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Granule development in a split-feed anaerobic baffled reactor

机译:分流进料厌氧折流板反应器中的颗粒发展

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Operating anaerobic reactors at high organic loading rates during start-up can lead to instability, accumulation of volatile fatty acids and low pH, such problems being exacerbated in reactors that exhibit plug-flow characteristics. Moreover, plug-flow conditions increase the exposure of biomass to any toxic components in the feed. To overcome these limitations, an anaerobic baffled reactor (ABR), a reactor exhibiting partial plug-flow characteristics, was modified by splitting the feed between the individual compartments to produce the split-feed ABR (SFABR). Consequently, more favourable conditions were created in the initial compartments, such as lower, longer hydraulic retention time and longer cell retention time; conditions in the final compartments were also improved by the increased food availability for microorganisms. Other benefits included better gas mixing characteristics as a result of the more balanced gas production across the reactor. Granule development was compared in SFABR and normally fed ABR by analysing sludge samples, taken during start-up and continuous operation, using scanning electron microscopy. Photomicrographs allowed tentative conclusions to be made concerning the effect of split-feedine on the distribution of bacterial populations within the granule architecture and the role of extracellular polymers on granule formation. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 35]
机译:在启动过程中,以高有机负荷运行的厌氧反应器会导致不稳定,挥发性脂肪酸的积累和pH值低,这种问题在具有活塞流特性的反应器中会加剧。此外,活塞流条件增加了生物质对饲料中任何有毒成分的暴露。为了克服这些限制,厌氧折流板反应器(ABR),表现出部分塞流特性的反应器,通过在各个隔室之间分配进料进行了改进,以生产分批进料的ABR(SFABR)。因此,在初始隔室中创造了更有利的条件,例如更低,更长的水力停留时间和更长的细胞停留时间。由于增加了微生物的食物供应量,最终隔间的条件也得到了改善。其他好处包括由于整个反应器中气体产生更加平衡,因此具有更好的气体混合特性。通过使用扫描电子显微镜分析在启动和连续运行期间采集的污泥样品,比较了SFABR和正常进料的ABR中的颗粒发育。显微照片允许就分裂式精氨酸对颗粒结构内细菌种群分布的影响以及细胞外聚合物对颗粒形成的作用做出初步结论。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:35]

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