Aqueous chlorination kinetics and mechanism of substituted dihydroxybenzenes

被引:120
作者
Rebenne, LM [1 ]
Gonzalez, AC [1 ]
Olson, TM [1 ]
机构
[1] UNIV CALIF IRVINE,DEPT CIVIL & ENVIRONM ENGN,IRVINE,CA 92717
关键词
D O I
10.1021/es950607t
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The initial chlorination kinetics of several substituted dihydroxybenzenes, including chlorinated resorcinol compounds, was studied over the pH range of 2-12 at 22 degrees C. For each of the resorcinol substrates, the apparent chlorination rates are a minimum in the pH range of 3-6 and a maximum at pH values between 8-11. A mechanism that involves the reaction of HOCl with ArX(OH)(2), ArX(OHO-, and ArX(O-)(2), and an acid-catalyzed pathway at pH < 4 was proposed to explain this pH dependence. Over natural water pH conditions, the reactions of HOCl with the anion and dianion forms of resorcinol groups are the most important. Although the intrinsic reactivity of HOCl with resorcinol substrates decreases with the extent of chlorine substitution on aromatic ring, the apparent reactivity of HOCl increases for more chlorinated resorcinols. In the presence of excess HOCl, monochloro- and dichloro resorcinol intermediates, therefore, should not accumulate when resorcinol groups undergo chlorine substitution. Linear free energy relationships for the reactivity of HOCl with resorcinols and phenols were developed. The sequential chlorination kinetics of resorcinol up to trichlororesorcinol can now be modeled.
引用
收藏
页码:2235 / 2242
页数:8
相关论文
共 34 条
[1]  
Albert A., 1984, DETERMINATION IONIZA
[2]  
*APHA AWWA WEF, 1992, STAND METH EX WAT WA, P38
[3]   HALOGEN CATIONS [J].
AROTSKY, J ;
SYMONS, MCR .
QUARTERLY REVIEWS, 1962, 16 (03) :282-297
[4]   REACTION PATHWAYS OF TRIHALOMETHANE FORMATION FROM THE HALOGENATION OF DIHYDROXYAROMATIC MODEL COMPOUNDS FOR HUMIC-ACID [J].
BOYCE, SD ;
HORNIG, JF .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1983, 17 (04) :202-211
[5]  
Brittain J. M., 1983, CHEM HALIDES PSEUDOH
[6]   IDENTITY AND YIELDS OF MAJOR HALOGENATED PRODUCTS OF AQUATIC FULVIC-ACID CHLORINATION [J].
CHRISTMAN, RF ;
NORWOOD, DL ;
MILLINGTON, DS ;
JOHNSON, JD ;
STEVENS, AA .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1983, 17 (10) :625-628
[7]  
DELAMARE PBD, 1976, ELECTROPHILIC HALOGE, P125
[8]   IDENTIFICATION OF INTERMEDIATES LEADING TO CHLOROFORM AND C-4 DIACIDS IN THE CHLORINATION OF HUMIC-ACID [J].
DELEER, EWB ;
DAMSTE, JSS ;
ERKELENS, C ;
DEGALAN, L .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1985, 19 (06) :512-522
[9]   CHARACTERIZATION OF AQUEOUS HUMIC SUBSTANCES BEFORE AND AFTER CHLORINATION [J].
HANNA, JV ;
JOHNSON, WD ;
QUEZADA, RA ;
WILSON, MA ;
LU, XQ .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1991, 25 (06) :1160-1164
[10]   AQUEOUS CHLORINATION OF RESORCINOL [J].
HEASLEY, VL ;
BURNS, MD ;
KEMALYAN, NA ;
MCKEE, TC ;
SCHROETER, H ;
TEEGARDEN, BR ;
WHITNEY, SE ;
WERSHAW, RL .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 1989, 8 (12) :1159-1163