Biomethanisation of sewage sludge: Sonication pretreatment and monitoring of microbial communities

IF 6.7 2区 环境科学与生态学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Environmental Technology & Innovation Pub Date : 2024-07-10 DOI:10.1016/j.eti.2024.103750
M. Ángeles Martín , Antonio Serrano , Bárbara Rincón , M. Carmen Gutiérrez , Francisco Amil-Ruiz , Marina Barbudo-Lunar , José Alhama , Carmen Michán , José Ángel Siles
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Abstract

The improvement of mesophilic biomethanisation of recalcitrant sewage sludge derived from urban wastewater treatment through the application of a sonication pretreatment was evaluated in parallel in two pilot-scale anaerobic digesters (two biological replicates: reactors RA and RB). The valorisation process was monitored through a novel and holistic approach that related the biomethanisation yield, and its main batch operational parameters, with the abundance of archaeal and bacterial communities in the anaerobic inocula. Sonication allowed achieving a methane yield coefficient derived from sewage sludge of 240 ± 20 mLSTPCH4/g VS (volatile solids) at the load range of 0.8–4.0 g VS/L in both reactors. The process was more stable in reactor B, with a wider range of loads being allowed (up to 5.29 g VS/L). Monitoring the presence of Archaea in the mixing liquor revealed a variation in their abundance throughout the process which was directly related to the availability of organic matter and pH. Advanced metagenomic analysis showed the phylogenetic and functional diversity of the complex microbiome involved. While Bacteria were widely distributed in 35 phyla, Archaea fitted in only two. Euryarchaeota was the majoritarian archaeal phylum (99.5 %) and its more abundant families are linked to methanogenic metabolism. Functional analysis revealed several relevant metabolic pathways that followed similar trends in both reactors. “Methane metabolism” clearly diminished at the end of the process in concordance with the exhaust of methane generation, while “ABC transporters” or “two-component systems”, involved in bacterial survival to changing environments, followed the opposite pattern. This integrated approach could help to increase the methanogenic valorisation of sewage sludge.

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污水污泥的生物甲烷化:超声预处理和微生物群落监测
在两个中试规模的厌氧消化器(两个生物复制:RA 反应器和 RB 反应器)中并行评估了通过应用超声预处理来改善城市污水处理中产生的难降解污泥的中温生物甲烷化。该方法将生物甲烷化产率及其主要批次运行参数与厌氧接种体中古细菌和细菌群落的丰度联系起来。在两个反应器中,在 0.8-4.0 g VS/L 的负荷范围内,超声处理可使来自污水污泥的甲烷产率系数达到 240 ± 20 mLSTPCH4/g VS(挥发性固体)。反应器 B 中的工艺更为稳定,允许的负荷范围更广(高达 5.29 g VS/L)。对混合液中古细菌存在情况的监测显示,在整个工艺过程中,古细菌的丰度存在变化,这与有机物的可用性和 pH 值直接相关。先进的元基因组分析显示了复杂微生物群的系统发育和功能多样性。细菌广泛分布在 35 个门类中,而古细菌只分布在两个门类中。极古细菌门(Euryarchaeota)是最主要的古细菌门(99.5%),其较多的家族与甲烷代谢有关。功能分析显示,在两个反应器中,有几种相关的代谢途径呈现出相似的趋势。"甲烷代谢 "在反应过程结束时明显减少,与甲烷生成量的减少相一致,而参与细菌在不断变化的环境中生存的 "ABC 转运体 "或 "双组分系统 "则遵循相反的模式。这种综合方法有助于提高污水污泥的产甲烷价值。
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来源期刊
Environmental Technology & Innovation
Environmental Technology & Innovation Environmental Science-General Environmental Science
CiteScore
14.00
自引率
4.20%
发文量
435
审稿时长
74 days
期刊介绍: Environmental Technology & Innovation adopts a challenge-oriented approach to solutions by integrating natural sciences to promote a sustainable future. The journal aims to foster the creation and development of innovative products, technologies, and ideas that enhance the environment, with impacts across soil, air, water, and food in rural and urban areas. As a platform for disseminating scientific evidence for environmental protection and sustainable development, the journal emphasizes fundamental science, methodologies, tools, techniques, and policy considerations. It emphasizes the importance of science and technology in environmental benefits, including smarter, cleaner technologies for environmental protection, more efficient resource processing methods, and the evidence supporting their effectiveness.
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