The Bioganix in-vessel composting system at Leominster, UK, received 33 515 t of waste from January 2006 to December 2007, of which 9200 t was source-segregated biodegradable municipal waste (BMW). The process operated with a nominal in-vessel retention time of 4 days. Mass balances indicated 17·1% reduction (excluding reject materials). The process was estimated to consume 186 kWh/t of waste processed as electrical energy for static plant and a further 9·6 kWh as diesel for mobile plant. Taking into account transportation and application of the compost, the estimated consumption was ~560 kWh/t of waste processed, calculated as primary energy (including electrical conversion). 96·7% of this was for processing; transportation consumed 1·3% and application 2·0%. The mixed waste compost had a high nitrogen content but, for a typical source-segregated biodegradable municipal waste, the energy potentially offset from nitrogen fixation is likely to be considerably less than that used in processing.
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August 2011
Research Article|
August 01 2011
Mass and energy balance for a rotating-drum composting plant
Paul Eades, MRes, PhD;
Paul Eades, MRes, PhD
Research Fellow
School of Civil Engineering and the Environment, University of Southampton,
Southampton, UK
(now at University of Leeds, UK
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Charles Banks, BSc, DPhila;
Charles Banks, BSc, DPhila
Professor of Environmental Biotechnology
School of Civil Engineering and the Environment, University of Southampton,
Southampton, UK
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Sonia Heaven, PhD, CEng, MICE, MCIWEM, MCIWM;
Sonia Heaven, PhD, CEng, MICE, MCIWEM, MCIWM
Principal Research Fellow
School of Civil Engineering and the Environment, University of Southampton,
Southampton, UK
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Mark Walker, PhD
Mark Walker, PhD
RCUK Research Fellow
School of Civil Engineering and the Environment, University of Southampton,
Southampton, UK
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Publisher: Emerald Publishing
Received:
July 12 2010
Accepted:
May 09 2011
Online ISSN: 1747-6534
Print ISSN: 1747-6526
ICE Publishing: All rights reserved
2011
Proceedings of the Institution of Civil Engineers - Waste and Resource Management (2011) 164 (3): 151–159.
Article history
Received:
July 12 2010
Accepted:
May 09 2011
Citation
Eades P, Banks C, Heaven S, Walker M (2011), "Mass and energy balance for a rotating-drum composting plant". Proceedings of the Institution of Civil Engineers - Waste and Resource Management, Vol. 164 No. 3 pp. 151–159, doi: https://doi.org/10.1680/warm.2011.164.3.151
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