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首页> 外文期刊>International Journal of Greenhouse Gas Control >The effect of CO2-loaded amine solvents on the corrosion of a carbon steel stripper
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The effect of CO2-loaded amine solvents on the corrosion of a carbon steel stripper

机译:负载二氧化碳的胺溶剂对碳钢汽提塔腐蚀的影响

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The corrosive behaviour of loaded amine solvents was evaluated under stripper operating conditions, for post-combustion carbon capture, to determine the feasibility of using carbon steel in plant construction. In addition to monoethanolamine, three alternative amine solvents: methyldiethanolamine (MDEA), 2-amino-2-methyl-1-propanol (AMP), 1-(2-aminoethyl)piperazine (AEPZ), and the common additive K2CO3 were studied when in contact with carbon steel (C1018) over a 28-day period. Corrosive behaviour was evaluated using carbon steel coupons: gravimetric method for weight change, surface imaging (SEM) and analytical techniques (EDX and XRD), and Fe ion concentration in solution (ICP-OES). The results demonstrated that MDEA and AMP as well as K2CO3 develop a significant siderite (FeCO3) layer on the carbon steel surface. The presence of this layer is attributed to the preferred reaction pathway with CO2 for tertiary and sterically hindered amines. The FeCO3 layer formed in the case of MDEA provides superior protection from continued corrosion of the carbon steel. By contrast, MEA and AEPZ show significant corrosion to the carbon steel surface. In conclusion, MDEA, AMP, and K2CO3 can preferentially produce sufficient surface FeCO3 layers to reduce corrosion levels in carbon steels for use under stripper conditions in post-combustion carbon capture plants. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在汽提塔操作条件下评估了负载胺溶剂的腐蚀行为,以进行燃烧后碳捕获,以确定在工厂建设中使用碳钢的可行性。除单乙醇胺外,还研究了三种替代的胺溶剂:甲基二乙醇胺(MDEA),2-氨基-2-甲基-1-丙醇(AMP),1-(2-氨基乙基)哌嗪(AEPZ)和常见添加剂K2CO3在28天内与碳钢(C1018)接触。使用碳钢试样评估腐蚀行为:重量分析的重量法,表面成像(SEM)和分析技术(EDX和XRD)以及溶液中的铁离子浓度(ICP-OES)。结果表明,MDEA和AMP以及K2CO3在碳钢表面上形成了明显的菱铁矿(FeCO3)层。该层的存在归因于叔胺和位阻胺与CO2的优选反应途径。在MDEA情况下形成的FeCO3层提供了出色的保护,可防止碳钢持续腐蚀。相比之下,MEA和AEPZ对碳钢表面显示出明显的腐蚀。总之,MDEA,AMP和K2CO3可以优先产生足够的表面FeCO3层,以降低碳钢的腐蚀水平,以便在燃烧后的碳捕集工厂中在汽提塔条件下使用。 (C)2016 Elsevier Ltd.保留所有权利。

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