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Corrosion Inhibition of Mild Steel in Binary Acid Mixture

机译:低碳钢在二元酸混合物中的缓蚀性能

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The influence of mercaptobenzimidazole (MBI), mercaptobenzoxazole (MBO) and mercaptobenzoic acid (MBA) on adsorption and corrosion inhibition of mild steel in binary acid mixture (12 percent HCl + 3 percent HF) has been studied using weight loss, gasometric and FTIR methods. All the tested mercaptans showed very good inhibition efficiency. The adsorption of MBI and MBO on the mild steel surface from binary acid mixture has been found to obey Temkin's adsorption isotherm while MBA obeys Langmuir's adsorption isotherm. The lower value of E_a in inhibited acid suggests that the inhibitors do not change the temperature coefficient of the reaction rate but are firmly held on the metal surface. Values of the high heat of adsorption at 10 mM concentration of MBI (95.7 kJ mol~(-1)) and MBO (24.9 kJ mol~(-1)) indicate chemisorptions while MBA (7.6 kJ mol~(-1)) may follow physical adsorption. Values of DFELTA S* and DELTA H* indicate that the corrosion inhibition process is entropic and enthalpic controlled. The analysis of the FTIR spectra shows that adsorption of MBI molecules on the metal surface takes place both through the sulphur of the -SH group and the nitrogen atom in the heterocyclic ring of the inhibitor molecule. In the case of MBO, linkage of the inhibitor molecule may take place through its oxygen atom and the sulphur of the -SH group on the metal surface while MBA shifts the band position of -SH and -CO which may indicate attachment of the inhibitor molecule on the metal surface through S and O atoms.
机译:使用失重,气体计量和FTIR方法研究了巯基苯并咪唑(MBI),巯基苯并恶唑(MBO)和巯基苯甲酸(MBA)对低碳钢在二元酸混合物(12%HCl + 3%HF)中的吸附和缓蚀的影响。所有测试的硫醇均显示出非常好的抑制效率。已经发现二元酸混合物在低碳钢表面上对MBI和MBO的吸附遵循Temkin的吸附等温线,而MBA则遵循Langmuir的吸附等温线。抑制酸中E_a的值较低表明抑制剂不改变反应速率的温度系数,而是牢固地保持在金属表面上。在浓度为10 mM的MBI(95.7 kJ mol〜(-1))和MBO(24.9 kJ mol〜(-1))下的高吸附热值表明化学吸附,而MBA(7.6 kJ mol〜(-1))可能是化学吸附。遵循物理吸附。 DFELTA S *和DELTA H *的值表明腐蚀抑制过程是熵和焓控制的。 FTIR光谱的分析表明,MBI分子在金属表面上的吸附是通过-SH基团的硫和抑制剂分子的杂环中的氮原子发生的。对于MBO,抑制剂分子的连接可以通过其氧原子和金属表面上-SH基团的硫发生,而MBA则移动-SH和-CO的能带位置,这可能表明抑制剂分子的附着通过S和O原子在金属表面上

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