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HYDROGEN PERMEATION STUDY WITH PALLADIUM IN A SULFATE-REDUCING BACTERIA CULTURE

机译:硫酸盐降低细菌培养中的氢渗透研究

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This study was undertaken to evaluate cathodic depolarization as the action mechanism triggered by sulfate-reducing bacterias (SRBs) in Microbiologically Induced Corrosion (MIC), using an inert substrate such as a l-ram thick Palladium (Pd) strip with and without cathodic polarization, a H ° permeation cell type by Devanathan and Stachurski, and the bacteria Desulfovibrio desuifuricans ssp. desulfuricans. The permeation tests were run using a de-aerated sterile culture medium inoculated with 10 percent D. dexulfuricans at 108 cell/ml. Bacterial growth was evaluated by the serial dilution technique and Scanning Electron Microscopy (SEM) was used to analyze the characteristics of the biofilm formed on the Pd strip. Results indicated bacterial growth in the order of 40X10~9 CFU/ml at 24 hours in both polarization and non-polarization tests. This shows that these bacteria develop similarly, whether or not they are on a polarized surface as a source of H~0, generating H_2S as a product of sulfate-dissimilating activity. It was also determined that, without cathodic polarization, there were no conditions for reduction and permeation of the H~+ generated by H_2S dissociation. When cathodic polarization was applied, an increase was observed in the permeation current, which was associated with the maximum enzymatic activity phase of the bacteria.
机译:本研究进行了评估阴极去极化作为通过硫酸盐诱导的腐蚀(MIC)中的硫酸盐降低胁迫(SRB)引发的动作机制,所述腐蚀(MIC),使用惰性底物如L-Ram厚钯(Pd)条带,且不具有阴极极化,由Devanathan和Stachurski以及细菌脱硫细胞类型的H孔渗透细胞类型SSP。脱硫士。使用在108个细胞/ ml的甲磺酰基葡萄酒中接种的脱气无菌培养基进行渗透试验。通过连续稀释技术评估细菌生长,并使用扫描电子显微镜(SEM)来分析在PD条带上形成的生物膜的特性。结果在两种偏振和非极化试验中表明在24小时内为40x10〜9 cfu / ml的细菌生长。这表明这些细菌类似地发展,它们是否在偏振表面中作为H〜0的源,产生H_2S作为硫酸盐含量的产物。还确定,没有阴极偏振,没有条件降低和渗透由H_2S解离产生的H〜+。当施加阴极偏振时,在渗透电流中观察到增加,该渗透电流与细菌的最大酶活性相关联。

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