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脉冲磁场对电厂循环冷却水中异养菌的灭活
引用本文:武红梅,刘智安,薛金英,刘洋,周斐博,王玮.脉冲磁场对电厂循环冷却水中异养菌的灭活[J].环境工程学报,2012,6(4):1113-1116.
作者姓名:武红梅  刘智安  薛金英  刘洋  周斐博  王玮
作者单位:内蒙古工业大学能源与动力工程学院,呼和浩特,010051
基金项目:国家自然科学基金资助项目(51068020);内蒙古自治区自然科学基金(2009MS0605);内蒙古高等学校科学研究项目(NJ10086)
摘    要:为了控制微生物繁殖对电厂循环冷却水系统造成的危害,研究了脉冲电源发生器与线圈绕组相连产生的脉冲磁场对循环水中异养菌的灭活影响,并对灭活关键因素进行了分析。实验结果表明,脉冲磁场对电厂循环冷却水中的异养菌有灭活作用;灭活率对频率和输出电压有选择性,并且随着作用时间和温度的升高而升高;在扫频范围100~1000 Hz、输出电压3 V、单次作用时间为15 s,温度45℃时,异养菌灭活率达到78.8%。

关 键 词:扫频脉冲磁场  异养菌  灭活率  循环冷却水
修稿时间:3/7/2011 12:00:00 AM

Inactivation of heterotrophic bacteria in circulation cooling water system of power plant by pulsed magnetic field
Wu Hongmei,Liu Zhian,Xue Jinying,Liu Yang,Zhou Feibo and Wang Wei.Inactivation of heterotrophic bacteria in circulation cooling water system of power plant by pulsed magnetic field[J].Techniques and Equipment for Environmental Pollution Control,2012,6(4):1113-1116.
Authors:Wu Hongmei  Liu Zhian  Xue Jinying  Liu Yang  Zhou Feibo and Wang Wei
Institution:Wu Hongmei Liu Zhian Xue Jinying Liu Yang Zhou Feibo Wang Wei(College of Energy and Power Engineering,Inner Mongolia University of Technology,Hohhot 010051,China)
Abstract:In order to control the harm caused by microbial growth in circulation cooling water systems,the inactivation of heterotrophic bacteria was investigated with the pulsed magnetic fields generated by DC-pulse generator combining with coil windings.Analyses for key factors of sterilization were carried out.The experimental results revealed that the pulsed magnetic fields have effects on inactivation of heterotrophic bacteria in the circulation cooling water system.The inactivation rates take selectivity for the frequency and output voltage.The inactivation rates increase with the increasing of temperature and time duration for each pulse.When the sweep frequency of pulsed magnetic field ranges from 10 to 1 000 Hz,the output voltage is 3 V,and the time duration for each pulse is 15 s,the inactivation rate is 78.8%.
Keywords:sweep pulse magnetic field  heterotrophic bacteria  inactivation rate  circulation cooling water
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