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Study of the Corrosion Inhibitive Effect and Adsorption Process of Two Azo-Aldehydes on Carbon Steel in 1 M H2SO4

机译:1M H2SO4碳钢两种氮杂醛腐蚀抑制作用及吸附过程研究

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Two aromatic aldehydes with azo linkage (AS1 and AS2) were assessed for their inhibitive effect on carbon steel corrosion in 1 M H2SO4. The inhibition efficiency was studied by gravimetric and electrochemical analysis. The effects of concentration and temperature on the inhibition efficiency have also been studied. The obtained results showed that both of the used compounds can be considered as efficient carbon steel corrosion inhibitors. The compound which has methyl group in its structure (AS2) has higher inhibition efficiency (93.11% with 0.2 mM at 303 K by electrochemical analysis) than the one with cyano group (AS1). The adsorption isotherms of the inhibitors were studied; it was found that the adsorption of the two compounds obeys Langmuir isotherm. The studied inhibitors are mixed type inhibitors and adsorbed onto the surface of the carbon steel by a physisorption process. SEM and AFM techniques were used to study the effect of the aggressive solution on the morphology of the metal surface in the absence and presence of the used inhibitors.
机译:评估两个具有偶氮键(AS1和AS2)的芳香族醛,用于抑制对1M H 2 SO 4中的碳钢腐蚀的抑制作用。通过重量分析研究了抑制效率。还研究了浓度和温度对抑制效率的影响。所得结果表明,两种使用的化合物可被认为是有效的碳钢腐蚀抑制剂。在其结构(AS2)中具有甲基的化合物比用氰基(AS1)具有较高的抑制效率(通过电化学分析,303 k的0.2mm为93.11%)。研究了抑制剂的吸附等温线;发现这两种化合物的吸附Obeys Langmuir等温线。所研究的抑制剂是混合式抑制剂,并通过物理吸附过程吸附到碳钢的表面上。 SEM和AFM技术用于研究侵蚀性溶液对使用和存在的抑制剂的情况下的金属表面形态的影响。

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