Wet air oxidation of polyethylene glycols; Mechanisms, intermediates and implications for integrated chemical-biological wastewater treatment

被引:70
作者
Mantzavinos, D [1 ]
Livingston, AG [1 ]
Hellenbrand, R [1 ]
Metcalfe, IS [1 ]
机构
[1] UNIV LONDON IMPERIAL COLL SCI TECHNOL & MED,DEPT CHEM ENGN & CHEM TECHNOL,LONDON SW7 2BY,ENGLAND
关键词
wet air oxidation; integrated chemical-biological treatment; polyethylene glycols; intermediates; mechanisms; aerobic biodegradability;
D O I
10.1016/0009-2509(96)00272-2
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The wet air oxidation of aqueous solutions of polyethylene glycol, a synthetic polymer used in a wide range of applications, has been investigated at temperatures from 383 to 513 K and oxygen partial pressures From 2 to 3 MPa. Molecular weights From 62 (ethylene glycol) to 35,000 were studied with respect to their behaviour under wet oxidation conditions in terms of the intermediate compounds produced and the reaction mechanisms. It was found that the autocatalytic mechanism of thermochemical autoxidation was capable of converting macromolecules to lower molecular weight end-products, such as oligomers and carboxylic acids, at very short reaction times and mild operating conditions. The oxidation of the lower molecular weight products was also studied to aid the mechanistic interpretation. Total oxidation of these compounds to carbon dioxide proved to be difficult since compounds such as ethylene glycol and acetic acid are very resistant to chemical oxidation even under more severe conditions. Assessments of the aerobic biodegradability of polyethylene glycols, before and after wet air oxidation, were performed by measuring BOD5/COD ratios and the results are compared to those reported in the literature. The drawbacks of using BOD/COD ratios as an index of aerobic biodegradability are discussed and implications for integrated chemical-biological treatment are given. Copyright (C) 1996 Elsevier Science Ltd
引用
收藏
页码:4219 / &
页数:16
相关论文
共 44 条
[1]   OXIDATION AND BIODEGRADABILITY ENHANCEMENT OF 1,4-DIOXANE USING HYDROGEN-PEROXIDE AND OZONE [J].
ADAMS, CD ;
SCANLAN, PA ;
SECRIST, ND .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1994, 28 (11) :1812-1818
[3]   OZONE OXIDATION OF COMPOUNDS RESISTANT TO BIOLOGICAL DEGRADATION [J].
CALVOSA, L ;
MONTEVERDI, A ;
RINDONE, B ;
RIVA, G .
WATER RESEARCH, 1991, 25 (08) :985-993
[4]  
COX DP, 1976, P 3 INT BIOD S, P835
[5]   OXIDATION OF PROPIONIC-ACID SOLUTIONS [J].
DAY, DC ;
HUDGINS, RR ;
SILVESTO.PL .
CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 1973, 51 (06) :733-740
[6]   METABOLISM OF POLYETHYLENE-GLYCOL BY 2 ANAEROBIC-BACTERIA, DESULFOVIBRIO-DESULFURICANS AND A BACTEROIDES SP [J].
DWYER, DF ;
TIEDJE, JM .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1986, 52 (04) :852-856
[7]   DEGRADATION OF ETHYLENE-GLYCOL AND POLYETHYLENE GLYCOLS BY METHANOGENIC CONSORTIA [J].
DWYER, DF ;
TIEDJE, JM .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1983, 46 (01) :185-190
[8]  
EMANUEL NM, 1987, CHEM PHYSICS POLYM D, P316
[9]   BIODEGRADATION OF MONOETHYLENE, DIETHYLENE AND TRIETHYLENE GLYCOLS IN RIVER WATERS UNDER CONTROLLED LABORATORY CONDITIONS [J].
EVANS, WH ;
DAVID, EJ .
WATER RESEARCH, 1974, 8 (02) :97-100
[10]  
GILBERT E, 1984, VON WASSER, V62, P307