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首页> 外文期刊>Applied Microbiology and Biotechnology >Inhibiting mild steel corrosion from sulfate-reducing and iron-oxidizing bacteria using gramicidin-S-producing biofilms
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Inhibiting mild steel corrosion from sulfate-reducing and iron-oxidizing bacteria using gramicidin-S-producing biofilms

机译:使用产生短杆菌肽的生物膜抑制硫酸盐还原和铁氧化细菌的低碳钢腐蚀

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摘要

A gramicidin-S-producing Bacillus brevis 18-3 biofilm was shown to reduce corrosion rates of mild steel by inhibiting both the sulfate-reducing bacterium Desulfosporosinus orientis and the iron-oxidizing bacterium Leptothrix discophora SP-6. When L. discophora SP-6 was introduced along with D. orientis to a non-antimicrobial-producing biofilm control, Paenibacillus polymyxa ATCC 10401, a corrosive synergy was created and mild steel coupons underwent more severe corrosion than when only D. orientis was present, showing a 2.3-fold increase via electrochemical impedance spectroscopy ( EIS) and a 1.8-fold difference via mass-loss measurements. However, when a gramicidin-S-producing, protective B. brevis 18-3 biofilm was established on mild steel, the metal coupons were protected against the simultaneous attack of D. orientis and L. discophora SP-6. EIS data showed that the protective B. brevis 18-3 biofilm decreased the corrosion rate about 20-fold compared with the non-gramicidin-producing P. polymyxa ATCC 10401 biofilm control. The mass loss for the protected mild steel coupons was also significantly lower than that for the unprotected ones (4-fold decrease). Scanning electron microscope images corroborated the corrosion inhibition by the gramicidin-S-producing B. brevis biofilm on mild steel by showing that the metal surface remained untarnished, i.e., the polishing grooves were still visible after exposure to the simultaneous attack of the sulfate-reducing bacterium and the iron-oxidizing bacterium.
机译:产生短杆菌素的短芽孢杆菌18-3生物膜显示出通过抑制硫酸盐还原菌Desulfosporosinus Orientis和铁氧化细菌Leptothrix discophora SP-6来降低低碳钢的腐蚀速率。当圆盘状乳杆菌SP-6与东方原核球菌一起引入非抗菌性生物膜对照多粘芽孢杆菌ATCC 10401时,产生了腐蚀协同作用,与仅存在东方原核球菌相比,软钢试样受到的腐蚀更严重。通过电化学阻抗谱(EIS)显示增加2.3倍,通过质量损失测量显示1.8倍的差异。但是,当在低碳钢上建立产短链霉菌素S的保护性短短芽孢杆菌18-3生物膜时,可以保护金属试样不受东方D. Orientis和L. discophora SP-6的同时攻击。 EIS数据显示,与不产短链霉菌素的多粘粘液多粘菌ATCC 10401生物膜对照相比,保护性的短双歧杆菌18-3生物膜将腐蚀速率降低了约20倍。受保护的低碳钢试样的质量损失也显着低于未受保护的试样(下降4倍)。扫描电子显微镜图像通过证明金属表面保持不变色,即在暴露于同时受到硫酸盐还原作用的腐蚀后,仍可见抛光槽,从而证实了由产生短杆菌肽-S的短双歧杆菌生物膜对低碳钢的腐蚀抑制作用。细菌和铁氧化细菌。

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