首页> 外文会议>Annual Conference of the Australasian Corrosion Association >INHIBITIVE EFFECTIVENESS OF HYDRAZINE OXYGEN SCAVENGER ON LOW-ALLOY STEEL IN NEAR-NEUTRAL PH UNDERGROUND CONDITIONS
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INHIBITIVE EFFECTIVENESS OF HYDRAZINE OXYGEN SCAVENGER ON LOW-ALLOY STEEL IN NEAR-NEUTRAL PH UNDERGROUND CONDITIONS

机译:含肼氧气清除剂对近中立乙烯钢的含肼氧气的效果

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Buried pipeline steels are susceptible to external corrosion from corrosive soil agents present in the trapped electrolyte in contact with exposed surfaces beneath disbonded coatings.Corrosion of these surfaces is often simulated with electrolytes categorized based on pH.A representative near-neutral pH dilute bicarbonate electrolyte with chlorides and sulphate represents one such environment.Although normally deaerated with a 5% carbon dioxide/95% nitrogen gas mixture,in practice soil aeration can support oxygen presence in this environment,accelerating corrosion mechanisms.Temperature influences and shielding of the cathodic protection(CP)current further exacerbate this problem.This paper investigates the effectiveness of oxygen scavenger injections on corrosion inhibition of a modem pipeline steel alloy(API-X100)in near-neutral pH conditions which may simulate trapped water environments.The influence of the pipeline's operating temperature on inhibition is studied at 50 and 25 °C.Polarization and Electrochemical Impedance Spectroscopy(EIS)results are highly dependent on temperature,dissolved oxygen,hydrazine,and CP levels.Current shielding effects on corrosion and inhibition process are analysed at field-relevant cathodic potentials(around the-0.85 V_(SCE)NACE CP criterion),yielding unique insights into the applicability of this established standard.
机译:埋地管钢易受钝化的电解质中存在的腐蚀性土壤中的外部腐蚀,与脱粘的涂料下的暴露表面接触。这些表面的腐蚀性经常用基于pH的电解质进行分类的电解质模拟.A代表性近中性pH稀释碳酸氢盐电解质的电解质模拟氯化物和硫酸盐代表一种这种环境。虽然通常用5%二氧化碳/ 95%氮气混合物脱气,但实际上可以在这种环境中支持氧气存在,加速腐蚀机制。阴极保护的温度和屏蔽(CP )电流进一步加剧了这一问题。本文研究了氧清除剂对近中性pH条件中调制解调器管钢合金(API-X100)的腐蚀抑制的有效性,这可以模拟捕获的水环境。管道的工作温度的影响在50和25℃下研究抑制作用在现场相关的阴极电位(周围-0.85V_(SCE)NACE(SCE)NACE(SCE)NACE(SCE)NACE周围有高度依赖于温度,溶解的氧,肼和CP水平,对温度,溶解的氧,肼和CP水平高度依赖于温度,溶解的氧,肼和CP水平。 CP标准),造成了既定标准的适用性的独特见解。

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