首页 | 本学科首页   官方微博 | 高级检索  
     

低频电磁场处理中水的水质稳定试验研究
引用本文:迟金宝,赵民,苍大强,张雪峰,常瑞卿.低频电磁场处理中水的水质稳定试验研究[J].钢铁,2009,44(8).
作者姓名:迟金宝  赵民  苍大强  张雪峰  常瑞卿
作者单位:1. 北京科技大学环境工程系,北京,100083
2. 包头钢铁集团公司技术中心,内蒙古,包头,014010
3. 内蒙古科技大学理学院,内蒙古,包头,014010
基金项目:内蒙古包头重大科技攻关项目(2007Z1009)
摘    要:针对循环冷却水运行过程中常出现的结垢与腐蚀问题,采用低频梯度电磁场对中水进行水质稳定试验。通过静态正交试验对电磁场运行参数进行优化,然后将其应用到循环冷却水动态模拟试验中。结果表明,非换热界面的结垢与腐蚀问题可以得到显著控制,污垢沉积率与腐蚀率分别由静态试验条件下56.85 mg/(cm2.月)、0.834 mm/a降低到动态试验条件下35.02 mg/(cm2.月)0、.136 mm/a,并有继续下降的趋势;换热界面的结垢现象严重,污垢沉积率达184.59 mg/(cm2.月),但腐蚀率可以得到显著控制,为0.158 mm/a。经XRD分析发现,中水中的大量Mg2+一方面抑制了电磁处理的阻垢作用,另一方面在电磁处理条件下可以促进铁表面形成致密的MgFe2O4保护膜,起到缓蚀作用。

关 键 词:中水  循环冷却水  磁化水处理  阻垢  缓蚀  

Experimental Study on Water Quality Stabilization Using the Low Frequency Electromagnetic Treatment of Reclaimed Water
CHI Jin-bao,ZHAO Min,CANG Da-qiang,ZHANG Xue-feng,CHANG Rui-qing.Experimental Study on Water Quality Stabilization Using the Low Frequency Electromagnetic Treatment of Reclaimed Water[J].Iron & Steel,2009,44(8).
Authors:CHI Jin-bao  ZHAO Min  CANG Da-qiang  ZHANG Xue-feng  CHANG Rui-qing
Affiliation:1.Department of Environmental Engineering;University of Science and Technology Beijing;Beijing 100083;China;2.Technology Center;Baotou Iron & Steel Group;Baotou 014010;Nei Monggol;3.School of Mathematics and Physics;Inner Mongolia University of Science and Technology;China
Abstract:According to scaling and corrosion problems during operation process of circulating cooling water,a water quality stabilization experiment was conducted on treatment reclaimed water with low frequency gradient electromagnetic field.The effects of electromagnetic treatment on scale and corrosion inhibition were mainly investigated.The experimental results show that scaling and corrosion problems on non-heat-transfer surface could be controlled significantly.The fouling deposition rate and the corrosion rate ...
Keywords:reclaimed water  circulating cooling water  magnetic water treatment  scale inhibition  corrosion inhibition  
本文献已被 CNKI 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号