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  • The paper presents the results of discontinuous high-solids mesophilic anaerobic co-digestion of agricultural substrates. The test was carried out in a newly designed horizontal anaerobic fermenter created from a silage bag of the volume 0.7 m3. The batch was used from a garage biogas station Šumperk operated by a company FORTEX-AGS Ltd (BIOFerm Technology GmbH). The batch of the weight 400 kg was consisted of 30 wt % mixed substrates (corn silage, grass silage, beef cattle manure etc.), 45 wt % solid digestate from the previous digestion cycle of the station and 25 wt % percolate from the previous cycles. The content of total solids was 20 wt %. The aim was focused on intensive recirculation of percolate. During 14 days of the discontinuous process, the intensity of biogas production reached 2.37 mN3.m-3.d-1, due to the active reaction volume equalled to 0.420 m3, or 0.0025 mN3.kg-1.d-1 from the input mixture. The yield of methane was 0.018 mN3.kg-1 from the batch, or 0.111 mN3.kgVS-1 from the organic solids. The result indicated the need to optimize / maximize the device for obtaining higher yield of methane.
  • The paper presents the results of discontinuous high-solids mesophilic anaerobic co-digestion of agricultural substrates. The test was carried out in a newly designed horizontal anaerobic fermenter created from a silage bag of the volume 0.7 m3. The batch was used from a garage biogas station Šumperk operated by a company FORTEX-AGS Ltd (BIOFerm Technology GmbH). The batch of the weight 400 kg was consisted of 30 wt % mixed substrates (corn silage, grass silage, beef cattle manure etc.), 45 wt % solid digestate from the previous digestion cycle of the station and 25 wt % percolate from the previous cycles. The content of total solids was 20 wt %. The aim was focused on intensive recirculation of percolate. During 14 days of the discontinuous process, the intensity of biogas production reached 2.37 mN3.m-3.d-1, due to the active reaction volume equalled to 0.420 m3, or 0.0025 mN3.kg-1.d-1 from the input mixture. The yield of methane was 0.018 mN3.kg-1 from the batch, or 0.111 mN3.kgVS-1 from the organic solids. The result indicated the need to optimize / maximize the device for obtaining higher yield of methane. (en)
Title
  • High-solids anaerobic co-digestion of agricultural substrates in the silage bag
  • High-solids anaerobic co-digestion of agricultural substrates in the silage bag (en)
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  • High-solids anaerobic co-digestion of agricultural substrates in the silage bag
  • High-solids anaerobic co-digestion of agricultural substrates in the silage bag (en)
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  • RIV/61989100:27710/13:86086260!RIV14-TA0-27710___
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  • P(TA01020959), S
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  • 1
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  • 77437
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  • RIV/61989100:27710/13:86086260
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  • high-solids anaerobic digestion, methane, biogas, silage bag (en)
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  • BG - Bulharská republika
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  • [A35C81DD740F]
http://linked.open...i/riv/nazevZdroje
  • SGEM 2013 : 13th international multidisciplinary scientific geoconference : GeoConference on Ecology, Economics, Education and legislation : 16-22, June, 2013, Albena, Bulgaria : conference proceedings. [Book 5]. Volume I
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  • 1
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  • Obroučka, Karel
  • Rusín, Jiří
  • Kašáková, Kateřina
issn
  • 1314-2704
number of pages
http://bibframe.org/vocab/doi
  • 10.5593/SGEM2013/BE5.V1/S20.071
http://localhost/t...ganizacniJednotka
  • 27710
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