Benzothiazole heterogeneous photodegradation in nano α-Fe 2 O 3 /oxalate system under UV light irradiation
Author(s) -
Xiangyun Han,
Xi Zhang,
Lei Zhang,
Mei Pan,
Jinlong Yan
Publication year - 2018
Publication title -
royal society open science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.84
H-Index - 51
ISSN - 2054-5703
DOI - 10.1098/rsos.180322
Subject(s) - benzothiazole , photodegradation , irradiation , oxalate , nano , photochemistry , photocatalysis , materials science , nuclear chemistry , radiochemistry , chemistry , inorganic chemistry , organic chemistry , catalysis , physics , composite material , nuclear physics
The photodegradation of benzothiazole (BTH) in wastewater with the coexistence of iron oxides and oxalic acid under UV light irradiation was investigated. Results revealed that an effective heterogeneous photo-Fenton-like system could be set up for BTH abatement in wastewater under UV irradiation without additional H 2 O 2 , and 88.1% BTH was removed with the addition of 2.0 mmol l −1 oxalic acid and 0.2 g l −1 α-Fe 2 O 3 using a 500 W high-pressure mercury lamp (365 nm). The degradation of BTH in the photo-Fenton-like system followed the first-order kinetic model. The photoproduction of hydroxyl radicals (·OH) in different systems was determined by high-performance liquid chromatography. Identification of transformation products by using liquid chromatography coupled with high resolution tandem mass spectrometry provided information about six transformation products formed during the photodegradation of BTH. Further insight was obtained by monitoring concentrations of the sulfate ion (SO 42 − ) and nitrate ion (NO 3− ) , which demonstrated that the intermediate products of BTH could be decomposed ultimately. Based on the results, the potential photodegradation pathway of BTH was also proposed.
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