Huttenlochner Katharina, Müller-Renno Christine, Ziegler Christiane, Merz Rolf, Merz Birgit, Kopnarski Michael, Chodorski Jonas, Schlegel Christin, Ulber Roland
Department of Physics and Research Center OPTIMAS, University of Kaiserslautern, D-67663 Kaiserslautern, Germany.
Institute for Surface and Thin Film Analysis (IFOS), D-67663 Kaiserslautern, Germany.
Biointerphases. 2017 Apr 26;12(2):02C404. doi: 10.1116/1.4982196.
The influence of oxygen (and argon) plasma cleaning and a base-acid cleaning procedure on stainless steel surfaces was studied. The main aim was to clean stainless steel samples from Paracoccus seriniphilus biofilms without changing the surface properties which are relevant for bacterial attachment to allow reuse in a biofilm reactor. It is shown that oxygen plasma cleaning, which very successfully removes the same kind of biofilm from titanium surfaces, is not suitable for stainless steel. It largely influences the surface chemistry by producing thick metal oxide layers of varying compositions and changing phenomenological surface properties such as wettability. A promising method without changing surface properties while cleaning satisfactorily is a combination of base and acid reagents at elevated temperature.
研究了氧气(和氩气)等离子体清洗以及碱-酸清洗程序对不锈钢表面的影响。主要目的是清除嗜丝副球菌生物膜污染的不锈钢样品,同时不改变与细菌附着相关的表面性质,以便能够在生物膜反应器中重复使用。结果表明,能非常成功地从钛表面去除同类生物膜的氧气等离子体清洗并不适用于不锈钢。它会通过生成成分各异的厚金属氧化物层并改变诸如润湿性等表面现象学性质,在很大程度上影响表面化学性质。一种在令人满意地进行清洗的同时又不改变表面性质的有前景的方法是在高温下结合使用碱试剂和酸试剂。