- 영문명
- Optimization of the Turbidity Removal Conditions from TiO2 Solution Using a Response Surface Methodology in the Electrocoagulation/Flotation Process
- 발행기관
- 한국환경보건학회
- 저자명
- 김동석(Dong-Seog Kim) 박영식(Young-Seek Park)
- 간행물 정보
- 『한국환경보건학회지』제35권 제6호, 491~499쪽, 전체 9쪽
- 주제분류
- 공학 > 환경공학
- 파일형태
- 발행일자
- 2009.12.30

국문 초록
영문 초록
The removal of turbidity from TiO2 wastewater by an electrocoagulation/flotation process was studied in a batch
reactor. The response surface methodology (RSM) was applied to evaluate the simple and combined effects of the
three main independent parameters, current, NaCl dosage and initial pH of the TiO2 solution on the turbidity
removal efficiency, and to optimize the operating conditions of the treatment process. The reaction of
electrocoagulation/flotation was modeled by use of the Box-Behnken method, which was used for the fitting of a 2nd
order response s urf ace model. T he a pplication o f RSM y ielded t he f ollowing r egression e quation, w hich i s an
empirical relationship between the turbidity removal efficiency of TiO2 wastewater and test variables in uncoded unit:
Turbidity removal (%) = 69.76 + 59.76Current + 11.98NaCl + 4.67pH + 5.00Current × pH − 160.11Current2− 0.34pH2.
The optimum current, NaCl dosage and pH of the TiO2 solution to reach maximum removal rates were found to be
0.186 A, 0.161 g/l and 7.599, respectively. This study clearly showed that response surface methodology was one of
the most suitable method to optimize the operating conditions for maximizing the turbidity removal. Graphical response surface and contour plots were used to locate the optimum point.
목차
I. 서 론
II. 연구방법
III. 결과 및 고찰
IV. 결 론
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