상세 보기
Successful removal of phenol from industrial wastewater using novel hydrophobic modified ceramic hollow fiber membrane contactors with remarkably high stability
- Lee, Hong Joo;
- Park, Chan-gyu;
- Yeo, In-seol;
- Park, Jung Hoon;
- Magnone, Edoardo
WEB OF SCIENCE
10SCOPUS
12초록
Wastewater pollution has become a serious global issue in recent years. One of the most prevalent indus-trial wastewater contaminants is phenol, a hazardous aromatic organic molecule. Part of the answer is to promote novel technologies for reducing the quantity of phenol (PH) in industrial wastewater. The liq-uid-liquid (LL) PH extraction process through a hydrophobically modified ceramic (Al2O3) hollow fiber (Al2O3HF) membrane contactor from an aqueous solution with a high initial concentration of PH (3500 ppm) was studied for the first time. Al2O3HF membranes were prepared by a combined phase -inversion and sintering process. All membranes were fully characterized. PH extraction process tests were performed at a temperature range from room temperature to 50 & DEG;C. Under room temperature con-ditions, the total PH extraction (%) was 80 % with respect to the initial PH concentration. The total PH extraction (%) increases as the temperature increases, reaching a value of about 91 % at 50 & DEG;C. The dura-bility of the Al2O3HF membrane contactor during a long-term LL PH extraction was investigated at 40 & DEG;C. The Al2O3HF membrane contactor exhibited no degradation in LL PH removal ability after a 100-hour LL PH extraction operation.(c) 2022 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
키워드
- 제목
- Successful removal of phenol from industrial wastewater using novel hydrophobic modified ceramic hollow fiber membrane contactors with remarkably high stability
- 저자
- Lee, Hong Joo; Park, Chan-gyu; Yeo, In-seol; Park, Jung Hoon; Magnone, Edoardo
- 발행일
- 2022-10
- 유형
- Article
- 권
- 114
- 페이지
- 402 ~ 408
- 언어
- ENG
- 출판사
- 한국공업화학회
- 발행국가
- 대한민국
- 분량
- 7 페이지
- ISSN
- E 1876-794X
P 1226-086X