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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Adsorption and corrosion inhibition characteristics of 2-(chloromethyl) benzimidazole for C1018 carbon steel in a typical sweet corrosion environment: Effect of chloride ion concentration and temperature
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Adsorption and corrosion inhibition characteristics of 2-(chloromethyl) benzimidazole for C1018 carbon steel in a typical sweet corrosion environment: Effect of chloride ion concentration and temperature

机译:典型甜腐蚀环境中C1018碳钢2-(氯甲基)苯并咪唑的吸附和腐蚀抑制特征:氯离子浓度和温度的影响

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Benzimidazole derivatives are emerging as promising corrosion inhibitors for oil and gas application because they exhibit high efficiency and very good environmental profile. Although long alkyl and phenyl chains enhance their efficiency, they also increase their toxicity. Finding benzimidazole derivatives devoid of long hydrocarbon chains and with lower toxicity has become a priority. 2-(chloromethyl)benzimidazole (CMB), with log P-o/w = 2.2, has been investigated as a promising low-toxic sweet corrosion inhibitor for C1018 carbon steel in CO2-saturated NaCl solution under static condition using experimental and theoretical approaches. At 25 degrees C, Open circuit potential (OCP), electrochemical impedance spectroscopy (EIS), and potentiodynamic polarization (PDP) techniques confirm that CMB is an anodic-type sweet corrosion inhibitor which is able to form a protective layer on the steel surface and provide inhibition efficiency of 97.54% at 10 ppm. The efficiency increased to 98.40% and 98.58% upon increasing the temperature to 40 degrees C and 60 degrees C, respectively but decreased to 96.32% and 94.76% as the salt concentration was raised to 5.0% and 7.0% NaCl, respectively. The latter was attributed to the antagonistic competition between Cl- ions and CMB for anodic adsorption. The CMB-steel interaction is facilitated by the free electrons around N heteroatoms and C = C bonds, based on FTIR analysis and computational calculations. This eventually ameliorates the surface degradation of the steel during the sweet corrosion at 25 and 60 degrees C. CMB performance is highly comparable with reported sweet corrosion inhibitors with higher toxicity values.
机译:苯并咪唑衍生物因其高效性和良好的环境性能而成为油气领域最有前途的缓蚀剂。虽然长的烷基和苯基链提高了它们的效率,但它们也增加了毒性。寻找没有长烃链且毒性较低的苯并咪唑衍生物已成为当务之急。2-(氯甲基)苯并咪唑(CMB)的对数P-o/w=2.2,在静态条件下,采用实验和理论方法研究了其作为C1018碳钢在CO2饱和NaCl溶液中的低毒甜味缓蚀剂的前景。在25摄氏度时,开路电位(OCP)、电化学阻抗谱(EIS)和动电位极化(PDP)技术证实CMB是一种阳极型甜味缓蚀剂,能够在钢表面形成保护层,在10 ppm时提供97.54%的缓蚀效率。当温度升高到40℃和60℃时,效率分别提高到98.40%和98.58%,但当盐浓度升高到5.0%和7.0%NaCl时,效率分别降低到96.32%和94.76%。后者归因于Cl-离子和CMB之间的阳极吸附竞争。基于FTIR分析和计算,N杂原子和C=C键周围的自由电子促进了CMB-钢相互作用。这最终改善了钢在25和60摄氏度的甜味腐蚀期间的表面降解。CMB的性能与报道的毒性值更高的甜味缓蚀剂具有高度可比性。

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