Department of Environmental Engineering, University of Tehran, Tehran, Iran.
Faculty of Environment, School of Engineering, University of Tehran, Tehran, Iran.
Sci Rep. 2024 Jan 5;14(1):652. doi: 10.1038/s41598-023-42996-0.
The efficient biogas production from landfill leachate (LL) is one of hot topics in anaerobic digestion systems. Higher bioavailability of LL can be achieved by application a feasible and promising pretreatment technologies in order to utilize as a substrate for anaerobic reactors. Here, the enhanced bioavailabity of LL using the low-frequency ultrasonic process and energy balance in anaerobic digestion process was estimated within incubation period of 24 days. The optimal performance of low-frequency ultrasonic for LL biodegradability index: sCOD and TVFA were estimated under influencing parameters: ultrasonic density (UD) (0.02-0.14 W/mL) and Ultrasonic time (UT) (0-12 min). Moreover, the effects of low-frequency ultrasonic pretreatment process on biogas production in batch mode anaerobic reactors operated at 37 ± 1 °C were surveyed for daily and cumulative methane production, operational performance and energy balance. An increased sCOD (820 mg/L) and TVFA (659 mg/L) were observed under optimum codition: UD (0.1 W/mL) and UT (10 min). The highest methane production (430 mL) was found in reactor 4, where %15 volume ratio of LL pretreated with low frequency ultrasonic were feed in. Energy balance assessment indicated that output energy for anaerobic reactors assissted with ultrasonic in range of + 6.99 and + 7.98 kJ/g VS removed. Therefore, incorporation the low-frequency ultrasonic and digestion process revealed a promising and economic technique to improve biomethane potential and energy balance from LL.
从垃圾渗滤液(LL)中高效生产沼气是厌氧消化系统中的热门话题之一。通过应用可行且有前途的预处理技术,可以提高 LL 的生物利用度,将其用作厌氧反应器的底物。在这里,通过 24 天的孵育期,评估了低频超声工艺对厌氧消化过程中能量平衡的影响,以提高 LL 的生物利用度。在影响参数:超声密度(UD)(0.02-0.14 W/mL)和超声时间(UT)(0-12 分钟)下,评估了低频超声对 LL 生物降解指数:sCOD 和 TVFA 的最佳性能。此外,还研究了低频超声预处理工艺对在 37 ± 1°C 下运行的分批式厌氧反应器中沼气产量的影响,以评估每日和累积甲烷产量、运行性能和能量平衡。在最佳条件下:UD(0.1 W/mL)和 UT(10 分钟)下,观察到 sCOD(820 mg/L)和 TVFA(659 mg/L)增加。在反应器 4 中发现了最高的甲烷产量(430 mL),其中以低频超声预处理的 LL 体积比为 15%。能量平衡评估表明,在超声辅助的厌氧反应器中,输出能量在范围+6.99 和+7.98 kJ/g VS 去除之间。因此,将低频超声和消化工艺结合使用,显示出一种有前途且经济的技术,可以提高 LL 的生物甲烷潜力和能量平衡。