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中空纤维膜无泡曝气氧传质性能试验研究
引用本文:押玉荣,张娅,王晓磊,韩墨菲,王伟燕,安少锋,吴江渤,李小亚,王富民.中空纤维膜无泡曝气氧传质性能试验研究[J].中国给水排水,2020(1):74-79.
作者姓名:押玉荣  张娅  王晓磊  韩墨菲  王伟燕  安少锋  吴江渤  李小亚  王富民
作者单位:嘉诚环保工程有限公司;河北省污水治理与资源化工程技术研究中心
摘    要:为探究中空纤维膜无泡曝气技术水体充氧性能,使用聚四氟乙烯(PTFE)和聚丙烯(PP)两种材质的中空纤维膜组件,分别在曝气压强为2、4、6 kPa,曝气流量为18、36、54 L/h条件下进行清水曝气测试,并对两种中空纤维膜的氧传质系数、氧传质速率以及曝气效率等进行分析。结果表明,PTFE和PP两种中空纤维膜组件均能实现无泡曝气,且PP中空纤维膜组件的充氧效果相比PTFE组件要好;当曝气压强为4 kPa、曝气流量为36 L/h时,PTFE和PP膜组件的氧传质速率分别为0.326、0.550 g/(m^2·h)。中空纤维膜无泡曝气技术具有操作压力小、氧传质速率高等特点,充氧效果优于传统曝气。

关 键 词:中空纤维膜  无泡曝气  氧传质速率  曝气效率

Oxygen Mass Transfer Performance of Hollow Fiber Membrane with Bubble-free Aeration
YA Yu-rong,ZHANG Ya,WANG Xiao-lei,HAN Mo-fei,WANG Wei-yan,AN Shao-feng,WU Jiang-bo,LI Xiao-ya,WANG Fu-min.Oxygen Mass Transfer Performance of Hollow Fiber Membrane with Bubble-free Aeration[J].China Water & Wastewater,2020(1):74-79.
Authors:YA Yu-rong  ZHANG Ya  WANG Xiao-lei  HAN Mo-fei  WANG Wei-yan  AN Shao-feng  WU Jiang-bo  LI Xiao-ya  WANG Fu-min
Affiliation:(Jiacheng Environmental Protection Engineering Co.Ltd.,Shijiazhuang 050031,China;Hebei Wastewater Treatment and Resource Engineering Technology Research Center,Shijiazhuang 050031,China)
Abstract:Polytetrafluoroethylene(PTFE)and polypropylene(PP)hollow fiber membrane modules were used to explore the oxygenation performance of bubble-free aeration in water body under the conditions of aeration pressure of 2 k Pa,4 kPa and 6 kPa and aeration flow rate of 18 L/h,36 L/h and54 L/h,and the oxygen mass transfer coefficient,oxygen mass transfer rate and aeration efficiency of the two hollow fiber membranes were analyzed by clean water aeration test.Both the PTFE and PP hollow fiber membrane modules could achieve bubble-free aeration,and the PP hollow fiber membrane modules had better oxygenation effect than that of the PTFE.Under the conditions of aeration pressure of 4 kPa and aeration flow rate of 36 L/h,the oxygen mass transfer rates of the PTFE and PP membrane modules were 0.326 g/(m^2·h)and 0.550 g/(m^2·h),respectively.Hollow fiber membrane aeration technology is characterized by low operating pressure and high oxygen mass transfer rate,and the aeration efficiency is better than that of the traditional aeration technology.
Keywords:hollow fiber membrane  bubble-free aeration  oxygen mass transfer rate  aeration efficiency
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