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低频超声预处理垃圾渗滤液提升沼气:厌氧消化性能与能量平衡。

The biogas upgrading from landfill leachate pretreated with low-frequency ultrasonic: anaerobic digestion performances and energy balance.

机构信息

Department of Environmental Engineering, University of Tehran, Tehran, Iran.

Faculty of Environment, School of Engineering, University of Tehran, Tehran, Iran.

出版信息

Sci Rep. 2024 Jan 5;14(1):652. doi: 10.1038/s41598-023-42996-0.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cedd/10770138/92f5574425c2/41598_2023_42996_Fig1_HTML.jpg

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