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J Environ Manage


Title:Semi-continuous anaerobic co-digestion of cow manure and steam-exploded Salix with recirculation of liquid digestate
Author(s):Estevez MM; Sapci Z; Linjordet R; Schnurer A; Morken J;
Address:"Department of Mathematical Sciences and Technology, Norwegian University of Life Sciences, P.O. Box 5003, 1432 As, Norway. Electronic address: maria.magdalena.estevez@nmbu.no. Department of Mathematical Sciences and Technology, Norwegian University of Life Sciences, P.O. Box 5003, 1432 As, Norway; Department of Environmental Engineering, Bitlis Eren University, 13000 Bitlis, Turkey. Bioforsk, Norwegian Institute for Agricultural and Environmental Research, Frederik A. Dahls vei 20, 1432 As, Norway. Department of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences, P.O. Box 5003, 1432 As, Norway; Department of Microbiology, Uppsala BioCenter, Swedish University of Agricultural Sciences, P.O. Box 7025, SE 750 07 Uppsala, Sweden. Department of Mathematical Sciences and Technology, Norwegian University of Life Sciences, P.O. Box 5003, 1432 As, Norway"
Journal Title:J Environ Manage
Year:2014
Volume:20140215
Issue:
Page Number:9 - 15
DOI: 10.1016/j.jenvman.2014.01.028
ISSN/ISBN:1095-8630 (Electronic) 0301-4797 (Linking)
Abstract:"The effects of recirculating the liquid fraction of the digestate during mesophilic anaerobic co-digestion of steam-exploded Salix and cow manure were investigated in laboratory-scale continuously stirred tank reactors. An average organic loading rate of 2.6 g VS L(-1) d(-1) and a hydraulic retention time (HRT) of 30 days were employed. Co-digestion of Salix and manure gave better methane yields than digestion of manure alone. Also, a 16% increase in the methane yield was achieved when digestate was recirculated and used instead of water to dilute the feedstock (1:1 dilution ratio). The reactor in which the larger fraction of digestate was recirculated (1:3 dilution ratio) gave the highest methane yields. Ammonia and volatile fatty acids did not reach inhibitory levels, and some potentially inhibitory compounds released during steam explosion (i.e., furfural and 5-hydroxy methyl furfural) were only detected at trace levels throughout the entire study period. However, accumulation of solids, which was more pronounced in the recycling reactors, led to decreased methane yields in those systems after three HRTs. Refraining from the use of fresh water to dilute biomass with a high-solids content and obtaining a final digestate with increased dry matter content might offer important economic benefits in full-scale processes. To ensure long-term stability in such an approach, it would be necessary to optimize separation of the fraction of digestate to be recirculated and also perform proper monitoring to avoid accumulation of solids"
Keywords:"Ammonia/chemistry Anaerobiosis Animals Biodegradation, Environmental Biofuels/analysis Biological Oxygen Demand Analysis Biomass Bioreactors Cattle Fatty Acids, Volatile/chemistry Furaldehyde/chemistry Hydrogen-Ion Concentration *Manure Methane/chemistry;"
Notes:"MedlineEstevez, Maria M Sapci, Zehra Linjordet, Roar Schnurer, Anna Morken, John eng Research Support, Non-U.S. Gov't England 2014/02/19 J Environ Manage. 2014 Apr 1; 136:9-15. doi: 10.1016/j.jenvman.2014.01.028. Epub 2014 Feb 15"

 
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