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Biofilm development, activity and the modification of carrier material surface properties in moving-bed biofilm reactors (MBBRs) for wastewater treatment

机译:生物膜发育,活性和载体材料表面性质在移动床生物膜反应器(MBBRS)中的载体材料表面特性进行废水处理

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In the last decades, moving-bed biofilm reactors (MBBRs) have found a niche in the treatment of municipal and industrial wastewaters due to advantages of compactness, simplicity, stability and increased reaction rates. Recently, the material surface properties of MBBR carriers and their modification have been investigated, as reviewed herein, in order to enhance the control of microbial attachment and biofilm development, and MBBR performance by faster reactor startups or increased specific activity per surface area. Biofilm formation is a complex process influenced by the solid substratum surface properties and microbial composition and characteristics. MBBR carriers can be made to facilitate biofilm formation by modifying their physico-chemical surface characteristics using blended polymers, mixed materials, coatings and incorporating different chemical functional groups. The chemical modification of the substratum polymeric surface for biofilm treatment reactors has comprised plasma oxidation treatment, radiolysis in a gas phase, liquid-phase oxidative treatment and polymer grafting. This review focusses on carrier material surface properties, the modification of such properties and carrier material choices relevant to biofilm development and functionality of MBBRs, in order to identify opportunities and challenges in future biofilm carrier development.
机译:在过去的几十年中,由于紧凑性,简单,稳定性和增加的反应速率增加,移动床生物膜反应器(MBBRS)在治疗市政和工业废水处理中发现了一个利基。最近,已经研究了MBBR载体的材料表面性质及其修饰,如本文所述,以增强微生物附着和生物膜发育的控制,以及通过更快的反应器启动或每种表面积增加的比活性增加MBBR性能。生物膜形成是由固体底层表面性能和微生物组成和特性影响的复杂过程。通过使用混合聚合物,混合材料,涂层和掺入不同的化学官能团来改变它们的物理化学表面特性,可以使MBBR载体促进生物膜形成。生物膜处理反应器的底层聚合物表面的化学改性包括血浆氧化处理,气相辐射分解,液相氧化处理和聚合物嫁接。本综述侧重于载体材料表面特性,改变与生物膜发育和MBBR的功能相关的这种性质和载体材料选择,以识别未来生物膜载体发展中的机会和挑战。

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