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低磷酸盐-低NaOH模拟炉水中20A碳钢的腐蚀
引用本文:刘延湘,楼台芳.低磷酸盐-低NaOH模拟炉水中20A碳钢的腐蚀[J].腐蚀科学与防护技术,2003,15(1):9-12.
作者姓名:刘延湘  楼台芳
作者单位:1. 江汉大学化学与环境工程学院,武汉,430056
2. 武汉大学分子科学与化学学院,武汉,430072
摘    要:通过高压釜挂片试验,模拟在低磷酸盐-低NaOH工艺下炉水温度、溶解氧、pH值、侵蚀性阴离子Cl-、SO2-4等对20A碳钢的腐蚀影响,用电子探针二次电子像或背散射电子法、腐蚀产物的X-射线衍射分析及溶液中总铁离子的测定、计算腐蚀速率等方法综合分析评价腐蚀行为.结果表明,温度升高,碳钢的腐蚀速率增大,大于250℃时腐蚀产物为磁性Fe3O4,表面膜均匀致密,耐蚀性能好;溶解氧对试片成膜影响较大,腐蚀速率随溶解氧浓度减小而明显下降;炉水pH值控制在92~96合适;侵蚀性阴离子Cl-、SO2-4主要引起点蚀,加速腐蚀,阻碍膜的形成.

关 键 词:20A碳钢  低磷酸盐-低NaOH工艺  腐蚀速率
文章编号:1002-6495(2003)01-0009-04

CORROSION OF 20A STEEL IN SOLUTION WITH LOW PHOSPHATE AND LOW NaOH
LIU Yanxiang ,LOU Taifang .College of Chemistry and Environment Engineering,Jianghan University,Wuhan , .College of Molecular Science Engineering and Chemistry,Wuhan University,Wuhan.CORROSION OF 20A STEEL IN SOLUTION WITH LOW PHOSPHATE AND LOW NaOH[J].Corrosion Science and Protection Technology,2003,15(1):9-12.
Authors:LIU Yanxiang  LOU Taifang College of Chemistry and Environment Engineering  Jianghan University  Wuhan  College of Molecular Science Engineering and Chemistry  Wuhan University  Wuhan
Affiliation:LIU Yanxiang 1,LOU Taifang 2 1.College of Chemistry and Environment Engineering,Jianghan University,Wuhan 430056, 2.College of Molecular Science Engineering and Chemistry,Wuhan University,Wuhan 430072
Abstract:The corrosion of 20A steel in boiler water with additive of low phosphate and low NaOH was simulated with an autoclave.The influence of the dissolved oxygen,pH and corrosive anions was investigated.The results in dicated that the corrosion rate increased with increasing temperature,and a magnetitc scale formed on the surface of 20A steel when the temperature was above 250℃,which can prevent the steel from further corrsion.The dissolved oxygen in water affected the scale forming on the surface,the forming rate decreased rapidly with the decreasing the dissolved oxygen.The optimal pH range of boiler water was 9.2~9.6.The corrosive anions Cl-、SO2-can interfer with the scale forming,especially cause pitting.
Keywords:A steel  low phosphate and low NaOH treatment  corrosion rate
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