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Inhibition of the Corrosion of Carbon Steels by Trehalose Lipid Surfactants

机译:海藻糖脂质表面活性剂抑制碳钢的腐蚀

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摘要

By using corrosion-electrochemical and quantum-chemical methods, we investigate the inhibition of the process of corrosion of carbon steel by trehalose lipid surfactants. It is shown that this substance efficiently inhibits the corrosion processes in steel in a medium of artificial acid rain. Upon attainment of the critical concentration of micelle formation equal to approximate to 0.3 g/liter, the subsequent increase in the micelle content in the corrosive medium does not lead to a noticeable increase in the protective anticorrosion effect. The mechanism of corrosion inhibition is realized by the adsorption of trehalose lipid surfactant (TLS) molecules on the surface of steel by hydrophilic carbonyl and hydroxyl groups according to the donor-acceptor mechanism accompanied by the formation of a barrier film. An additional introduction of small amounts of poorly soluble zinc phosphate in the medium inhibited by the TLS noticeably weakens the corrosion of carbon steel. The degree of its protection becomes as high as 93-96%. This composition guarantees a higher degree of protection of carbon steel in the medium of artificial acid rain than its separate components.
机译:通过使用腐蚀 - 电化学和量子化学方法,我们研究了海藻糖脂质表面活性剂的抑制碳钢的腐蚀过程。结果表明,该物质有效地抑制人造酸雨中钢中钢的腐蚀过程。在达到等于0.3g /升的胶束形成的临界浓度后,随后的腐蚀性介质中胶束含量的增加不会导致保护性防腐效应显着增加。通过根据伴随的受体机理通过亲水羰基和羟基通过形成阻隔膜的供体羰基和羟基对钢表面上的海藻糖脂质表面活性剂(TLS)分子吸附腐蚀抑制机理。通过TLS抑制的介质中额外引入少量可溶性磷酸锌显着削弱碳钢的腐蚀。保护程度高达93-96%。该组合物保证了人造酸雨培养基中碳钢程度更高的保护程度。

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