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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Electrochemical behavior of the 316L steel type in a marine culture of microalgae (Porphyridium purpureum) under the 12/12 h photoperiod and effect of different working electrode exposure conditions on the biofilm-metal interface
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Electrochemical behavior of the 316L steel type in a marine culture of microalgae (Porphyridium purpureum) under the 12/12 h photoperiod and effect of different working electrode exposure conditions on the biofilm-metal interface

机译:316L型钢在12/12 h光周期下的微藻海洋培养物中的电化学行为以及不同工作电极暴露条件对生物膜-金属界面的影响

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The industrial crops of microalgae use processes calling upon the presence of parts of metal nature such as steel 316L type. The goal of this study is to test the electrochemical behavior of this material in a marine culture of microalgae. Porphyridium purpureum was used under a photoperiod of alternation darkness/light 12/12 h, in order to apprehend the problems of biocorrosion involved in the biofouling. The evolution of the free potential of corrosion, according to the position of the samples and for different surface roughness, observations of the surface quality under the electron microscope with sweeping were carried out. The results showed that, overall, the strain P. purpureum does not have a corrosive effect on the 316L. The free potential of corrosion lies between -0.307 and -0.005 V( SCE). The adhesion of the cells seems stronger on the interface air/solid of the half-plunged sample with surface grit polished 1,000, confirmed by the presence of biofilm on the air part. The photoperiod acts on the evolution of the generated free potential of corrosion of the one 24-h period oscillation. Furthermore, the samples plunged horizontally lead to a stabilizing effect on the potential of free corrosion.
机译:微藻的工业作物使用的工艺要求存在金属性质的零件,例如316L型钢。这项研究的目的是在海洋微藻培养物中测试这种材料的电化学行为。为了了解在生物污垢中涉及生物腐蚀的问题,在黑暗/光亮交替的12/12 h的光周期下使用紫菜卟啉菌。根据样品的位置和不同的表面粗糙度,腐蚀自由电位的演变,在电子显微镜下用扫掠法观察了表面质量。结果表明,总的来说,紫脓杆菌对316L没有腐蚀作用。腐蚀的自由电势在-0.307和-0.005 V(SCE)之间。在半浸入样品表面/抛光了1,000的粗砂的样品的空气/固体界面上,细胞的粘附力似乎更强,这在空气部分存在生物膜得以证实。光周期作用于24小时周期振荡产生的腐蚀自由电位的演变。此外,样品水平下降导致对自由腐蚀电位的稳定作用。

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