厌氧消化
沼气
乙二醇
废物管理
生物反应器
制浆造纸工业
污染
化学
无氧运动
环境科学
生物降解
甲烷
生物
工程类
有机化学
生态学
生理学
作者
Gabrielle R. Joslin,Daniel G. Barber,Lindsay L. Barber,Ping Liu,Olukayode Kuloyo,Kangsa Oentoro,J. C. Liu,Ashley V. Baugh,Jeffrey R. Fedenko,Ioannis Melas,Phillip Hamilton,D. M. Allen,Richard Tennant
标识
DOI:10.1016/j.biortech.2023.129683
摘要
Anaerobic digestion is an established method for the biological conversion of waste feedstocks to biogas and biomethane. While anaerobic digestion is an excellent waste management technique, it can be susceptible to toxins and pollutants from contaminated feedstocks, which may have a detrimental impact on a digester's efficiency and productivity. Ethylene glycol (EG) is readily used in the heat-transfer loops of anaerobic digestion facilities to maintain reactor temperature. Failure of the structural integrity of these heat transfer loops can cause EG to leak into the digester, potentially causing a decrease in the resultant gas yields. Batch fermentations were incubated with 0, 10, 100 and 500 ppm (parts per million) of EG, and analysis showed that the EG was completely metabolised by the digester microbiome. The concentrations of EG tested showed significant increases in gas yields, however there were no significant changes to the digester microbiome.
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