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A new approach for estimating aerobic-anaerobic biofilm structure in wastewater treatment via dissolved oxygen microdistribution

机译:通过溶解氧微分布估算废水处理中好氧-厌氧生物膜结构的新方法

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摘要

This study proposed a new method for determining the thicknesses of aerobic and anaerobic layers in a biofilm. The transport of dissolved oxygen (DO) or nutrients from the bulk solution to the biofllm was more closely related to the thicknesses of the aerobic and anaerobic layers than to the biofilm structure. The DO microdistribution of the biofilm from a sequencing batch biofilm reactor (SBBR) was measured using microelectrode. The measurements were used to speculate the biofilm structure. The average and maximum thicknesses were 365 and 640 um in the test biofilm, respectively. The mean thicknesses of the aerobic and anaerobic layers were 270 and 240 μm, respectively. The maximum thickness of the aerobic layer was 420 μm. Aerobic oxidation mainly occurred at the top half of the biofilm during the SBBR aeration stage. The biofilm was heterogeneous. However, many holes were detected inside the biofilm. Some of these holes were connected to the bulk solution and allowed the bulk solution to enter and exit freely, whereas the others were isolated.
机译:这项研究提出了一种确定生物膜中需氧层和厌氧层厚度的新方法。溶解氧(DO)或营养物从本体溶液到生物膜的运输与需氧层和厌氧层的厚度更紧密地相关,而与生物膜结构更不相关。使用微电极测量了来自测序批量生物膜反应器(SBBR)的生物膜的DO微分布。测量用于推测生物膜结构。测试生物膜的平均厚度和最大厚度分别为365和640 um。好氧层和厌氧层的平均厚度分别为270和240μm。好氧层的最大厚度为420μm。有氧氧化主要发生在SBBR曝气阶段的生物膜的上半部分。生物膜是异质的。但是,在生物膜内部发现了许多孔。这些孔中的一些连接到本体溶液,并允许本体溶液自由进出,而其他则是隔离的。

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