Sonochemical degradation of phenolic pollutants in aqueous solutions

被引:36
作者
Emery, RJ
Papadaki, M
Mantzavinos, D [1 ]
机构
[1] Tech Univ Crete, Dept Environm Engn, Polytechneioupolis, GR-73100 Khania, Greece
[2] Univ Leeds, Dept Chem Engn, Leeds LS2 9JT, W Yorkshire, England
基金
英国工程与自然科学研究理事会;
关键词
kinetics; phenols; treatment; ultrasound; water;
D O I
10.1080/09593330309385694
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The sonochemical degradation of phenol, 2-chlorophenol and 3,4-dichlorophenol in aqueous solutions as a function of several operating conditions has been investigated. Experiments were performed at initial substrate concentrations of 0.1, 0.5 and 1 g l(-1), liquid phase volumes of 0.05, 0.07 and 0.08 1, electric power outputs of 125, 187.5 and 250 W, liquid bulk temperatures of 20, 35, 50 and 70degreesC and an ultrasound frequency of 20 kHz. Substrate concentration was determined as a function of time by means of high performance liquid chromatography. At the conditions under consideration, the rate of degradation follows first order kinetics with respect to the substrate concentration and increases with increasing electric power and decreasing liquid volume. The relative reactivity appears to decrease in the order: 2-chlorophenol>3,4-dichlorophenol>phenol. Measurements of liquid phase total organic carbon content showed that degradation by-products are more recalcitrant than the original substrate. The rate of 2-chlorophenol degradation was also found to decrease with decreasing liquid bulk temperature and increasing initial concentration. Addition of t-butanol as a hydroxyl radical scavenger only partially inhibited degradation, thus implying that degradation is likely to proceed via both radical-induced and thermal reactions. Addition of Fe2+ ions at concentrations as low as about 0.2x10(-3) g l(-1) resulted in increased degradation rates; this is attributed to iron being capable of readily decomposing hydrogen peroxide (generated by water sonolysis) in a Fenton-like process to form hydroxyl radicals as well as being an effective oxidation catalyst. The implications of the use of ultrasound in wastewater treatment are also discussed.
引用
收藏
页码:1491 / 1500
页数:10
相关论文
共 27 条
[11]   Correction of hydrogen peroxide interference on standard chemical oxygen demand test [J].
Kang, YW ;
Cho, MJ ;
Hwang, KY .
WATER RESEARCH, 1999, 33 (05) :1247-1251
[12]   ULTRASONIC IRRADIATION OF PARA-NITROPHENOL IN AQUEOUS-SOLUTION [J].
KOTRONAROU, A ;
MILLS, G ;
HOFFMANN, MR .
JOURNAL OF PHYSICAL CHEMISTRY, 1991, 95 (09) :3630-3638
[13]   DECOMPOSITION OF PARATHION IN AQUEOUS-SOLUTION BY ULTRASONIC IRRADIATION [J].
KOTRONAROU, A ;
MILLS, G ;
HOFFMANN, MR .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1992, 26 (07) :1460-1462
[14]   Sonochemical degradation of chlorophenols in water [J].
Nagata, Y ;
Nakagawa, M ;
Okuno, H ;
Mizukoshi, Y ;
Yim, B ;
Maeda, Y .
ULTRASONICS SONOCHEMISTRY, 2000, 7 (03) :115-120
[15]   Sonolytic degradation of hazardous organic compounds in aqueous solution [J].
Okuno, H ;
Yim, B ;
Mizukoshi, Y ;
Nagata, Y ;
Maeda, Y .
ULTRASONICS SONOCHEMISTRY, 2000, 7 (04) :261-264
[16]   Ultrasonic degradation of 2:4:6 trichlorophenol in presence of TiO2 catalyst [J].
Pandit, AB ;
Gogate, PR ;
Mujumdar, S .
ULTRASONICS SONOCHEMISTRY, 2001, 8 (03) :227-231
[17]  
PAPADAKI M, IN PRESS SEP PURIF T
[18]   Degradation of polycyclic aromatic hydrocarbons by ultrasonic irradiation [J].
Park, JK ;
Hong, SW ;
Chang, WS .
ENVIRONMENTAL TECHNOLOGY, 2000, 21 (11) :1317-1323
[19]   Ultrasonic waste-water treatment: incidence of ultrasonic frequency on the rate of phenol and carbon tetrachloride degradation [J].
Petrier, C ;
Francony, A .
ULTRASONICS SONOCHEMISTRY, 1997, 4 (04) :295-300
[20]   THRESHOLD INTENSITIES AND KINETICS OF SONOREACTION OF THYMINE IN AQUEOUS-SOLUTIONS AT LOW ULTRASONIC INTENSITIES [J].
SEHGAL, CM ;
WANG, SY .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1981, 103 (22) :6606-6611