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Mechanism of Potential Ennoblement for Stainless Steel in Natural Seawater

机译:天然海水中不锈钢的潜在增强机理

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摘要

Potential ennoblement for stainless steel in natural seawater was analyzed. Open circuit potentials (OCPs) of platinum, gold, palladium, chromium, titanium and nickel ennobled in natural seawater as well as stainless steel, SUS 304 (l8Cr-8Ni). Potential ennoblement is not a specific event to only stainless steel. Marine biofilm clearly caused potential ennoblement. Cathodic polarization curves for the ennobled stainless steel elucidated that there were two distinct reduction current increases. One is the limited diffusion current of dissolved oxygen reduction below - 500 mV vs. Ag/AgCl (KCl_(sat)). The other reduction current around 0 mV vs. Ag/AgCl (KCl_(sat)) was considered to be hydrogen peroxide reduction current in acidic condition. Synergistic effect of hydrogen peroxide and low pH in artificial seawater carried out high OCP of stainless steel like that in natural seawater. Therefore, we concluded that synergistic effect of hydrogen peroxide production and low pH by marine microorganisms is possible cause for potential ennoblement in natural seawater.
机译:分析了天然海水中不锈钢的潜在贵金属含量。天然海水中贵金属的铂,金,钯,铬,钛和镍的开路电位(OCP)以及不锈钢SUS 304(18Cr-8Ni)。潜在的贵重并非仅不锈钢一项特殊的事件。海洋生物膜显然引起潜在的贵族化。高贵不锈钢的阴极极化曲线表明,还原电流有两个明显的增加。一种是相对于Ag / AgCl(KCl_(sat)),溶解氧还原的限制扩散电流低于-500 mV。相对于Ag / AgCl(KCl_(sat)),大约0 mV的另一个还原电流被认为是在酸性条件下的过氧化氢还原电流。过氧化氢和低pH值在人造海水中的协同作用使不锈钢的OCP值与天然海水中的OCP值相同。因此,我们得出结论,海洋微生物产生过氧化氢和低pH值的协同效应可能是天然海水中潜在的增值作用。

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