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Ginger extract as green biocide to control microbial corrosion of mild steel

机译:生姜提取物作为绿色杀菌剂可控制低碳钢的微生物腐蚀

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摘要

In latest years, various techniques and chemicals have been used for the control of microbial influenced corrosion (MIC) of metals. The application of botanical-based biocides is one of the effective and practical techniques in the fight against MIC. In the present study, the role of aqueous extract of ginger (Zingiber officinale) (GIE) as green biocide to control MIC of mild steel 1010 (MS) in a cooling water system was investigated. Biocorrosion behavior of Bacillus thuringiensis EN2 on MS and its control by GIE was analyzed by electrochemical measurements. Polarization, electrochemical studies (ES), weight loss measurements (WL), and surface analysis (XRD, X-ray diffraction spectroscopy, and FTIR, Fourier transform infra-red spectroscopy) were performed under various incubation periods up to 4 weeks. We observed that EN2 forms a thick biofilm on the MS metal surface at the end of the incubation period and the WL significantly increased to 993 mg at fourth week when compared to the initial immersion period (194 ± 2 mg). In contrast, with addition of GIE, WL was reduced about 41 ± 2 mg over biotic system (993 ± 2 mg). GC–MS analysis confirmed the adsorption of active component of GIE (β-turmerone) on the metal surface as a protective layer to prevent the biofilm formation and thus leads to reduction of corrosion. The optimum 20 ppm of GIE was found to be effective corrosion inhibition efficiency which was about 80%. From the results of WL, ES, XRD, FTIR, and GC–MS, GIE was identified as biocide and thus inhibits the bacterial growth on MS metal surface and it leads to control MIC. XRD showed that the GIE with EN2 resulted in less formation of corrosion products over biotic and abiotic systems. Overall, this research first shed light on the antibacterial activity of GIE inhibiting biofilm formation, thus reducing the corrosion of MS in cooling water systems.
机译:近年来,已使用各种技术和化学物质来控制金属的微生物影响的腐蚀(MIC)。基于植物的杀生物剂的应用是对抗MIC的有效和实用技术之一。在本研究中,研究了姜水提取物(GIE)作为绿色杀菌剂在冷却水系统中控制低碳钢1010(MS)MIC的作用。通过电化学测量分析了苏云金芽孢杆菌EN2在MS上的生物腐蚀行为及其通过GIE的控制。在长达4周的不同潜伏期中进行了极化,电化学研究(ES),失重测量(WL)和表面分析(XRD,X射线衍射光谱和FTIR,傅立叶变换红外光谱)。我们观察到,在潜伏期结束时,EN2在MS金属表面上形成了一层厚厚的生物膜,与最初的浸入期(194±2 mg)相比,WL在第四周显着增加至993 mg。相比之下,添加GIE后,WL比生物系统的WL降低了约41±2 mg(993±2 mg)。 GC-MS分析证实,GIE的活性成分(β-turmerone)在金属表面的吸附可作为保护层,以防止形成生物膜,从而减少腐蚀。发现最佳的20 ppm GIE是有效的缓蚀效率,约为80%。根据WL,ES,XRD,FTIR和GC-MS的结果,GIE被鉴定为杀菌剂,因此可以抑制MS金属表面上的细菌生长,并导致控制MIC。 XRD显示,与生物和非生物系统相比,具有EN2的GIE减少了腐蚀产物的形成。总的来说,这项研究首先揭示了GIE抑制生物膜形成的抗菌活性,从而减少了冷却水系统中MS的腐蚀。

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