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某汽轮机低压缸腐蚀分析 被引量:2

Corrosion Analysis of Low Pressure Steam Turbine
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摘要 对某汽轮机低压缸的腐蚀-磨蚀案例进行了研究。该火电机组投运近20年,从未对补给水处理系统的离子交换树脂进行过报废处理。老化的树脂产生大量有机溶出物,随补给水进入热力系统,受热分解为乙酸根、硫酸根等腐蚀性离子。这些腐蚀性离子在初凝水中富集使其呈酸性,与湿蒸汽共同冲刷腐蚀低压缸内壁,导致严重腐蚀。采用离子色谱仪监测水汽中腐蚀性离子含量,及时报废老化的离子交换树脂,对预防低压缸腐蚀十分必要。 The case of erosion/corrosion damage occurring in a low pressure steam turbine was evaluated. This fossil power unit had been put into operation for nearly twenty years, and the used ion exchange resins for water treatment had never been scrapped. The leaked organism of aged ion exchange resins was decomposed into corrosive irons in the water-steam cycle. The action of enriched corrosion irons in the primary condensate water with the water steam made a severe erosion/corrosion of the low pressure turbine. It is important to detect the contents of corrosion irons and displace aged ion exchange resins in time.
出处 《腐蚀与防护》 CAS 北大核心 2011年第2期137-139,145,共4页 Corrosion & Protection
关键词 汽轮机低压缸 相变区 初凝水 离子交换树脂 有机溶出物 腐蚀 low pressure steam turbine phase transition zone primary condensate water ion exchange resin organic leakage corrosion
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  • 1Interim Cycle Chemistry Guidelines for Combined Cycle HRSGs[R]. EPRI, Palo Alto, CA: November 1998.TR-110051.(美国电力研究院联合循环机组循环化学中期导则).
  • 2DL/T673-1999,火力发电厂水处理用001×7强酸性阳离子交换树脂报废标准[S].
  • 3DL/T807-2002,火力发电厂水处理用201×7强碱性阴离子交换树指报废标准[S].
  • 4DL/T1077-2007,苯乙烯系离子交换树脂有机溶出物测定方法(动态法)[s].

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