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N80钢CO2腐蚀缓蚀剂筛选及性能评价
引用本文:秦开明,彭建国,李芳,徐子怡,毕凤琴.N80钢CO2腐蚀缓蚀剂筛选及性能评价[J].管道技术与设备,2013(6):30-32.
作者姓名:秦开明  彭建国  李芳  徐子怡  毕凤琴
作者单位:[1]中国石油工程建设公司,北京100120 [2]中国石化集团公司西北油田分公司,新疆乌鲁木齐830011 [3]中国石油大学(北京)石油工程学院,北京102249 [4]东北石油大学材料科学与工程系,黑龙江大庆163318
基金项目:国家科技重大专项十二五规划课题(2011ZX05016-003)
摘    要:文中采用高温高压反应釜借助腐蚀挂片失重法测试了油田常用咪唑啉类和炔氧甲基季铵盐型两种不同类型的缓蚀剂在饱和CO2油田采出液对N80钢的缓蚀行为,分析了缓蚀剂的溶解、分散性,采用扫描电镜对腐蚀后表面形貌进行了观察。研究结果表明:在两种缓蚀剂中,炔氧甲基季铵盐型缓蚀剂溶解性高于咪唑啉型,而炔氧甲基季铵盐IMC-871GH1型缓蚀剂可以集优异溶解和分散性于一体。腐蚀形貌测试结果反映出缓蚀剂在材料表面均匀覆盖程度直接影响材料点蚀行为,添加炔氧甲基季铵盐型缓蚀剂试样表面致密度高于咪唑啉型缓蚀剂,点蚀倾向小。

关 键 词:N80  CO2腐蚀  缓蚀剂  高温高压

Screening and Performance Study of the Inhibitors in CO2 Oilfield-produced Solutions for N80 Casing Steel
QIN Kai-ming;PENG Jian-guo;LI Fang;XU Zi-yi;BI Feng-qin.Screening and Performance Study of the Inhibitors in CO2 Oilfield-produced Solutions for N80 Casing Steel[J].Pipeline Technique and Equipment,2013(6):30-32.
Authors:QIN Kai-ming;PENG Jian-guo;LI Fang;XU Zi-yi;BI Feng-qin
Institution:QIN Kai-ming;PENG Jian-guo;LI Fang;XU Zi-yi;BI Feng-qin;China Petroleum Engineering and Construction Corporation;Northwest Oilfield Branch,China Petrochemical Corporation;School of Petroleum Engineering,China University of Petroleum;Department of Material Science and Engineering,Northeast Petroleum University;
Abstract:The inhibition performances of imidazoline and oxygen acetylene methyl amine of two different inhibitors for N80steel in the oilfield-produced solutions containing saturated CO2is investigated at a high temperature and a high pressure with weight loss methods. The solubility and decentrality are also analyzed. The corrosion morphology is tested under a scanning electronic microscope. The results show that the solubility of oxygen acetylene methyl amine is higher,and IMC- 871GH1 exhibits the optimal solubility and decentrality. The pitting of materials is influenced by the uniform coverage surface of the inhibition. The surface density of oxygen acetylene methyl amine is higher than that of imidazoline.
Keywords:N80  CO2corrosion  inhibition high temperature high pressure
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