Abdelrahman Amr Mustafa, Tabar Saba Aghdam, Cicekalan Busra, Basa Safak, Ucas Gulin, Guven Huseyin, Ozgun Hale, Ozturk Izzet, Koyuncu Ismail, van Lier Jules B, Volcke Eveline I P, Ersahin Mustafa Evren
Istanbul Technical University, Civil Engineering Faculty, Environmental Engineering Department, Ayazaga Campus, Maslak, 34469 Istanbul, Turkey; BioCo Research Group, Department of Green Chemistry and Technology, Ghent University, Coupure Links 653, 9000 Gent, Belgium.
Istanbul Technical University, Civil Engineering Faculty, Environmental Engineering Department, Ayazaga Campus, Maslak, 34469 Istanbul, Turkey.
Bioresour Technol. 2025 Feb;417:131822. doi: 10.1016/j.biortech.2024.131822. Epub 2024 Nov 16.
Energy-efficient wastewater treatment plants (WWTPs) utilize systems like high-rate activated sludge (A-stage) system to redirect organics from wastewater are redirected into energy-rich sludge (A-sludge). Anaerobic membrane bioreactors (AnMBRs) offer lower footprint and higher effluent quality compared to conventional digesters. In this study, the biological treatment and the filtration performances of AnMBRs for A-sludge digestion under mesophilic and thermophilic conditions were comparatively evaluated through lab-scale experiments, mass balancing and dynamic modeling. Under thermophilic conditions, a higher COD fraction of the influent sludge was converted into methane gas than under mesophilic conditions (65% versus 57%). The energy balance indicated that the surplus energy recovery under thermophilic conditions was less than the additional energy required for heating the AnMBR, resulting in a more than three-fold higher net energy recovery under mesophilic conditions. Therefore, operating an AnMBR for sludge digestion under mesophilic conditions has a higher potential to improve the energy balance in WWTPs.
节能污水处理厂(WWTPs)利用高速活性污泥(A阶段)系统等将废水中的有机物转移到富含能量的污泥(A污泥)中。与传统消化池相比,厌氧膜生物反应器(AnMBRs)占地面积更小,出水水质更高。在本研究中,通过实验室规模实验、质量平衡和动态建模,对中温和高温条件下AnMBRs处理A污泥消化的生物处理和过滤性能进行了比较评估。在高温条件下,进水污泥中转化为甲烷气体的化学需氧量(COD)比例高于中温条件(65%对57%)。能量平衡表明,高温条件下的剩余能量回收低于加热AnMBR所需的额外能量,导致中温条件下的净能量回收高出三倍多。因此,在中温条件下运行AnMBR进行污泥消化,在改善污水处理厂能量平衡方面具有更高的潜力。