탄소섬유 한외여과막 및 광촉매 코팅 폴리프로필렌 구의 혼성 수처리: 물 역세척 시 유기물의 영향

Hybrid Water Treatment of Carbon Fiber Ultrafiltration Membrane and Polypropylene Beads Coated Photocatalyst: Effect of Organic Materials in Water Back-flushing

  • 박진용 (한림대학교 환경생명공학과) ;
  • 김미향 (한림대학교 환경생명공학과)
  • Park, Jin Yong (Department of Environmental Sciences & Biotechnology, Hallym University) ;
  • Kim, Mi Hyang (Department of Environmental Sciences & Biotechnology, Hallym University)
  • 투고 : 2012.11.19
  • Accepted : 2012.12.16
  • Published : 2012.12.31

Abstract

탄소섬유 한외여과막 및 광촉매 혼성 수처리를 위해 관형 여과막 외부와 원통형 막 모듈 내부 사이 공간에 광촉매를 충전하였다. 광촉매는 PP (polypropylene) 구에 이산화티타늄 분말을 플라즈마 화학증착 공정으로 코팅한 것이다. 휴믹산과 카올린 모사용액을 대상으로 막오염을 최소화하기 위해 10분 주기로 10초 동안 물 역세척을 시행하였다. 기존 결과와 동일하게 휴믹산을 10 mg/L부터 2 mg/L로 변화시킴에 따라, 막오염에 의한 저항 ($R_f$)이 감소하여 2 mg/L에서 최대 총여과부피 ($V_T$)를 얻었다. 탁도와 휴믹산의 처리효율은 각각 97.1%와 74.2% 이상으로 휴믹산 농도의 영향을 받지 않았다. 그러나 기존 결과에서는 휴믹산의 농도가 증가할수록 휴믹산의 처리효율이 다소 증가하는 경향을 나타냈다.

For hybrid water treatment of carbon fiber ultrafiltration and photocatalyst, we used the hybrid module that was composed of photocatalyst packing between tubular membrane outside and module inside. Photocatalyst was PP (polypropylene) bead coated with $TiO_2$ powder by CVD (chemical vapor deposition) process. Water back-flushing of 10 sec was performed per every period of 10 min to minimize membrane fouling for modified solution, which was prepared with humic acid and kaolin. Resistance of membrane fouling ($R_f$) decreased as humic acid concentration changed from 10 mg/L to 2 mg/L, and finally the highest total permeate volume ($V_T$) could be obtained at 2 mg/L, which was the same with the previous results. Then, treatment efficiencies of turbidity and humic acid were above 98.9% and 88.7%, respectively, those did not depend on the humic acid concentration. However, the treatment efficiency of humic acid increased a little as the humic acid concentration increased in the previous results.

Keywords

Acknowledgement

Supported by : 한국연구재단