Microbial Corrosion Laboratory, Estácio University, Rio de Janeiro, Rio de Janeiro, Brasil.
Industrial Microbiology and Bioremediation Department, Universidade Federal do Rio de Janeiro, Duque de Caxias, Rio de Janeiro, Brasil.
Arch Microbiol. 2021 Dec 6;204(1):9. doi: 10.1007/s00203-021-02607-w.
The present study evaluated the influence of the marine bacteria Bacillus cereus Mc-1 on the corrosion of 1020 carbon steel, 316L stainless steel, and copper alloy. The Mc-1 strain was grown in a modified ammoniacal citrate culture medium (CFA.ico-), CFA.ico- with sodium nitrate supplementation (NO), and CFA.ico- with sodium chloride supplementation (NaCl). The mass loss and corrosion rate were evaluated after the periods of 7, 15, and 30 days. The results showed that in CFA.ico- and CFA.ico- medium added NO the corrosion rates of carbon steel and copper alloy were high when compared to the control. Whereas the medium was supplemented with NaCl, despite the rates being above the averages of the control system, they were considerably below the previous results. In general, the corrosion rates induced by Mc-1 on 316L coupons were below the results compared to carbon steel and copper alloy. When analyzing the corrosion rate measurements, regardless of the culture medium, the corrosion levels decreased consistently after 15 days, being below the levels evaluated after 7 days of the experiment. Our analyses suggest that B. cereus Mc-1 has different influences on corrosion in different metals and environmental conditions, such as the presence of NO and NaCl. These results can help to better understand the influence of this bacteria genus on the corrosion of metals in marine environments.
本研究评估了海洋细菌蜡状芽孢杆菌 Mc-1 对 1020 碳钢、316L 不锈钢和铜合金腐蚀的影响。Mc-1 菌株在改良的氨柠檬酸盐培养基(CFA.ico-)、添加硝酸钠的 CFA.ico-(NO)和添加氯化钠的 CFA.ico-中生长。在 7、15 和 30 天后评估了质量损失和腐蚀速率。结果表明,在 CFA.ico-和 CFA.ico-添加 NO 的培养基中,碳钢和铜合金的腐蚀速率高于对照。而添加 NaCl 的培养基,尽管速率高于对照组的平均值,但远低于之前的结果。一般来说,与碳钢和铜合金相比,Mc-1 对 316L 试片的腐蚀速率较低。无论培养基如何,在 15 天后,腐蚀速率的测量值持续下降,低于实验 7 天后的评估值。我们的分析表明,B. cereus Mc-1 在不同金属和环境条件下(如存在 NO 和 NaCl)对腐蚀有不同的影响。这些结果有助于更好地了解该细菌属对海洋环境中金属腐蚀的影响。