Anaerobic dynamic membrane bioreactor applied to wastewater treatment: a review

Jacob Fortuna José Chimuca, Catarina Simone Andrade do Canto, José Tavares de Sousa, Valderi Duarte Leite, Wilton Silva Lopes
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Abstract

Membrane bioreactors have been widely used in biological wastewater treatment. The membranes used in this type of technology are produced from organic or inorganic materials. However, membranes can also be formed from the deposition of solid particles, colloids, and polymeric materials, as well as microbial cells and flocs, on an inert support during the filtration process. When coupled to a bioreactor, they establish a unique system called a dynamic membrane bioreactor (DMBR). This type of bioreactor, while retaining the solids and microorganisms present in the system, removes both easy and difficult-to-degrade organic material, which reduces treatment costs and makes it advantageous compared to conventional membrane bioreactors (MBRs). In Brazil, this technology is relatively new and still little explored. Therefore, the present study aims to evaluate the DMBR's performance in anaerobic wastewater treatment systems. In addition to the advantages and disadvantages presented by this type of system compared to conventional MBRs (micro and ultrafiltration), the fouling phenomenon, its implications, and the theories that explain the formation of the dynamic layer are described. Finally, some challenges that still need to be overcome in the use of this technology are pointed out in order to be affirmed as a safe and robust tool for the biological treatment of domestic and industrial wastewater.
厌氧动态膜生物反应器在污水处理中的应用综述
膜生物反应器在废水生物处理中得到了广泛的应用。这种技术中使用的膜由有机或无机材料制成。然而,在过滤过程中,固体颗粒、胶体和聚合材料以及微生物细胞和絮凝体在惰性载体上的沉积也可以形成膜。当与生物反应器耦合时,它们建立了一个称为动态膜生物反应器(DMBR)的独特系统。这种类型的生物反应器在保留系统中存在的固体和微生物的同时,去除易降解和难降解的有机物质,这降低了处理成本,与传统的膜生物反应器(mbr)相比具有优势。在巴西,这项技术相对较新,仍然很少被探索。因此,本研究旨在评价DMBR在厌氧废水处理系统中的性能。除了与传统mbr(微滤和超滤)相比,这种类型的系统所呈现的优点和缺点外,还描述了污垢现象,其含义以及解释动态层形成的理论。最后,指出了该技术在应用中仍需要克服的一些挑战,以肯定该技术是一种安全可靠的生活和工业废水生物处理工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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