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Chemical cleaning of fouled PVC membrane during ultrafiltration of algal-rich water 被引量:7

Chemical cleaning of fouled PVC membrane during ultrafiltration of algal-rich water
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摘要 Cleaning of hollow-fibre polyvinyl chloride (PVC) membrane with different chemical reagents after ultrafiltration of algal-rich water was investigated. Among the tested cleaning reagents (NaOH, HCl, EDTA, and NaClO), 100 mg/L NaClO exhibited the best performance (88.4% ± 1.1%) in removing the irreversible fouling resistance. This might be attributed to the fact that NaClO could eliminate almost all the major foulants such as carbohydrate-like and protein-like materials on the membrane surface, as confirmed by Fourier transform infrared spectroscopy analysis. However, negligible irreversible resistance (1.5% ± 1.0%) was obtained when the membrane was cleaning by 500 mg/L NaOH for 1.0 hr, although the NaOH solution could also desorb a portion of the major foulants from the fouled PVC membrane. Scanning electronic microscopy and atomic force microscopy analyses demonstrated that 500 mg/L NaOH could change the structure of the residual foulants on the membrane, making them more tightly attached to the membrane surface. This phenomenon might be responsible for the negligible membrane permeability restoration after NaOH cleaning. On the other hand, the microscopic analyses reflected that NaClO could effectively remove the foulants accumulated on the membrane surface. Cleaning of hollow-fibre polyvinyl chloride (PVC) membrane with different chemical reagents after ultrafiltration of algal-rich water was investigated. Among the tested cleaning reagents (NaOH, HCl, EDTA, and NaClO), 100 mg/L NaClO exhibited the best performance (88.4% ± 1.1%) in removing the irreversible fouling resistance. This might be attributed to the fact that NaClO could eliminate almost all the major foulants such as carbohydrate-like and protein-like materials on the membrane surface, as confirmed by Fourier transform infrared spectroscopy analysis. However, negligible irreversible resistance (1.5% ± 1.0%) was obtained when the membrane was cleaning by 500 mg/L NaOH for 1.0 hr, although the NaOH solution could also desorb a portion of the major foulants from the fouled PVC membrane. Scanning electronic microscopy and atomic force microscopy analyses demonstrated that 500 mg/L NaOH could change the structure of the residual foulants on the membrane, making them more tightly attached to the membrane surface. This phenomenon might be responsible for the negligible membrane permeability restoration after NaOH cleaning. On the other hand, the microscopic analyses reflected that NaClO could effectively remove the foulants accumulated on the membrane surface.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2011年第4期529-536,共8页 环境科学学报(英文版)
基金 supported by the Important Special Program of Science and Technology for the Control and Treatment of Water Pollution in China(No.2008ZX07422-005) the National Science and Technology Project of Eleventh Five Years(No.2006BAJ08B05-2) the National Creative Research Groups Foundation of China(No.50821002) the State Key Laboratory of Urban Water Resource and Environment(No.2008DX04) the National Postdoctoral Science Foundation of China(No.20100471062)
关键词 membrane fouling chemical cleaning algal-rich water NAOH NACLO membrane fouling chemical cleaning algal-rich water NaOH NaClO
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  • 1Bird M R,Bartlett M.Measuring and modeling flux recovery during the chemical cleaning of MF membranes for the processing of whey protein concentrate. Journal of Food Engineering . 2002
  • 2Bird M R,Fryer P J.An experimental study of the cleaning of surfaces fouled by whey proteins. Food and Bioproducts Processing . 1991
  • 3Campinas M,Rosa M J.Evaluation of cyanobacterial cells removal and lysis by ultrafiltration. Separation and Purification Technology . 2010
  • 4Chiou Y T,Hsieh M L,Yeh H H.Effect of algal ex-tracellular polymer substances on UF membrane fouling. Desalination . 2010
  • 5Chronakis I S.Gelation of edible blue-green algae protein isolate(Spirulina platensis strain Pacifica):thermal transi-tions,rheological properties,and molecular forces involved. Journal of Agriculture and Food Chemistry . 2001
  • 6Habarou H,Croue′J P,Heim V,Franiatte A,De′mocrate C.Identification of organic foulants of nanofiltration mem-branes used for drinking water production. Water Practice Technology . 2006
  • 7Henderson R K,Baker A,Parsons S A,Jefferson B.Characterisation of algogenic organic matter extracted from cyanobacteria,green algae and diatoms. Water Research . 2008
  • 8Ladner D A,Vardon D R,Clark M M.Effects of shear on microfiltration and ultrafiltration fouling by marine bloom-forming algae. Journal of Membrane Science . 2010
  • 9Lee N H,Amy G,Croue′J P.Low-pressure membrane(MF/UF)fouling associated with allochthonous versus autochthonous natural organic matter. Water Research . 2008
  • 10Morel G,Ouazzani N,Graciaa A,Lachaise J.Surfactant modified ultrafiltration of nitrate ions removal. Journal of Membrane Science . 1997

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