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Effect of Chromium on Corrosion Behavior of P110 Steels in CO2-H2S Environment with High Pressure and High Temperature

机译:铬对CO2-H2S高压高温条件下P110钢腐蚀行为的影响

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摘要

The novel Cr-containing low alloy steels have exhibited good corrosion resistance in CO2 environment, mainly owing to the formation of Cr-enriched corrosion film. In order to evaluate whether it is applicable to the CO2 and H2S coexistence conditions, the corrosion behavior of low-chromium steels in CO2-H2S environment with high pressure and high temperature was investigated using weight loss measurement and surface characterization. The results showed that P110 steel suffered localized corrosion and both 3Cr-P110 and 5Cr-P110 steels exhibited general corrosion. However, the corrosion rate of 5Cr-P110 was the highest among them. The corrosion process of the steels was simultaneously governed by CO2 and H2S. The outer scales on the three steels mainly consisted of FeS1−x crystals, whereas the inner scales on Cr-containing steels comprised of amorphous FeS1−x, Cr(OH)3 and FeCO3, in contrast with the amorphous FeS1−x and FeCO3 mixture film of P110 steel. The more chromium the steel contains, the more chromium compounds the corrosion products contain. The addition of chromium in steels increases the uniformity of the Cr-enriched corrosion scales, eliminates the localized corrosion, but cannot decrease the general corrosion rates. The formation of FeS1−x may interfere with Cr-enriched corrosion scales and lowering the corrosion performance of 3Cr-P110 and 5Cr-P110 steels.
机译:新型含铬低合金钢在二氧化碳环境中表现出良好的耐腐蚀性,这主要归因于富铬腐蚀膜的形成。为了评估它是否适用于CO2和H2S共存条件,使用失重测量和表面表征研究了低铬钢在高压高温下在CO2-H2S环境中的腐蚀行为。结果表明,P110钢遭受局部腐蚀,而3Cr-P110和5Cr-P110钢均表现出普遍腐蚀。但是,其中5Cr-P110的腐蚀速率最高。钢的腐蚀过程同时受CO2和H2S的控制。与非晶态FeS1-x和FeCO3混合物相反,三种钢的外部氧化皮主要由FeS1-x晶体组成,而含铬钢的内部氧化皮由非晶FeS1-x,Cr(OH)3和FeCO3组成。 P110钢膜。钢中含有的铬越多,腐蚀产物中含有的铬化合物越多。在钢中添加铬可以提高富铬腐蚀鳞片的均匀性,消除局部腐蚀,但不能降低总腐蚀速率。 FeS1-x的形成可能会干扰富含Cr的腐蚀垢,并降低3Cr-P110和5Cr-P110钢的腐蚀性能。

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