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The enrichment of surface passive film on stainless steel during biofilm development in coastal seawater

机译:沿海海水生物膜形成过程中不锈钢表面钝化膜的富集

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摘要

The surface passive film on UNS S30400 alloy was characterized before and after biofilm development under different regimes of diurnal lighting in quiescent flowing coastal seawater. As exemplified by atomic force microscopy, the passive film grew under all test conditions with conspicuous variations in morphological features. X-ray photon spectroscopy illustrated an enrichment of the outer film by iron oxide and a progressive increase in the iron oxide/chromium oxide ratio with lighting. Mott-Schottky plots reflected the duplex nature of the film, comprising an outer n-type and an inner p-type configuration. The slopes of the plots showed a strong decrease in donor and acceptor densities with biofilm coverage and lighting, thus confirming passive film growth. These results provide new insights that passive film enrichment is an intrinsic process under practical marine conditions, and show that the evolution of the passive film is a key step to sustained passivity and/or its breakdown by microbial mechanisms.
机译:UNS S30400合金上的表面钝化膜是在静态流动的沿海海水中,在不同的日照制度下,在生物膜显影前后进行表征的。如原子力显微镜所举例说明的,钝化膜在所有测试条件下均生长,并且其形态特征发生明显变化。 X射线光子光谱法表明,氧化铁使外膜富集,并且随着光照,氧化铁/氧化铬之比逐渐增加。莫特-肖特基(Mott-Schottky)图反映了薄膜的双工性质,包括外部n型和内部p型构型。地块的斜率显示供体和受体的密度随着生物膜的覆盖和光照而大大降低,从而证实了被动膜的生长。这些结果提供了新的见解,即在实际的海洋条件下,钝化膜富集是一个固有过程,并且表明,钝化膜的演变是持续钝化和/或通过微生物机制分解的关键步骤。

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