Formation and inhibition of chloroaromatic micropollutants formed in incineration processes

被引:30
作者
Lenoir, D
Wehrmeier, A
Sidhu, SS
Taylor, PH
机构
[1] GSF Forschungszentrum Umwelt & Gesundheit GMBH, Inst Okol Chem, D-85765 Neuherberg, Germany
[2] Univ Dayton, Res Inst, Environm Sci & Engn Grp, Dayton, OH 45469 USA
关键词
acetylene; dichloroacetylene; cupric chloride; chlorination; condensation; chlorophenols; hexachlorobenzene; inhibition; PCDD/F;
D O I
10.1016/S0045-6535(00)00330-1
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The formation pathways for chlorinated aliphatic and chlorinated aromatic compounds in technical incineration processes are reviewed. It is shown that acetylene is converted to chloroaromatic compounds including PCDD/F in a special flow reactor by catalytic activity of CuCl2 in the temperature regime of a post-combustion zone of technical incinerators. Mechanistic pathways begin with chlorination of acetylene. Dichloroacetylene is further condensed to C-4 and C-6 units. Hexachlorobenzene is the dominant aromatic compound and a likely precursor to chlorinated phenols and PCDD/F. Two specific mechanisms of formation of chlorinated aromatic compounds including PCDD/F have been advanced. Both mechanisms begin with the formation of dichloroacetylene from flame pyrolysis products like acetylene. Condensation of dichloroacetylene is mediated by copper species via metallacyclic intermediates and/or a catalytic cycle involving copper stabilized trichlorovinyl radicals. The final pathways of conversion of chlorinated benzenes to PCDD/F via chlorophenols are under active investigation. (C) 2001 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:107 / 114
页数:8
相关论文
共 29 条
[21]   Pyrolysis and molecular growth of chlorinated hydrocarbons [J].
Taylor, PH ;
Dellinger, B .
JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 1999, 49 (1-2) :9-29
[22]  
Taylor PH, 1998, TWENTY-SEVENTH SYMPOSIUM (INTERNATIONAL) ON COMBUSTION, VOLS 1 AND 2, P1769
[23]   Copper-catalyzed chlorination and condensation of acetylene and dichloroacetylene [J].
Taylor, PH ;
Wehrmeier, A ;
Sidhu, SS ;
Lenoir, D ;
Schramm, KW ;
Kettrup, A .
CHEMOSPHERE, 2000, 40 (12) :1297-1303
[24]   A plausible mechanism for copper-catalyzed oxidative chlorophenol coupling reactions.: Semi-empirical AM1 and ab initio 3-21G molecular orbital studies [J].
Tuppurainen, K ;
Ruuskanen, J .
CHEMOSPHERE, 1999, 38 (08) :1825-1832
[25]   Effect of liquid inhibitors on PCDD/F formation, prediction of particle-phase PCDD/F concentrations using PLS modelling with gas-phase chlorophenol concentrations as independent variables [J].
Tuppurainen, K ;
Aatamila, M ;
Ruokojärvi, P ;
Halonen, I ;
Ruuskanen, J .
CHEMOSPHERE, 1999, 38 (10) :2205-2217
[26]  
*US EPA, 1998, EPA530D98002
[27]  
US EPA, 1998, EPA600P98002AA
[28]   Patterns of isomers of chlorinated dibenzo-p-dioxins as tool for elucidation of thermal formation mechanisms [J].
Wehrmeier, A ;
Lenoir, D ;
Schramm, KW ;
Zimmermann, R ;
Hahn, K ;
Henkelmann, B ;
Kettrup, A .
CHEMOSPHERE, 1998, 36 (13) :2775-2801
[29]   Role of copper species in chlorination and condensation reactions of acetylene [J].
Wehrmeier, A ;
Lenoir, D ;
Sidhu, SS ;
Taylor, PH ;
Rubey, WA ;
Kettrup, A ;
Dellinger, B .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1998, 32 (18) :2741-2748