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SUPERCRITICAL CO_2-CORROSION OF STEELS IN CCS ENVIRONMENT

机译:CCS环境中钢的超临界CO_2腐蚀

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The CCS technique involves the compression of emission gasses in deep geological layers. To guarantee the safety of the site, CO2-corrosion of the injection pipe steels has to be given special attention when engineering CCS-sites. To get to know the corrosion behaviour samples of the heat treated steel 1.7225 42CrMo4, used for casing, and the stainless injection-pipe steel 1.4034 X46Crl3 were kept at T=60 ℃ and ambient pressure as well as p=100 bar for 700 h - 8000 h in a CO_2-saturated synthetic aquifer environment similar to possible geological on-shore CCS-sites in the northern German Basin. The isothermal corrosion behaviour obtained by mass gain of the steels in the gas phase, the liquid phase and the intermediate phase gives surface corrosion rates around 0.1 to 0.8 mm/year at ambient pressure and much lower about 0.02 to 0.2 mm/year at 100 bar where the CO_2 is in its supercritical state. Severe pit corrosion with pit heights around 4.5 mm are only located on the 42CrMo4 steel. Main phase of the continuous complicated multi-layered carbonate/oxide structure is siderite FeCO_3 in both types of steel.
机译:CCS技术涉及在深部地质层中压缩排放气体。为了保证现场的安全,在CCS现场进行工程设计时,必须特别注意注入管钢的CO2腐蚀。为了了解用于外壳的热处理钢1.7225 42CrMo4和不锈钢注射管钢1.4034 X46Crl3的腐蚀行为样品在T = 60℃和环境压力以及p = 100 bar下保持700 h的腐蚀行为-在CO_2饱和的合成含水层环境中8000小时,类似于德国北部盆地可能的地质陆上CCS现场。通过气相,液相和中间相钢的质量增加获得的等温腐蚀行为在环境压力下的表面腐蚀速率约为0.1至0.8毫米/年,而在100 bar下则低得多,约为0.02至0.2毫米/年。 CO_2处于超临界状态。仅在42CrMo4钢上存在坑深大约为4.5 mm的严重坑腐蚀。在两种钢中,连续复杂的多层碳酸盐/氧化物结构的主相都是菱铁矿FeCO_3。

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