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  4. Food Waste Bioconversion Features Depending on the Regime of Anaerobic Digestion
 
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Food Waste Bioconversion Features Depending on the Regime of Anaerobic Digestion

Type
Journal article
Language
English
Date issued
2025
Author
Cieślik, Marta Zofia
Lewicki, Andrzej 
Czekała, Wojciech 
Vaskina, Iryna 
Faculty
Wydział Inżynierii Środowiska i Inżynierii Mechanicznej
PBN discipline
environmental engineering, mining and energy
Journal
Energies
ISSN
1996-1073
DOI
10.3390/en18174567
Web address
https://www.mdpi.com/1996-1073/18/17/4567
Volume
18
Number
17
Pages from-to
art. 4567
Abstract (EN)
Approximately one-third of global food production is wasted annually, which contributes significantly to greenhouse gas emissions and economic costs. Anaerobic digestion (AD) is an effective method for converting food waste into biogas, but its efficiency depends on factors such as temperature and substrate composition. This study compared mesophilic and thermophilic AD of selectively collected fruit and vegetable waste, quantifying process efficiency and identifying factors leading to collapse. Studies were performed in 1 dm3 reactors with gradually increasing organic loading rates until process collapse. Process dynamics, stability, and gas yields were assessed through daily biogas measurements and analyses of pH, FOS/TAC ratio, sCOD, ammonia, volatile fatty acids, alcohols, total and volatile solids, and C/N ratio. Research has shown that peak methane yields occurred at OLR = 0.5–1.0 kg VS·m−3·d−1, with thermophilic systems producing 0.63–5.48% more methane during stable phases. Collapse occurred at OLR = 3.0 in thermophilic and 4.0 in mesophilic reactors, accompanied by sharp increases in methanol, acetic acid, butyric acid, propionic acid, and FOS/TAC. The pH dropped to 5.49 and 6.09. While thermophilic conditions offered higher methane yields, they were more susceptible to rapid process destabilization due to intermediate metabolite accumulation.
Keywords (EN)
  • waste management

  • sustainability

  • process stability

  • biogas

License
cc-bycc-by CC-BY - Attribution
Open access date
August 28, 2025
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