| Study on the filtration mechanism of humic acidbymembrane separation and photocatalysis coupling technology |
| Authors: CHENHuangmeng1,SONG Hongchen2,*,WANG Jianming2,LIUZili1 |
| Units: 1. School of Chemistry &Chemical Engineering of GuangzhouUniversity, |
| KeyWords: ultrafiltration;photocatalysis;PVDF;humic acid |
| ClassificationCode:TQ028.8;TU991.2 |
| year,volume(issue):pagination: 2014, 34(6):89-95 |
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Abstract: |
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In order to make use of the advantage of membrane separation and supported photocatalystcoupling technology, TiO2-doped PVDF membrane was prepared by the nonsolvent induced phase method, and theeffect of process conditions (such as UV light intensity, membrane filtration flow rate, solution concentration) on membrane performance were studied by self-made testing device, ultraviolet-visible spectrophotometer and scanning electron microscope(SEM), and the optimal process condition was obtained. Results indicated thatthe foulants’ rejection and photocatalytic degradation could be got simultaneously by the coupling technology. And the optimal removal of humic acid could be attainedwhen the UV light intensity was 1.0mW/cm2, the flow rate was 300mL/min, and the solution concentration was 2mg/L. |
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Funds: |
| 国家自然科学基金项目(21307146); |
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AuthorIntro: |
| 陈黄锰(1989-),男,广东汕头人,硕士研究生,主要从事光催化-膜分离耦合工艺的机理研究; |
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Reference: |
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[1] VatshaB, NgilaJ C, MoutloaliMR. Preparation of antifouling polyvinylpyrrolidone (PVP 40K) modified polyethersulfone (PES) ultrafiltration (UF) membrane for water purification[J]. Physics and Chemistry of the Earth, 2013, 9:1-7 |
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