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长期低温厌氧消化处理合成污水过程中的冷适应和可复制的微生物群落发展。

Cold adaptation and replicable microbial community development during long-term low-temperature anaerobic digestion treatment of synthetic sewage.

机构信息

Microbiology, School of Natural Sciences and Ryan Institute, National University of Ireland, Galway, Ireland.

Infrastructure and Environment, School of Engineering, University of Glasgow, Rankine Building, 79-85 Oakfield Avenue, Glasgow, G12 8LT, UK.

出版信息

FEMS Microbiol Ecol. 2018 Jul 1;94(7). doi: 10.1093/femsec/fiy095.

Abstract

The development and activity of a cold-adapting microbial community was monitored during low-temperature anaerobic digestion (LtAD) treatment of wastewater. Two replicate hybrid anaerobic sludge bed-fixed-film reactors treated a synthetic sewage wastewater at 12°C, at organic loading rates of 0.25-1.0 kg chemical oxygen demand (COD) m-3 d-1, over 889 days. The inoculum was obtained from a full-scale anaerobic digestion reactor, which was operated at 37°C. Both LtAD reactors readily degraded the influent with COD removal efficiencies regularly exceeding 78% for both the total and soluble COD fractions. The biomass from both reactors was sampled temporally and tested for activity against hydrolytic and methanogenic substrates at 12°C and 37°C. Data indicated that significantly enhanced low-temperature hydrolytic and methanogenic activity developed in both systems. For example, the hydrolysis rate constant (k) at 12°C had increased 20-30-fold by comparison to the inoculum by day 500. Substrate affinity also increased for hydrolytic substrates at low temperature. Next generation sequencing demonstrated that a shift in a community structure occurred over the trial, involving a 1-log-fold change in 25 SEQS (OTU-free approach) from the inoculum. Microbial community structure changes and process performance were replicable in the LtAD reactors.

摘要

在低温厌氧消化(LtAD)处理废水的过程中,监测了适应寒冷微生物群落的发展和活性。两个重复的混合厌氧污泥床固定膜反应器在 12°C 下处理合成污水废水,有机负荷率为 0.25-1.0 kg COD m-3 d-1,持续了 889 天。接种物来自于在 37°C 下运行的全规模厌氧消化反应器。两个 LtAD 反应器都容易降解进水,总 COD 和可溶 COD 分数的去除效率经常超过 78%。从两个反应器中随时间采集生物量,并在 12°C 和 37°C 下测试其对水解和产甲烷底物的活性。数据表明,两个系统中均显著增强了低温水解和产甲烷活性。例如,与接种物相比,在第 500 天时,12°C 时的水解速率常数(k)增加了 20-30 倍。低温下水解底物的底物亲和力也增加了。下一代测序表明,在试验过程中发生了群落结构的转变,涉及从接种物到 25 SEQS(无 OTU 方法)的 1 个对数倍变化。LtAD 反应器中可重复微生物群落结构变化和工艺性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6edf/5995215/8a3bbc0bb245/fiy095fig1.jpg

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