Novel materials for biofilm reactors and their characterization.

Novel materials for biofilm reactors and their characterization.
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生物膜反应器的新型材料及其表征

DOI:
10.1007/10_2013_264
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发表时间:
2014
期刊:
Advances in biochemical engineering/biotechnology
影响因子:
--
通讯作者:
Ziegler
Ziegler
中科院分区:
--
文献类型:
--
作者:
Müller-Renno;Davoudi;Aurich;Ripperger;Muffler;Ziegler

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<?xm-replace_text {Heading}?>摘要贴壁生长微生物在生物技术生产过程中的应用已经建立,但它仍然是一项小众技术,经济影响很小。然而,新型生物膜反应器的新方法正在开发中。在这种背景下,人们正在研究越来越多的微结构金属表面,它们对细菌生长和生物膜的建立显示出积极的影响。然而,为了比较数据,不同的表面材料必须对应其不同的特性,例如润湿性和化学成分。此外,还开发了塑料复合支架等新材料。为了了解这些新材料与产生生物膜的微生物之间的相互作用,必须应用不同的表面科学方法来揭示表面特性的详细知识。总之,微结构表面显示出增强生物膜生长的巨大潜力,可能伴随着微生物生产力的提高。图形摘要
<?xm-replace_text {Heading}?>AbstractThe application of adherently growing microorganisms for biotechnological production processes is established, but it is still a niche technology with only a small economic impact. However, novel approaches are under development for new types of biofilm reactors. In this context, increasingly more microstructured metal surfaces are being investigated, and they show positive effects on the bacterial growth and the biofilm establishment. However, for comparison of the data, the different surface materials have to correspond in their different characteristics, such as wettability and chemical composition. Also, new materials, such as plastic composite supports, were developed. To understand the interaction between these new materials and the biofilm-producing microorganisms, different surface science methods have to be applied to reveal a detailed knowledge of the surface characteristics. In conclusion, microstructured surfaces show a high potential for enhanced biofilm growth, probably accompanied by an enhanced productivity of the microorganisms.Graphical Abstract
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