高负荷厌氧序批式反应器处理生物柴油废水的性能研究

IF 3 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Erlon Lopes Pereira, Alisson Carraro Borges, Greicelene Jesus da Silva, Ann Honor Mounteer, Frederico Garcia Pinto, Marcos Rogério Tótola
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引用次数: 0

摘要

关于厌氧序批式反应器(AnSBR)高负荷运行性能的研究很少。本研究旨在通过报告在AnSBR中处理生物柴油废水时所获得的经验,从而为技术和科学文献做出贡献,AnSBR的有机负荷率(OLR)高于间歇式反应器项目中常用的负荷率。为此,对废水进行了理化和色谱分析。此外,对生物量进行了化学和形态学评估,以及细菌多样性特征。在此基础上,从COD去除效率和缓冲能力两方面对系统性能进行了讨论。稳态下,AnSBR的COD去除率达到10%,有利于生物质的碎片化和冲蚀。这表明,在平均施加OLR为11.3 gCOD L−1 d−1的优化条件下,AnSBR的启动和运行对微生物群的选择起到了压力作用,刺激了总挥发性酸的产生,促进了系统的还原效率和酸化。在这种情况下,食品/微生物比大于1.0 gCOD gTVS - 1 d - 1有利于致酸活性,总挥发性酸/碳酸氢盐碱度比大于1.9可能表明酸化。添加支持材料以固定/增加生物质保留和/或在两阶段下运行,可能是在高olr下提高AnSBR效率的有趣替代方案。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of an anaerobic sequencing batch reactor operating under high organic loading in treatment of biodiesel wastewater

Studies reporting the performance of anaerobic sequencing batch reactor (AnSBR) operating with high organic loadings are scarce. This study aimed to contribute to the technical and scientific literature by reporting the experience obtained when biodiesel wastewater was treated in an AnSBR applying organic loading rates (OLR) above those commonly used in batch reactor projects. For this, physicochemical and chromatographic analysis of the effluent were carried out. Further, the biomass was assessed chemically and morphologically, along with bacterial diversity characteristics. Supported by these analyses, the system performance was discussed in terms of COD remotion efficiency and buffering capacity. The AnSBR reached 10% of COD removal at the steady-state, which caused the biomass defragmentation and facilitated washout. This suggests that the startup and operation of AnSBR under optimized conditions with an average applied OLR of 11.3 gCOD L−1 d−1 worked as a pressure for the microbiota selection, stimulating the production of total volatile acids, which promoted system reduction efficiency and souring. In this context, food/microorganism ratios above 1.0 gCOD gTVS−1 d−1 can favor acidogenic activity, and total volatile acids/bicarbonate alkalinity concentration ratios above 1.9 may indicate acidification. The addition of support material for immobilizing/increasing biomass retention and/or operation under two-stage may be interesting alternatives for increasing AnSBR efficiencies under high OLRs.

Graphical abstract

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来源期刊
Journal of Environmental Health Science and Engineering
Journal of Environmental Health Science and Engineering ENGINEERING, ENVIRONMENTAL-ENVIRONMENTAL SCIENCES
CiteScore
7.50
自引率
2.90%
发文量
81
期刊介绍: Journal of Environmental Health Science & Engineering is a peer-reviewed journal presenting timely research on all aspects of environmental health science, engineering and management. A broad outline of the journal''s scope includes: -Water pollution and treatment -Wastewater treatment and reuse -Air control -Soil remediation -Noise and radiation control -Environmental biotechnology and nanotechnology -Food safety and hygiene
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