Vanysacker Louise, Boerjan Bart, Declerck Priscilla, Vankelecom Ivo F J
Centre for Surface Chemistry and Catalysis, KU Leuven, Kasteelpark Arenberg 23, P.O. Box 2461, 3001, Heverlee, Belgium.
Appl Microbiol Biotechnol. 2014 Oct;98(19):8047-72. doi: 10.1007/s00253-014-5921-2. Epub 2014 Aug 16.
Despite more than a decade of worldwide research on membrane fouling in membrane bioreactors, many questions remain to be answered. Biofouling, which is referred to as the unwanted deposition and growth of biofilms, remains the main problem. Due to its complexity, most of the existing anti-biofouling strategies are not completely successful. To unravel this complexity and finally to developed well-adapted control strategies, a microbial-based description of the biofouling development is needed. Therefore, in this review, the biofouling formation will be described as a typical biofilm formation in five steps including the formation of a conditioning film, the bacterial attachment, the production of extracellular polymeric substances, the biofilm maturation, and the bacterial detachment. Moreover, important processes such as hydrodynamics and bacterial communication or quorum sensing will be taken into account. It is finally discussed whether biofouling formation is an active or inactive biofilm process together with suggestion for further research.
尽管在全球范围内对膜生物反应器中的膜污染进行了十多年的研究,但仍有许多问题有待解答。生物污染,即生物膜的不必要沉积和生长,仍然是主要问题。由于其复杂性,现有的大多数抗生物污染策略并不完全成功。为了揭示这种复杂性并最终制定出适应性良好的控制策略,需要对生物污染的发展进行基于微生物的描述。因此,在本综述中,生物污染的形成将被描述为一个典型的生物膜形成过程,包括五个步骤,即形成调节膜、细菌附着、细胞外聚合物的产生、生物膜成熟和细菌脱离。此外,还将考虑诸如流体动力学和细菌通讯或群体感应等重要过程。最后讨论了生物污染的形成是一个主动还是被动的生物膜过程,并提出了进一步研究的建议。