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Corrosion Resistance of High-alloyed Materials in Flowing Artificial Geothermal Water

机译:流动的人造地热水中高合金材料的耐腐蚀性

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Since geothermal wells are a feasible energy source to replace fossil fuel supply, many technologies have been developed to take advantage of geothermal energy. Nevertheless, service conditions in geothermal facilities are due to the chemical composition of hydrothermal waters and temperatures, in many cases, extreme in terms of corrosion. Therefore, materials selection based on preliminary material qualification is essential to guarantee a secure and reliable operation of the facilities. This contribution deals with the evaluation of the corrosion behavior of different steels in flowing low saline, slightly alkaline, artificial geothermal water simulating the conditions in the Molasse-Basin, a location with geothermal potential in Germany. Test results for steels UNS S31603 and UNS S31803 exposed to this geothermal water obtained by electrochemical measurements and exposure tests are presented. Results obtained in static and flowing water condition show good performance of both alloys with a possible onset of localized corrosion at UNS S31603 in static conditions.
机译:由于地热井是一种可行的能源来取代化石燃料供应,因此已经开发出许多技术来利用地热能。尽管如此,地热设施的服务条件是由于水热水和温度的化学成分,在许多情况下,在腐蚀方面极致。因此,基于初步物质资格的材料选择对于保证设施安全可靠的操作至关重要。该贡献涉及评估不同钢的腐蚀行为在流动的低盐水,略带碱性,人工地热水中模拟蜕皮盆地的条件,德国地热潜力的位置。展示了钢UNS S31603和未暴露于通过电化学测量和曝光测试获得的该地热水的UNS S31803的测试结果。在静态和流动性水条件下获得的结果表明,两种合金的良好性能在静态条件下在UNS S31603中可能发出局部腐蚀。

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