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Role of calcium-depositing bacteria Agrobacterium tumefaciens and its influence on corrosion of different engineering metals used in cooling water system

机译:钙沉积细菌根癌农杆菌的作用及其对冷却水系统中使用的各种工程金属的腐蚀的影响

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摘要

The present investigation deals with the role of calcium-depositing bacterial community on corrosion of various engineering metals, namely, brass alloy (BS), copper (Cu), stainless steel (SS) and mild steel (MS). Based on the corrosion behavior, Agrobacterium tumefaciens EN13, an aerobic bacterium is identified as calcium-depositing bacteria on engineering metals. The results of the study are supported with biochemical characterization, 16S rRNA gene sequencing, calcium quantification, weight loss, electrochemical (impedance and polarization) and surface analysis (XRD and FTIR) studies. The calcium quantification study showed carbonate precipitation in abiotic system/biotic system as 50 and 700 ppm, respectively. FTIR results too confirmed the accumulation of calcium deposits from the environment on the metal surface by EN13. Electrochemical studies too supported the corrosion mechanism by showing a significant increase in the charge transfer resistance (R ct) of abiotic system (44, 33.6, 45, 29.6 Ω cm2) than compared to biotic system (41, 10.1 29 and 25 Ω cm2). Hence, the outcome of the present study confirmed the enhanced bioaccumulation behavior of calcium by the strain, EN13.
机译:本研究探讨了钙沉积细菌群落对各种工程金属(黄铜合金(BS),铜(Cu),不锈钢(SS)和低碳钢(MS))腐蚀的作用。基于腐蚀行为,好氧细菌根癌农杆菌EN13被确定为工程金属上的钙沉积细菌。该研究的结果得到生化表征,16S rRNA基因测序,钙定量,失重,电化学(阻抗和极化)和表面分析(XRD和FTIR)的支持。钙的定量研究表明,非生物系统/生物系统中的碳酸盐沉淀分别为50和700 ppm。 FTIR结果也通过EN13证实了环境中金属表面钙沉积的积累。电化学研究也显示了非生物系统(44、33.6、45、29.6Ωcm 2 )的电荷转移阻力(R ct)显着高于生物系统(41),从而支持了腐蚀机理,10.1 29和25厘米cm 2 )。因此,本研究的结果证实了菌株EN13增强了钙的生物积累行为。

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