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Integration of aerobic granular sludge and membrane bioreactors for wastewater treatment

机译:有氧颗粒污泥与膜生物反应器的整合废水处理

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Environmental deterioration together with the need for water reuse and the increasingly restrictive legislation of water quality standards have led to a demand for compact, efficient and less energy consuming technologies for wastewater treatment. Aerobic granular sludge and membrane bioreactors (MBRs) are two technologies with several advantages, such as small footprint, high-microbial density and activity, ability to operate at high organic- and nitrogen-loading rates, and tolerance to toxicity. However, they also have some disadvantages. The aerobic granular sludge process generally requires post-treatment in order to fulfill effluent standards and MBRs suffer from fouling of the membranes. Integrating the two technologies could be a way of combining the advantages and addressing the main problems associated with both processes. The use of membranes to separate the aerobic granules from the treated water would ensure high-quality effluents suitable for reuse. Moreover, the use of granular sludge in MBRs has been shown to reduce fouling. Several recent studies have shown that the aerobic granular membrane bioreactor (AGMBR) is a promising hybrid process with many attractive features. However, major challenges that have to be addressed include how to achieve granulation and maintain granular stability during continuous operation of reactors. This paper aims to review the current state of research on AGMBR technology while drawing attention to relevant findings and highlight current limitations.
机译:环境恶化与水再利用的需求以及水质标准的日益严格的立法导致了对废水处理的紧凑,高效且较少的能耗技术的需求。有氧颗粒污泥和膜生物反应器(MBRS)是两种具有多种优点的技术,例如小的占地面积,高微生物密度和活性,能够以高有机和氮气加载率操作,以及毒性的耐受性。但是,它们也有一些缺点。有氧颗粒污泥工艺通常需要后处理,以满足污水标准,MBR患有膜的污垢。整合两种技术可能是一种结合优势和解决与两个过程相关的主要问题的一种方式。使用膜与处理过的水中分离有氧颗粒将确保适合重用的高质量污水。此外,已经显示了在MBR中使用颗粒污泥来减少污垢。最近的几项研究表明,有氧颗粒膜生物反应器(AGMBR)是具有许多有吸引力的特征的有前途的混合过程。然而,必须解决的主要挑战包括如何在反应器的连续运行过程中实现造粒并维持颗粒状稳定性。本文旨在审查当前关于AGMBR技术的研究状态,同时引起对相关调查结果并突出目前的限制。

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