Clean Technologies (Jan 2022)

Biogas, Biomethane and Digestate Potential of By-Products from Green Biorefinery Systems

  • Rajeev Ravindran,
  • Kwame Donkor,
  • Lalitha Gottumukkala,
  • Abhay Menon,
  • Amita Jacob Guneratnam,
  • Helena McMahon,
  • Sybrandus Koopmans,
  • Johan P. M. Sanders,
  • James Gaffey

DOI
https://doi.org/10.3390/cleantechnol4010003
Journal volume & issue
Vol. 4, no. 1
pp. 35 – 50

Abstract

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Global warming and climate change are imminent threats to the future of humankind. A shift from the current reliance on fossil fuels to renewable energy is key to mitigating the impacts of climate change. Biological raw materials and residues can play a key role in this transition through technologies such as anaerobic digestion. However, biological raw materials must also meet other existing food, feed and material needs. Green biorefinery is an innovative concept in which green biomass, such as grass, is processed to obtain a variety of protein products, value-added co-products and renewable energy, helping to meet many needs from a single source. In this study, an analysis has been conducted to understand the renewable energy potential of green biorefinery by-products and residues, including grass whey, de-FOS whey and press cake. Using anaerobic digestion, the biogas and biomethane potential of these samples have been analyzed. An analysis of the fertiliser potential of the resulting digestate by-products has also been undertaken. All the feedstocks tested were found to be suitable for biogas production with grass whey, the most suitable candidate with a biogas and biomethane production yield of 895.8 and 544.6 L/kg VS, respectively, followed by de-FOS whey and press cake (597.4/520.3 L/kg VS and 510.7/300.3 L/kg VS, respectively). The results show considerable potential for utilizing biorefinery by-products as a source for renewable energy production, even after several value-added products have been co-produced.

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