Science, Vol. 9 No. 3 pp. 162–170, doi: https://doi.org/10.1680/jees.14.00004
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