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Journal article

Comparative use of different emission measurement approaches to determine methane emissions from a biogas plant

In Waste Management 2017, Volume 68, pp. 173-185
From

German Biomass Resarch Centre gGmbH1

Department of Environmental Engineering, Technical University of Denmark2

Residual Resource Engineering, Department of Environmental Engineering, Technical University of Denmark3

SP Technical Research Institute of Sweden4

A sustainable anaerobic biowaste treatment has to mitigate methane emissions from the entire biogas production chain, but the exact quantification of these emissions remains a challenge. This study presents a comparative measurement campaign carried out with on-site and ground-based remote sensing measurement approaches conducted by six measuring teams at a Swedish biowaste treatment plant.

The measured emissions showed high variations, amongst others caused by different periods of measurement performance in connection with varying operational states of the plant. The overall methane emissions measured by ground-based remote sensing varied from 5 to 25kgh-1 (corresponding to a methane loss of 0.6-3.0% of upgraded methane produced), depending on operating conditions and the measurement method applied.

Overall methane emissions measured by the on-site measuring approaches varied between 5 and 17kgh-1 (corresponding to a methane loss of 0.6 and 2.1%) from team to team, depending on the number of measured emission points, operational state during the measurements and the measurement method applied. Taking the operational conditions into account, the deviation between different approaches and teams could be explained, in that the two largest methane-emitting sources, contributing about 90% of the entire site's emissions, were found to be the open digestate storage tank and a pressure release valve on the compressor station.

Language: English
Year: 2017
Pages: 173-185
ISSN: 0956053x and 18792456
Types: Journal article
DOI: 10.1016/j.wasman.2017.05.053
ORCIDs: Scheutz, Charlotte and Delre, Antonio

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