首页 | 官方网站   微博 | 高级检索  
     

跨膜压差和膜面流速对磁絮凝延缓陶瓷微滤膜通量衰减的影响
引用本文:周振,姚吉伦,庞治邦,刘波,张星.跨膜压差和膜面流速对磁絮凝延缓陶瓷微滤膜通量衰减的影响[J].环境工程,2017,35(6):10-14.
作者姓名:周振  姚吉伦  庞治邦  刘波  张星
作者单位:1. 后勤工程学院国防建筑规划与环境工程系,重庆,401311;2. 后勤工程学院国家救灾应急装备工程技术研究中心,重庆,401311;3. 92303部队,山东青岛,266000;4. 77620部队,拉萨,850000
摘    要:为克服陶瓷微滤膜净化微污染水体时产水量不高、通量衰减迅速的难题,采用磁絮凝预处理工艺延缓陶瓷膜的污染。对比了磁絮凝预处理与传统絮凝预处理对陶瓷微滤膜膜污染的影响,结果显示:磁絮凝预处理后陶瓷膜的稳定产水量高于传统絮凝预处理,验证了磁絮凝预处理工艺延缓膜污染的可行性。同时,研究了跨膜压差和膜面流速对2种组合工艺膜通量的影响,结果表明:随着跨膜压差和膜面流速的增加,膜通量均提高但增幅逐渐放缓,其优化运行参数如下:跨膜压差为0.20 MPa,膜面流速为2.0 m/s。

关 键 词:磁絮凝  传统絮凝  陶瓷微滤膜  跨膜压差  膜面流速  膜通量  膜污染

EFFECT OF TRANSMEMBRANE PRESSURE AND CROSSFLOW VELOCITY ON MEMBRANE FOULING USING MAGNETIC FLOCCULATION PRETREATMENT
ZHOU Zhen,YAO Ji-lun,PANG Zhi-bang,LIU Bo,ZHANG Xing.EFFECT OF TRANSMEMBRANE PRESSURE AND CROSSFLOW VELOCITY ON MEMBRANE FOULING USING MAGNETIC FLOCCULATION PRETREATMENT[J].Environmental Engineering,2017,35(6):10-14.
Authors:ZHOU Zhen  YAO Ji-lun  PANG Zhi-bang  LIU Bo  ZHANG Xing
Abstract:To increase membrane fluxes during micro-polluted surface water microfiltration process,magnetic flocculation (MF) was employed for ceramic membrane microfiltration (CMM) pretreatment to mitigate membrane fouling.Comparison of CMM performance with conventional flocculation (CF) and magnetic flocculation (MF) was conducted.The results showed that magnetic flocculation pretreatment improved water yield compared with conventional flocculation (CF) pretreatment.Meanwhile,factors such as transmembrane pressure and crossflow velocity that affected the permeate fluxes in hybrid MF-CMM process was investigated.The result indicated that the membrane fluxes was increased but the growth rate slowed with the increase of the transmembrane pressure and crossflow velocity,and the optimum operating conditions were a transmembrane pressure of 0.20 MPa and a crossflow velocity of 2.0 m/s.
Keywords:magnetic flocculation  conventional flocculation  ceramic membrane microfiltration  transmembrane pressure  crossflow velocity  membrane flux  membrane fouling
本文献已被 CNKI 万方数据 等数据库收录!
点击此处可从《环境工程》浏览原始摘要信息
点击此处可从《环境工程》下载全文
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-23

京公网安备 11010802026262号