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Performances of biological aerated filter employing hollow fiber membrane segments of surface-improved poly (sulfone) as biofilm carriers
引用本文:SHEN Ying-jie,WU Guang-xi,FAN Yao-bo,ZHONG Hui,WU Lin-lin,ZHANG Shao-lai,ZHAO Xian-hong,ZHANG Wei-jun. Performances of biological aerated filter employing hollow fiber membrane segments of surface-improved poly (sulfone) as biofilm carriers[J]. 环境科学学报(英文版), 2007, 19(7): 811-817. DOI: 10.1016/S1001-0742(07)60136-3
作者姓名:SHEN Ying-jie  WU Guang-xi  FAN Yao-bo  ZHONG Hui  WU Lin-lin  ZHANG Shao-lai  ZHAO Xian-hong  ZHANG Wei-jun
作者单位:[1]Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China. [2]Research Institute for Beijing Tongrentang Limited Company, Beijing 100062, China.
基金项目:北京市自然科学基金 , 北京市研究发展项目 , 国家高技术研究发展计划(863计划)
摘    要:Using the surface of poly (sulfone) hollow fiber membrane segments as grafted layer, the hydrophilic acrylamide chain was grafted on by UV-photoinduced grafting polymerization. The gained improvement of surface wettability for the modified membrane was tested by measuring the contact-angle as well as FTIR spectra. Then correlation between the hydrophilic ability of support material and the biofilm adherence ability was demonstrated by comparing the pollutant removal rates from urban wastewater via two identical lab-scale up-flow biological aerated filters, one employed the surface wettability modified poly (sulfone) hollow fiber membrane segment as biofilm carder and the other employed unmodified membrane segment as biofilm carder. The experimental results showed that under the conditions of influent flux 5 L/h, hydraulic retention time 9 h and gas to liquid ratio (G/L) 10: 1, the removal rates of chemical oxygen demand (COD) and ammonium nitrogen (NH4^+-N) for the modified packing filter and the unmodified packing filter was averaged at 83.64% and 96.25%, respectively, with the former filter being 5%-20% more than the latter. The effluent concentration of COD, NH4^+-N and turbidity for the modified packing filter was 25.25 mg/L, 2 mg/L and 8 NTU, respectively. Moreover, the ammonium nitrogen removal performance of the filter packing the modified PSF was compared with the other bioreactor packing of an efficient floating medium. The biomass test indicated that the modified membrane matrixes provided better specific adhesion (3310-5653 mg TSS/L support), which gave a mean of 1000 mg TSS/L more than the unmodified membrane did. In addition, the phenomenon of simultaneous denitrification on the inner surface of the support and nitrification on the outer surface was found in this work.

关 键 词:表面修饰 光致变色聚合 硝化作用 反硝化作用 中空纤维膜 过滤器 聚乙烯 生物膜
收稿时间:2006-09-08
修稿时间:2006-09-082007-01-18

Performances of biological aerated filter employing hollow fiber membranesegments of surface-improved poly (sulfone) as biofilm carriers
SHEN Ying-jie,WU Guang-xi,FAN Yao-bo,ZHONG Hui,WU Lin-lin,ZHANG Shao-lai,ZHAO Xian-hong and ZHANG Wei-jun. Performances of biological aerated filter employing hollow fiber membranesegments of surface-improved poly (sulfone) as biofilm carriers[J]. Journal of environmental sciences (China), 2007, 19(7): 811-817. DOI: 10.1016/S1001-0742(07)60136-3
Authors:SHEN Ying-jie  WU Guang-xi  FAN Yao-bo  ZHONG Hui  WU Lin-lin  ZHANG Shao-lai  ZHAO Xian-hong  ZHANG Wei-jun
Affiliation:1. Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China
2. Research Institute for Beijing Tongrentang Limited Company, Beijing 100062, China
Abstract:Using the surface of poly (sulfone) hollow fiber membrane segments as grafted layer, the hydrophilic acrylamide chain was grafted on by UV-photoinduced grafting polymerization. The gained improvement of surface wettability for the modified membrane was tested by measuring the contact-angle as well as FTIR spectra. Then correlation between the hydrophilic ability of support material and the biofilm adherence ability was demonstrated by comparing the pollutant removal rates from urban wastewater via two identical lab-scale up-flow biological aerated filters, one of which employed the surface wettability modified poly (sulfone) hollow fiber membrane segment as biofilm carrier and the other employed unmodified membrane segment as biofilm carrier. The experimental results showed that under the conditions of influent flux 5 L/h, hydraulic retention time 9 h and gas to liquid ratio (G/L) 10:1, the removal rates of chemical oxygen demand (COD) and ammonium nitrogen (NH4 -N) for the modified packing filter and the unmodified packing filter was averaged at 83.64% and 96.25%, respectively, with the former filter being 5%-20% more than the latter. The effluent concentration of COD, NH4 -N and turbidity for the modified packing filter was 25.25 mg/L, 2 mg/L and 8 NTU, respectively. Moreover, the ammonium nitrogen removal performance of the filter packing the modified PSF was compared with the other bioreactor packing of an efficient floating medium. The biomasstest indicated that the modified membrane matrixes provided better specific adhesion (3310-5653 mg TSS/L support), which gave a mean of 1000 mg TSS/L more than the unmodified membrane did. In addition, the phenomenon of simultaneous denitrification on the inner surface of the support and nitrification on the outer surface was found in this work.
Keywords:surface modification  UV-photoinduced grafting polymerization  nitrification  denitrification  hollow fiber membrane  biofilm attachment  poly  hollow fiber membrane  biological aerated filter  Performances  sulfone  carriers  phenomenon  denitrification  inner  work  addition  mean  provided  better  specific  adhesion  ammonium  nitrogen removal  performance  bioreactor
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