Musluoğlu Ahmet, Dereli Recep Kaan, Arıkan Osman Atilla, Övez Serra Selin
Hochreiter Biyogaz A.Ş., Beyoğlu, Istanbul, Türkiye.
Environmental Engineering Department, Istanbul Technical University, Maslak, Istanbul, Türkiye E-mail:
Water Sci Technol. 2025 May;91(10):1157-1171. doi: 10.2166/wst.2025.062. Epub 2025 May 8.
Anaerobic digestion (AD) of the organic fraction of municipal solid waste (OFMSW) is a crucial waste management method for the diversion of organics from landfills to decrease greenhouse gas emissions while enabling energy recovery. A number of dry AD systems treating OFMSW have notably increased over the last two decades. In this study, mono-digestion of mechanically sorted OFMSW and co-digestion of OFMSW, chicken manure and WWTP sludge were evaluated using triplicate full-scale digesters. Results demonstrated that 5-6.6 m/m.day biogas could be produced at an organic loading rate (OLR) of 10.5-12 kg TVS/m.day, with an HRT of 16-18 days. Beyond this threshold, further increases in OLR resulted in reduced gas production due to ammonia inhibition as a result of broiler chicken manure overload. Biogas yield decline started when the chicken manure content of the feed was increased to 10% (w/w) and accompanied with the VFA/TA ratio rising above 0.8. Process instability and a sharp drop in biogas productivity were observed when the feed contained more than 20% (w/w) chicken manure, where VFA/TA ratio exceeded 1.0. Results underline the importance of balancing different properties (e.g., degradability, carbon to nitrogen (C/N) ratio) of co-substrates to optimize the biogas yield and to ensure process stability.
城市固体废弃物有机组分(OFMSW)的厌氧消化(AD)是一种至关重要的废物管理方法,可将有机物从垃圾填埋场转移出来,以减少温室气体排放,同时实现能源回收。在过去二十年中,处理OFMSW的干式厌氧消化系统数量显著增加。在本研究中,使用三个全尺寸消化器对机械分选的OFMSW单级消化以及OFMSW、鸡粪和污水处理厂污泥的共消化进行了评估。结果表明,在有机负荷率(OLR)为10.5 - 12 kg TVS/m³·天、水力停留时间(HRT)为16 - 18天的条件下,每天可产生5 - 6.6立方米/立方米·天的沼气。超过此阈值后,由于肉鸡粪便过载导致氨抑制,OLR的进一步增加会导致气体产量降低。当饲料中鸡粪含量增加到10%(w/w)且挥发性脂肪酸/总碱度(VFA/TA)比率升至0.8以上时,沼气产量开始下降。当饲料中鸡粪含量超过20%(w/w)且VFA/TA比率超过1.0时,观察到过程不稳定且沼气生产率急剧下降。结果强调了平衡共底物不同特性(如可降解性、碳氮比(C/N))对于优化沼气产量和确保过程稳定性的重要性。