华电技术 ›› 2015, Vol. 37 ›› Issue (1): 5-8.

• 研究与开发 • 上一篇    下一篇

660MW超临界机组给水加氧处理试验

  

  1. (华北电力科学研究院(西安)公司,西安〓710065)
  • 出版日期:2015-01-25 发布日期:2015-03-25

Experiment of feedwater oxygen treatment for 660MW supercritical unit

  1. (North China Electric Power Research Institute (Xi’an) Company Limited, Xi’an 710065, China)
  • Online:2015-01-25 Published:2015-03-25

摘要: 摘要:某电厂660MW超临界机组采用还原性全挥发处理方式进行给水处理,存在锅炉受热面结垢速率偏高、锅炉化学清洗周期缩短等问题。为解决上述问题,依该机组进行了给水加氧处理试验。试验表明,加氧处理后,水汽系统铁的质量浓度明显降低,省煤器入口给水铁的质量浓度由8.0~13.5μg/L降低至1.0μg/L以下;给水加氧后氨加入量减少60% 以上,精处理混床运行周期延长2~3倍,预计周期制水量将超过20万t。不但可减少精处理再生酸、碱耗及自用水量,而且可降低再生废液排放量,有利于环保。

关键词: 关键词:超临界机组, 还原性全挥发处理方式, 给水加氧处理, 精处理混床

Abstract: Abstract:In a power plant, the reductive allvolatile treatment mode was adopted to treat the feedwater for the 660MW supercritical unit. The method has some disadvantages, such as higher scaling rate on the boiler heating surface and shorter chemical cleaning period of the boiler. In order to solve above problems, the experiment of feed water oxygen treatment for the unit was carried out. The experiment result shows that after oxygen treatment, the iron content of the watersteam system reduced obviously. In the feed water in inlet of the economizer, the iron content reduced from 8.0~13.5μg/L to below 1.0μg/L, the ammonia addition to the feed water reduced by 60%, the operation period of the precision treatment mixed bed lengthened by 2 to 3 times, and expected treated water quantity may be above 200000 tons in a period. The acid and alkali consumption for resin regeneration and selfused water in precision treatment mixed bed were reduced, and the discharge of waste regeneration liquid was reduced, which is useful for environment protection.

Key words: Keywords:supercritical unit, reductive all volatile treatment mode, feedwater oxygen treatment, precision treatment mixed bed