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ljy1946 发表于 2009-12-18 11:40

一种咪唑啉缓蚀剂在碳钢表面成膜的电化学研究

[align=center]刘建平1 ,李正奉1 ,周晓湘2
11 武汉大学化学与分子科学学院,武汉430072;  21 河南电力实验研究所,郑州450052[/align]
摘要:利用动电位扫描法研究了咪唑啉缓蚀剂MCI 在碳钢表面成膜的耐蚀性能;通过电化学交流阻抗技术. 测量了碳钢表面成膜的EIS 谱,并提出其特征等效电路. 探讨了缓蚀剂在碳钢表面的缓蚀机理. 实验结果表明,在高温高压下碳钢表面经咪唑啉缓蚀剂MCI 处理成膜后具有很好的耐蚀性能.
关键词:成膜;缓蚀作用;极化曲线;交流阻抗;等效电路
中图分类号: TG174   文献标识码:A   
文章编号:100226495 (2003) 0520263203
[align=center]ELECTROCHEMICAL BEHAVIOR OF AN IMIDAZOLINE FILM
FORMED ON CARBON STEEL SURFACE
L IU J ian2ping1 ,L I Zheng2feng1 ,ZHOU Xiao2xiang2
11 College of A pplied Chemist ry and Molecule Science , Wuhan University , Wuhan 430072 , China ;
21 Henan Elect ric Power Research Institute , Zhengz hou 450052 , China[/align]
ABSTRACT:Corrosion inhibition performance of surface film formed on carbon steel induced by imida2
zoline inhibition MCI was studied by potentiodynamic polarization technique. Elect rochemical
Impedance Spect roscopy ( EIS) of the MCI induced film on the surface of carbon steel was measured
and an equivalent circuit was proposed. The relation between impedance characteristics and the corro2
sion inhibition mechanics of MCI was discussed. The result s showed that the MCI - t reated carbon
steel has good corrosion resistance during high - temperature and high - pressure test .
KEY WORDS :surface film ;corrosion inhibition ;polarization curve ;EIS ;equivalent circuit
 在热力设备停运期间,其水汽系统的内表面会发生严重的氧腐蚀. 当机组重新启动时,大量腐蚀产物会进入热力设备,严重影响设备的安全经济运行.近年来兴起的成膜胺技术在热力设备停用保护中的应用越来越广泛,但是,关于停炉保护缓蚀剂的电化学机理,还很少见到文献系统的报道.   
     金属发生腐蚀的电化学本质是形成了腐蚀原电池. 通常情况下用腐蚀速度来反映金属的腐蚀状况,但由于决定金属腐蚀的主要因素并不是原电池的电动势,实际上起作用的是极化作用的大小以及在金属表面成膜的阻抗的大小. 所以对于一种有效的缓蚀剂来说,从电化学的角度研究其缓蚀机理是很有必要的,本文对所复配而成的缓蚀剂MCI (其分子式为C22H42N2O) 作用机理上的研究,进一步了解其作用原理及金属表面成膜的物理模型.
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