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首页> 外文期刊>RSC Advances >Corrosion and hydrogen evolution rate control for X-65 carbon steel based on chitosan polymeric ionic liquids: experimental and quantum chemical studies
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Corrosion and hydrogen evolution rate control for X-65 carbon steel based on chitosan polymeric ionic liquids: experimental and quantum chemical studies

机译:基于壳聚糖聚合物离子液体的X-65碳钢腐蚀和氢进化速率控制:实验和量子化学研究

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摘要

The corrosion performance of carbon steel was tested in four polymeric ionic liquids (PILs) that differed only in the fatty acid linked to the chitosan (CS) amine group. The measurements were implemented involved the hydrogen evolution rate (HER), gravimetric measurements, potentiodynamic polarization (PDP), electrochemical impedance spectroscopy (EIS), and quantum chemical estimations. The morphology and the elements arranged on the metal were considered by a scanning electron microscopy (SEM) system attached to an energy dispersive X-ray (EDX) system. The addition of polymeric ionic liquids hindered the rate of hydrogen generation. The order of the inhibitors efficiency was CSPTA-lauric > CSPTA-myristic > CSPTA-palmitic > CSPTA-stearic. The polarization method proved that the percentage inhibition efficiency increases with increasing the inhibitors concentration in 1 M HCl, representing a drop in the corrosion rate of carbon steel. On the other hand, the percentage inhibition decreased with the increase in temperature. Quantum chemical calculations revealed that the tested ionic liquids could react with the iron surface via electron transfer from the metal atom to ionic liquid molecule.
机译:碳钢的腐蚀性在四种聚合物离子液体(Pils)中测试,其仅在与壳聚糖(Cs)胺基组合的脂肪酸中不同。实施测量涉及氢进化速率(她),重量测量,电位动力学极化(PDP),电化学阻抗谱(EIS)和量子化学估计。通过连接到能量分散X射线(EDX)系统的扫描电子显微镜(SEM)系统考虑排列在金属上的形态和元素。添加聚合物离子液体阻碍了氢气的速率。抑制剂效率的顺序是CSPTA-LARIC> CSPTA-MYRISTIC> CSPTA-PALMITCE> CSPTA-SERERIC。偏振方法证明抑制效率百分比随着1M HCl中的抑制剂浓度增加而增加,表示碳钢腐蚀速率下降。另一方面,抑制百分比随着温度的增加而降低。量子化学计算显示,测试的离子液体可以通过从金属原子转移到离子液体分子的电子转移与铁表面反应。

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