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Semi-continuous anaerobic co-digestion of dairy manure, meat and bone meal and crude glycerol: Process performance and digestate valorization

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  • Andriamanohiarisoamanana, Fetra J.
  • Saikawa, Aya
  • Kan, Takumi
  • Qi, Guangdou
  • Pan, Zhifei
  • Yamashiro, Takaki
  • Iwasaki, Masahiro
  • Ihara, Ikko
  • Nishida, Takehiro
  • Umetsu, Kazutaka

Abstract

The objective of this study was to investigate the effects of the addition of meat and bone meal (MBM) and crude glycerol (CG) on the anaerobic digestion of dairy manure (DM) with respect to digestion performance and digestate fertilizer value. The anaerobic co-digestion of DM, MBM and CG was conducted in semi-continuous stirred tank reactors at 37 °C with organic loadings between 2.63 and 2.86 g volatile solids (gVS)/L·d. Run 1 was a control reactor, while in Runs 2 and 3, DM was co-digested with MBM at ratios of 3.0:1.0 and 1.0:1.0 (gVSDM:gVSMBM), respectively. In Run 4, DM and MBM were co-digested with CG at a ratio of 1.0:0.7:0.3 (gVSDM:gVSMBM:gVSCG). The results showed that methane yields were increased by 9.1% and 30.2% in Runs 2 and 3, respectively, compared to Run 1, while the highest methane yield (0.39 L/gVSadded·d) was obtained in Run 4. The co-digestion of DM with MBM increased the ammoniacal nitrogen in the digestate by 2.1- to 2.3-fold, while no significant difference was observed for phosphorus. Due to the overabundance of nutrients in soil, the recovery of phosphorus and nitrogen and the recycling of water are the best strategies to sustain anaerobic digestion via an environmentally friendly approach.

Suggested Citation

  • Andriamanohiarisoamanana, Fetra J. & Saikawa, Aya & Kan, Takumi & Qi, Guangdou & Pan, Zhifei & Yamashiro, Takaki & Iwasaki, Masahiro & Ihara, Ikko & Nishida, Takehiro & Umetsu, Kazutaka, 2018. "Semi-continuous anaerobic co-digestion of dairy manure, meat and bone meal and crude glycerol: Process performance and digestate valorization," Renewable Energy, Elsevier, vol. 128(PA), pages 1-8.
  • Handle: RePEc:eee:renene:v:128:y:2018:i:pa:p:1-8
    DOI: 10.1016/j.renene.2018.05.056
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    Cited by:

    1. Wacław Romaniuk & Ivan Rogovskii & Victor Polishchuk & Liudmyla Titova & Kinga Borek & Witold Jan Wardal & Serhiy Shvorov & Yevgen Dvornyk & Ihor Sivak & Semen Drahniev & Dmytro Derevjanko & Kamil Rom, 2022. "Study of Methane Fermentation of Cattle Manure in the Mesophilic Regime with the Addition of Crude Glycerine," Energies, MDPI, vol. 15(9), pages 1-13, May.
    2. Aleksandra Załuszniewska & Anna Nogalska, 2022. "The Effect of Meat and Bone Meal (MBM) on Phosphorus (P) Content and Uptake by Crops, and Soil Available P Balance in a Six-Year Field Experiment," Sustainability, MDPI, vol. 14(5), pages 1-12, March.
    3. Khoshnevisan, Benyamin & Duan, Na & Tsapekos, Panagiotis & Awasthi, Mukesh Kumar & Liu, Zhidan & Mohammadi, Ali & Angelidaki, Irini & Tsang, Daniel CW. & Zhang, Zengqiang & Pan, Junting & Ma, Lin & Ag, 2021. "A critical review on livestock manure biorefinery technologies: Sustainability, challenges, and future perspectives," Renewable and Sustainable Energy Reviews, Elsevier, vol. 135(C).
    4. Zhou, Jialiang & Zhang, Yuanhui & Khoshnevisan, Benyamin & Duan, Na, 2021. "Meta-analysis of anaerobic co-digestion of livestock manure in last decade: Identification of synergistic effect and optimization synergy range," Applied Energy, Elsevier, vol. 282(PA).
    5. Kantorek, Marcin & Jesionek, Krzysztof & Polesek-Karczewska, Sylwia & Ziółkowski, Paweł & Stajnke, Michał & Badur, Janusz, 2021. "Thermal utilization of meat-and-bone meal using the rotary kiln pyrolyzer and the fluidized bed boiler – The performance of pilot-scale installation," Renewable Energy, Elsevier, vol. 164(C), pages 1447-1456.
    6. Olkis, Christopher & Brandani, Stefano & Santori, Giulio, 2019. "Design and experimental study of a small scale adsorption desalinator," Applied Energy, Elsevier, vol. 253(C), pages 1-1.
    7. Suparmaniam, Uganeeswary & Lam, Man Kee & Uemura, Yoshimitsu & Lim, Jun Wei & Lee, Keat Teong & Shuit, Siew Hoong, 2019. "Insights into the microalgae cultivation technology and harvesting process for biofuel production: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 115(C).
    8. Sarrion, A. & Ipiales, R.P. & de la Rubia, M.A. & Mohedano, A.F. & Diaz, E., 2023. "Chicken meat and bone meal valorization by hydrothermal treatment and anaerobic digestion: Biofuel production and nutrient recovery," Renewable Energy, Elsevier, vol. 204(C), pages 652-660.

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