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Example study for granular bioreactor stratification: Three-dimensional evaluation of a sulfate-reducing granular bioreactor

机译:颗粒生物反应器分层的实例研究:硫酸盐还原颗粒生物反应器的三维评估

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摘要

Recently, sulfate-reducing granular sludge has been developed for application in sulfate-laden water and wastewater treatment. However, little is known about biomass stratification and its effects on the bioprocesses inside the granular bioreactor. A comprehensive investigation followed by a verification trial was therefore conducted in the present work. The investigation focused on the performance of each sludge layer, the internal hydrodynamics and microbial community structures along the height of the reactor. The reactor substratum (the section below baffle 1) was identified as the main acidification zone based on microbial analysis and reactor performance. Two baffle installations increased mixing intensity but at the same time introduced dead zones. Computational fluid dynamics simulation was employed to visualize the internal hydrodynamics. The 16S rRNA gene of the organisms further revealed that more diverse communities of sulfate-reducing bacteria (SRB) and acidogens were detected in the reactor substratum than in the superstratum (the section above baffle 1). The findings of this study shed light on biomass stratification in an SRB granular bioreactor to aid in the design and optimization of such reactors.
机译:近来,已经开发出用于硫酸盐还原的颗粒污泥,其用于含硫酸盐的水和废水处理中。然而,关于生物质分层及其对颗粒生物反应器内部生物过程的影响知之甚少。因此,在当前工作中进行了全面调查,随后进行了验证试验。研究集中在沿着反应堆高度的每个污泥层的性能,内部流体动力学和微生物群落结构。根据微生物分析和反应器性能,将反应器底层(挡板1下方的区域)确定为主要酸化区域。两个挡板装置增加了混合强度,但同时引入了死区。计算流体动力学模拟被用来可视化内部流体动力学。生物体的16S rRNA基因进一步揭示,在反应器底层中比在上层中检测到更多的硫酸盐还原细菌(SRB)和酸原菌群落(挡板1上方的部分)。这项研究的发现为SRB颗粒生物反应器中的生物质分层提供了启示,从而有助于此类反应器的设计和优化。

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