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Bacterial exopolymeric inhibition of carbon steel corrosion

机译:细菌外聚合抑制碳钢腐蚀

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The development of biofilms is a combination of adhesion of organic and/or inorganic macromolecules, exopolymeric substance (EPS) production and microbial growth. In this study a variety of bacterial strains were isolated from different environments such as soil and water in order to investigate the corrosion inhibition by EPS. Fifty two mucoid colonies were obtained from the samples on Luria-Bertani (LB) medium. Carbon steel (low carbon) coupons were then exposed to seawater-mimicking medium (VNSS) containing different bacterial suspensions. Twenty one bacteria were identified by fluorescence dye staining screening for their efficient biofilm formation and biofilm development/EPS attachment on coupons surface. The mass loss of coupons was determined and two bacterial strains were selected for further analyses. The results obtained from EPS extraction, electrochemical impedance spectroscopy (EIS) and Fourier transform infrared spectroscopy (FT-IR) demonstrated that two bacterial strains could produce EPS with good effect on corrosion inhibition. The biochemical tests and 16S rRNA ribotyping lead to identification of these strains as Chryseobacterium indologenes MUT.2 and Klebsiella pneumonia MUT.1
机译:生物膜的发展是有机和/或无机大分子粘附,外聚合物质(EPS)产生和微生物生长的结合。在这项研究中,从土壤和水等不同环境中分离出多种细菌菌株,以研究EPS的缓蚀作用。从Luria-Bertani(LB)培养基上的样品中获得五十二个粘液样菌落。然后将碳素钢(低碳)试样暴露于含有不同细菌悬浮液的模拟海水的介质(VNSS)中。通过荧光染料染色筛选鉴定了二十一种细菌,其有效的生物膜形成和生物膜显影/附在试样表面的EPS。确定了试样的质量损失,并选择了两个细菌菌株用于进一步分析。从EPS提取,电化学阻抗谱(EIS)和傅里叶变换红外光谱(FT-IR)获得的结果表明,两种细菌菌株均可以产生EPS,具有良好的缓蚀效果。通过生化测试和16S rRNA核糖分型,可以将这些菌株鉴定为产假链霉菌MUT.2和肺炎克雷伯菌MUT.1。

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