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Conducting Water Chemistry of the Secondary Coolant Circuit of VVER-Based Nuclear Power Plant Units Constructed without Using Copper Containing Alloys

机译:不使用含铜合金建造的基于VVER的核电站机组二次冷却回路的水化学反应

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The secondary coolant circuit water chemistry with metering amines began to be put in use in Russia in 2005, and all nuclear power plant units equipped with WER-1000 reactors have been shifted to operate with this water chemistry for the past seven years. Owing to the use of water chemistry with metering amines, the amount of products from corrosion of structural materials entering into the volume of steam generators has been reduced, and the flow-accelerated corrosion rate of pipelines and equipment has been slowed down. The article presents data on conducting water chemistry in nuclear power plant units with WER-1000 reactors for the secondary coolant system equipment made without using copper-containing alloys. Statistical data are presented on conducting ammonia-morpholine and ammonia-ethanolamine water chemistries in new-generation operating power units with WER-1000 reactors with an increased level of pH. The values of cooling water leaks in turbine condensers the tube system of which is made of stainless steel or titanium alloy are given.
机译:带有计量胺的二次冷却剂回路水化学物质于2005年在俄罗斯开始使用,并且在过去的七年中,所有配备WER-1000反应堆的核电站机组都已转移到使用这种水化学物质进行操作。由于将水化学与计量胺一起使用,减少了进入蒸汽发生器体积的结构材料腐蚀产生的产物量,并且降低了管道和设备的流速加速腐蚀速率。本文介绍了在不使用含铜合金制造的二次冷却剂系统设备中,使用WER-1000反应堆在核电站机组中进行水化学反应的数据。统计数据显示了在具有更高pH值的WER-1000反应堆的新一代运行动力装置中进行氨-吗啉和氨-乙醇胺水化学反应的情况。给出了涡轮冷凝器的冷却水泄漏量,涡轮冷凝器的管系统由不锈钢或钛合金制成。

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