Jump to main content
US EPA
United States Environmental Protection Agency
Search
Search
Main menu
Environmental Topics
Laws & Regulations
About EPA
Health & Environmental Research Online (HERO)
Contact Us
Print
Feedback
Export to File
Search:
This record has one attached file:
Add More Files
Attach File(s):
Display Name for File*:
Save
Citation
Tags
HERO ID
4276530
Reference Type
Journal Article
Title
Theoretical mechanistic studies on the degradation of alizarin yellow R initiated by hydroxyl radical
Author(s)
Jiao, X; Yu, H; Kong, Q; Luo, Yi; Chen, Q; Qu, J
Year
2014
Is Peer Reviewed?
Yes
Journal
Journal of Physical Organic Chemistry
ISSN:
0894-3230
Volume
27
Issue
6
Page Numbers
519-526
Language
English
DOI
10.1002/poc.3294
Web of Science Id
WOS:000336501400009
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84900543859&doi=10.1002%2fpoc.3294&partnerID=40&md5=1a2c05bebdaaf44e61c88e4013216e63
Exit
Abstract
The degradation of azo dyes has attracted many research efforts not only due to the resulting environmental problems but also because the azo compounds with various substituents may show different degradation mechanism. It has been computationally found here, for the first time, that the HO center dot initiated cleavages of C-N and N-N bonds of alizarin yellow R with carboxyl group are kinetically competitive. In view of the formation of HO center dot adducts, the C-N and N-N bond cleavages of the hydrazone tautomer of alizarin yellow R are also kinetically competitive, but the former is more thermodynamically favorable. This result is different from that previously reported for the hydrozone tautomers of Acid Orange 7 and Acid Orange 8 containing hydroxyl and azo groups in neighboring positions, which are favorable to follow C-N bond cleavage mechanism both kinetically and thermodynamically. The decarboxylation occurs via an attack of HO center dot to the benzene ring carbon connecting to the carboxyl group rather than a direct attack of HO center dot to the carboxyl carbon atom. The anion form has higher reactivity than the neutral form in all of the reactions investigated. In addition, a water molecule as a proton relay reagent could significantly reduce the energy barrier for the N-N bond cleavage of alizarin yellow R. Copyright (c) 2014 John Wiley & Sons, Ltd.
Keywords
azo dyes; decarboxylation; degradation mechanism; DFT; pollutants
Home
Learn about HERO
Using HERO
Search HERO
Projects in HERO
Risk Assessment
Transparency & Integrity