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磁场处理工业循环水具有一定的阻垢效果。在实验室利用研制的超强永磁场模拟处理工业循环水装置,研究磁场处理后循环水pH值与磁场强度、循环水速度、循环水温度、磁场处理时间、钙离子浓度等的关系,建立基于pH值的超强永磁场循环水处理阻垢效果评价模型,为研制磁场处理循环水的质量控制模型提供参考,为超强永磁场应用于工业生产实践提供必要理论基础。

Magnetic field treatment of industrial circulating water has the effects of scale inhibition .The ultra-strong permanent magnetic field treatment of industrial circulating water was simulated in laboratory .The relationships of the pH value of treated circulating water to magnetic field intensity ,the speed and temperature of the circulating wa-ter ,exposure time to the magnetic field ,and calcium ion concentration were analyzed .A model based on pH value of industrial circulating water treated by ultra-strong permanent magnetic field was established for assessing the effects of scale inhibition .It can provide references for quality control of circulating water treated by magnetic field and theo-retical foundation for ultra-strong permanent magnetic field application in industry .

参考文献

[1] 王大中 .钢铁厂循环冷却水处理的特点[J].工业水处理,1989,9(02):3.
[2] 陈常洲.高炉冷却水系统的发展与应用[J].化工给排水设计,1997(01):12.
[3] 沈华枢 .钢铁工业用水[J].国外钢铁,1992,17(07):66.
[4] 顾飞;姚家瑜;李静 等.我国高炉冷却水水质调查及评价[J].炼铁,1996,15(04):27.
[5] 左海滨;程素森;杨天钧.魏寿昆院士百岁寿辰纪念文集[M].北京:科学出版社,2006:72.
[6] 黄导,张岩.中国钢铁企业节水问题探讨[J].中国冶金,2004(11):9-12.
[7] 李维国.21世纪以来中国炼铁技术发展的回顾和展望[J].中国冶金,2012(11):4-10.
[8] 牛永红,张雪峰,麻永林,苍大强,宋存义,武文斐.磁处理对炼铁厂循环冷却水pH值的影响研究[J].包头钢铁学院学报,2005(02):130-132.
[9] 张雪峰,刘官元,苍大强,宋存义,孙体昌.高梯度磁场处理循环冷却水的机理[J].钢铁,2006(09):82-84.
[10] 黄征青,徐洪涛,黄光斗.磁处理对水溶液pH值和电导率的影响[J].水处理技术,2003(01):22-24.
[11] Lipus LC;Dobersek D .Influence of magnetic field on the aragonite precipitation[J].Chemical Engineering Science,2007(7):2089-2095.
[12] 齐冬子 .关于碳酸钙饱和pH值的计算公式[J].工业水处理,1993,13(01):8.
[13] 邢晓凯,马重芳,陈永昌.溶液pH值对碳酸钙结垢的影响[J].石油化工设备,2004(05):11-14.
[14] 冯敏.现代水处理技术[M].北京:化学工业出版社,2006:1.
[15] 雷武,赵志仁,夏明珠,王风云.pH位移法评定阻垢剂的阻垢性能[J].理化检验-化学分册,2002(03):125-127.
[16] Fathi A;Mohamed T;Claude G et al.Effect of A Magnetic Water Treatment on Homogeneous and Heterogeneous Pre-cipitation of Calcium Carbonate[J].Water Research,2006,40(07):1941.
[17] A.D. Kney;S.A. Parsons .A spectrophotometer-based study of magnetic water treatment: Assessment of ionic vs. surface mechanisms[J].Water research: A journal of the international water association,2006(3):517-524.
[18] Pang XF .The conductivity properties of protons in ice and mechanism of magnetization of liquid water[J].The European physical journal, B. Condensed matter physics,2006(1):5-23.
[19] 庞小峰.在水中的纳米水分子的发现和它的特点及实验证实[J].原子与分子物理学报,2006(z1):1-3.
[20] 庞小峰,邓波.在磁场作用下水的特性的变化和它的变化机理[J].原子与分子物理学报,2007(02):281-290.
[21] 张欣,黑田正和.利用磁场处理水的研究[J].给水排水,2001(04):14-17.
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