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Pneumatically Agitated High-Density Polyethylene Mesh-Based Bioreactor Developed for Wastewater Treatment

机译:用于废水处理的气动搅拌的高密度聚乙烯网的生物反应器

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The use of woven and nonwoven fibers and meshes in membrane bioreactors (MBRs) has enhanced the study of the development of dynamic membranes, which aid to a large extent in overcoming the traditional problem of fouling associated with MBRs. The present study reports the mixing characteristics and the gas-liquid mass transfer characteristics of a pneumatically agitated high-density polyethylene (HDPE) mesh-based bioreactor developed for wastewater treatment. The HDPE mesh is not a material traditionally used in MBRs. The pore size of the mesh used in the study, 2mm, has not been reported on for the development of self-forming dynamic membranes. The reactor was configured in a novel way by integrating the mesh into the reactor. Aeration was provided at the bottom for meeting the oxygen requirements and obtaining maximum mixing. The mixing characteristics and the mass transfer coefficients were determined at various superficial air velocities. The reactor exhibited excellent mixing characteristics at a superficial air velocity of 3.79cm/min and possessed the optimum gas-liquid mass transfer coefficient. The reactor was modeled to tanks-in-series and extended tanks-in-series models. The reactor was then used for nitrification of ammonia wastewater. The treatment efficiency was recorded to be around 98%. (C) 2018 American Society of Civil Engineers.
机译:在膜生物反应器(MBRS)中使用织造和非织造纤维和网状物增强了动态膜的发育的研究,这有助于克服与​​MBR相关的传统污染问题。本研究报告了用于废水处理的气动搅拌的高密度聚乙烯(HDPE)网的生物反应器的混合特性和气液传质特性。 HDPE网格不是传统上用于MBR的材料。研究中使用的网格的孔径2mm,尚未向自我形成动态膜的开发报告。通过将网状物体集成到反应器中以新颖的方式配置反应器。在底部提供曝气,以满足氧气需求并获得最大混合。在各种浅表空气速度确定混合特性和传质系数。反应器表现出优异的混合特性,在浅表空气速度为3.79cm / min,并具有最佳的气液传质系数。反应器被建模到罐内和延伸罐系列模型。然后将反应器用于氨废水的硝化。治疗效率记录约为98%。 (c)2018年美国土木工程师协会。

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