首页> 外文期刊>Egyptian journal of petroleum >Corrosion inhibition efficiency of some hydrophobically modified chitosan surfactants in relation to their surface active properties
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Corrosion inhibition efficiency of some hydrophobically modified chitosan surfactants in relation to their surface active properties

机译:某些疏水改性壳聚糖表面活性剂的缓蚀性能与其表面活性有关

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This work deals with surface activity and corrosion inhibition efficiency of the natural polymer chitosan and its hydrophobically modified derivatives (eight polymeric compounds). Chitosan was found to be inactive at interfaces but the hydrophobic modification using different aliphatic and aromatic substituents renders the products surface active polymers. From the obtained data it was found that the surface active properties increased by increasing the hydrophobic character of these polymers.Chitosan and its based surfactants were investigated as corrosion inhibitors for carbon steel in 1M HCl solution using the potentiodynamic polarization method. The resulted corrosion inhibition efficiency situated between 67.56% and 93.23% at 250ppm and 25°C. The inhibition efficiency was discussed on the light of surface active properties and the chemical structure of the used derivatives. The quantum chemical calculations were performed for some chitosan derivatives. The charge density distribution, highest occupied molecular orbital (HOMO), the lowest unoccupied molecular orbital (LUMO), and dipole moment were considered.
机译:这项工作涉及天然聚合物壳聚糖及其疏水改性衍生物(八种高分子化合物)的表面活性和缓蚀效率。发现壳聚糖在界面处是无活性的,但是使用不同的脂族和芳族取代基的疏水改性使产物具有表面活性聚合物。从获得的数据中发现,通过增加这些聚合物的疏水性而提高了表面活性。壳聚糖及其基表面活性剂是采用电位动力学极化方法研究的,作为1M HCl溶液中碳钢的腐蚀抑制剂。所得的缓蚀效率在250ppm和25°C时介于67.56%和93.23%之间。根据表面活性和所用衍生物的化学结构对缓蚀效果进行了讨论。对一些壳聚糖衍生物进行了量子化学计算。考虑了电荷密度分布,最高占据分子轨道(HOMO),最低未占据分子轨道(LUMO)和偶极矩。

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