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Anaerobic Co-Digestion with Food Waste: A Possible Alternative to Overcome the Energy Deficit of Sludge Thermal Pretreatment.

Yang LiuYifeng ZongTian XieHainong SongJian Zhang
Published in: ACS omega (2022)
Thermal pretreatment (TP) was an effective method to improve the anaerobic digestion of waste-activated sludge. In order to balance the energy consumption of sludge TP integrated with anaerobic digestion, food waste was introduced as a co-substrate to achieve an energy self-sustainable sludge treatment system. An anaerobic biodegradability test was performed using thermal pretreated sludge and food waste in order to clarify the kinetics and mechanism of co-digestion, especially the synergetic effect on specific methane yield. The prominent synergetic effect was an initial acceleration of cumulative methane production by 20.7-23.8% observed during the first 15 days. The modified Gompertz model presented a better agreement of the experimental results, and it was a suitable tool for methane production prediction of mono- and co-digestion. The energy assessment showed that co-digestion with food waste was a sustainable solution. When the moisture content of the TP sludge was 80-90%, the energy compensation required was about 0.04-0.22 t VS Foodwaste /t VS Sludge , which could maintain the integration of neutral or even positive energy between TP and anaerobic digestion.
Keyphrases
  • anaerobic digestion
  • sewage sludge
  • antibiotic resistance genes
  • municipal solid waste
  • microbial community
  • wastewater treatment
  • heavy metals
  • carbon dioxide
  • combination therapy