EFFECT OF FE-ZSM-5 ZEOLITE ON THE PHOTOCHEMICAL AND BIOCHEMICAL DEGRADATION OF 4-NITROPHENOL
Citation
C. Pulgarin et al., EFFECT OF FE-ZSM-5 ZEOLITE ON THE PHOTOCHEMICAL AND BIOCHEMICAL DEGRADATION OF 4-NITROPHENOL, Journal of molecular catalysis. A, Chemical, 95(1), 1995, pp. 61-74
Categorie Soggetti
Chemistry Physical
SICI code
1381-1169(1995)95:1<61:EOFZOT>2.0.ZU;2-W
Abstract
This study presents a novel approach for the degradation of 4-nitrophe
nol using Fe-ZSM-5 zeolite (Fe-zeolite). The influence of temperature,
light, H2O2 concentration and amount of 1.5% Fe-zeolite catalyst used
during the reaction has been systematically studied. A solution contai
ning 4-nitrophenol (3.6 X 10(-3) M), 1.5% Fe-zeolite (1.375g/l) and H2
O2 (1.3 X 10(-2) M) photodegraded the pollutant in approximate to 8 h
at 35 degrees C as seen by HPLC. The same solution needed > 12 h to at
tain complete mineralization as shown by TOC experiments. Therefore CO
2 is the major oxidation product. The amount of H2O2 used in the react
ion was monitored throughout. Based on NMR experimental results the OH
radicals are considered to be reactive species responsible for the de
gradation reactions. Physical insight is given through a model for the
surface reaction taking place. This model suggests that the degradati
on is partly due to the zeolite surface. Biodegradability of 4-nitroph
enol was monitored by biochemical oxygen demand (BOD), chemical oxygen
demand (COD) and dissolved organic carbon (DOC).