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上流厌氧滤池反应器中高有机负荷处理糖蜜废水的生物甲烷生成和微生物策略。

Biomethane production and microbial strategies corresponding to high organic loading treatment for molasses wastewater in an upflow anaerobic filter reactor.

机构信息

College of Architecture and Environment, Sichuan University, Chengdu, 610065, Sichuan, China.

School of Environmental and Planning, Liaocheng University, Liaocheng, 252000, China.

出版信息

Bioprocess Biosyst Eng. 2023 Jul;46(7):1033-1043. doi: 10.1007/s00449-023-02882-5. Epub 2023 May 20.

DOI:10.1007/s00449-023-02882-5
PMID:37209175
Abstract

Molasses wastewater contains high levels of organic compounds, cations, and anions, causing operational problems for anaerobic biological treatment. In this study, an upflow anaerobic filter (UAF) reactor was employed to establish a high organic loading treatment system for molasses wastewater and further investigated the microbial community dynamics in response to this stressful operation. The biogas production increased with an increase in total organic carbon (TOC) loading rate from 1.0 to 14 g/L/day, and then it decreased with further TOC loading rate addition until 16 g/L/day. The UAF reactor achieved a maximum biogas production of 6800 mL/L/day with a TOC removal efficiency of 66.5% at a TOC loading rate of 14 g/L/day. Further microbial analyses revealed that both the bacterial and archaeal communities developed multiple strategies to maintain stable operation of the reactor at high organic loading (e.g., Proteiniphilum and Defluviitoga maintained high abundances throughout the operation; Tissierella temporarily dominated the bacterial community at TOC loading rates of 8.0 to 14 g/L/day; and multi-trophic Methanosarcina shifted as the dominant methanogen at the TOC loading rates of 8.0 to 16 g/L/day). This study presents insights into a high organic loading molasses wastewater treatment system and the microbial flexibility in methane fermentation in response to process disturbances.

摘要

糖蜜废水含有高浓度的有机化合物、阳离子和阴离子,这给厌氧生物处理的操作带来了问题。在本研究中,采用上流式厌氧滤池(UAF)反应器建立了高有机负荷处理糖蜜废水的系统,并进一步研究了微生物群落对这种应激操作的动态响应。沼气产量随着总有机碳(TOC)负荷率从 1.0 增加到 14 g/L/天而增加,然后随着 TOC 负荷率的进一步增加而减少,直到 16 g/L/天。UAF 反应器在 TOC 负荷率为 14 g/L/天时,最大沼气产量为 6800 mL/L/天,TOC 去除率为 66.5%。进一步的微生物分析表明,细菌和古菌群落都发展了多种策略来维持在高有机负荷下(例如,蛋白菌属和脱卤代硫酸盐菌属在整个运行过程中保持高丰度;在 TOC 负荷率为 8.0 到 14 g/L/天时,暂养菌属暂时主导了细菌群落;多营养型产甲烷菌属随着 TOC 负荷率为 8.0 到 16 g/L/天时的变化而成为主要的产甲烷菌)稳定运行。本研究为高有机负荷糖蜜废水处理系统以及甲烷发酵中微生物对工艺干扰的灵活性提供了新的见解。

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本文引用的文献

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Effects of various materials used to promote the direct interspecies electron transfer on anaerobic digestion of low-concentration swine manure.不同促进种间直接电子转移材料对低浓度猪粪厌氧消化的影响。
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比较蔬菜废物中温厌氧消化和高温厌氧消化的微生物群落结构。
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Microbial Symbiosis: A Network towards Biomethanation.微生物共生:迈向生物甲烷化的网络。
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Syntrophic acetate oxidation replaces acetoclastic methanogenesis during thermophilic digestion of biowaste.在生物废物的高温消化过程中,协同乙酸氧化取代了产乙酸甲烷发酵。
Microbiome. 2020 Jul 3;8(1):105. doi: 10.1186/s40168-020-00862-5.
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