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On the Corrosion Mechanism of CO2 Transport Pipeline Steel Caused by Condensate: Synergistic Effects of NO2 and SO2

机译:凝结水对CO2输送管道钢的腐蚀机理:NO2和SO2的协同作用

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摘要

To study the effects of condensed acid liquid, hereafter referred to as condensate, on the CO2 transport pipeline steels, gas mixtures containing a varying concentration of H2O, O2, NO2, and SO2, were proposed and resulted in the condensate containing H2SO4 and HNO3 with the pH ranging from 0.5 to 2.5. By exposing the pipeline steel to the synthetic condensate with different concentration of acidic components, the corrosion kinetic is significantly changed. Reaction kinetic was studied using electrochemical methods coupled with water analysis and compared with surface analysis (scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), and X-ray diffractometry (XRD)) of corroded coupons. The results showed that, although the condensation of NO2 in the form of HNO3 causes faster general corrosion rate, it is the condensation of SO2 in the form of H2SO4 or the combination of SO2 and NO2 that may cause much more severe problems in the form of localized and pitting corrosions. The resulting corrosion forms were depended on the chemical nature of acids and their concentration at the same investigated pH. The effects of changing CO2 flow rate and renewing condensate on pitting corrosion were further studied.
机译:为了研究冷凝酸液(以下称为冷凝液)对CO2输送管道钢的影响,提出了含有不同浓度的H2O,O2,NO2和SO2的气体混合物,并产生了含有H2SO4和HNO3的冷凝液。 pH值为0.5至2.5。通过将管道钢暴露于具有不同浓度酸性组分的合成冷凝液中,腐蚀动力学得到了显着改变。使用电化学方法结合水分析研究了反应动力学,并将其与腐蚀试样的表面分析(扫描电子显微镜(SEM),能量色散X射线光谱(EDS)和X射线衍射法(XRD))进行了比较。结果表明,尽管以HNO3形式的NO2冷凝会导致较快的总体腐蚀速率,但以H2SO4形式的SO2冷凝或SO2与NO2的组合可能会导致更严重的问题。局部腐蚀和点蚀。所产生的腐蚀形式取决于酸的化学性质及其在相同研究pH下的浓度。进一步研究了改变CO2流量和更新冷凝水对点蚀的影响。

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