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The role of bioflocculation on suspended solids and particulate COD removal in the trickling filter process

机译:生物絮凝在滴滤过程中对悬浮固体和COD去除的作用

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摘要

Understanding that there is a significant presence of extracellular polymeric substances at the biofilm/wastewater interface and that the primary constituent of chemical oxygen demand (COD) in do. mestic wastewaters is organic particulates, this research describes the kinetics of particulate removal in a pilot-scale trickling filter (TF) and the role of bioflocculation in, the removal process. Recent research has described the role of bioflocculation on particulate COD (PCOD) removal in suspended growth biological wastewater treatment systems. However, no research pertaining to PCOD removal by bioflocculation in attached growth systems was identified prior to this study. For this study, experiments were conducted using both bench- and pilot-scale biofilm reactors and provided evidence that the removal of organic and inorganic particulate matter in a TF bioreactor follows a first-order bioflocculation rate equation. The statistical analysis of data obtained from the pilot TF fits the dispersion model to suspended solids and PCOD remaining in the pilot TF.
机译:理解在生物膜/废水界面处存在大量细胞外聚合物,并且确实存在化学需氧量(COD)的主要成分。分散废水是有机颗粒,这项研究描述了中试滴滤池(TF)中颗粒去除的动力学以及生物絮凝在去除过程中的作用。最近的研究已经描述了生物絮凝在悬浮生长生物废水处理系统中对去除颗粒COD(PCOD)的作用。然而,在这项研究之前,没有发现与通过附着在生长系统中的生物絮凝去除PCOD有关的研究。对于这项研究,使用台式和中试规模的生物膜反应器进行了实验,并提供了证据表明,TF生物反应器中有机和无机颗粒物的去除遵循一阶生物絮凝速率方程。从先导TF获得的数据的统计分析使分散模型适合于先导TF中残留的悬浮固体和PCOD。

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