| Literature DB >> 25937832 |
Krisztina Kovács1, Shijun He2, Viktoria Mile1, Tamás Csay1, Erzsébet Takács3, László Wojnárovits1.
Abstract
BACKGROUND: Cutting edge technologies based on Advanced Oxidation Processes (AOP) are under development for the elimination of highly persistent organic molecules (like pesticides) fromEntities:
Keywords: Advanced oxidation processes; Degradation; Diuron; Hydroxyl radical; Irradiation technology
Year: 2015 PMID: 25937832 PMCID: PMC4415950 DOI: 10.1186/s13065-015-0097-0
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Figure 1Transient absorption spectra in N2O saturated, 1 × 10−4 mol dm−3 diuron solutions. Closed symbols in the absence, open symbols in the presence of 1 × 10−4 mol dm−3 K3Fe(CN)6, dose/pulse 20 Gy. Inset: concentration dependence of pseudo-first-order rate constant of absorbance build-up at 325 and 365 nm.
Figure 2Absorption spectra of 1.6 × 10−4 mol dm−3 diuron solution. Irradiation with 0 − 8 kGy doses, the spectra were obtained in •OH (a), eaq − (b), •OH + eaq − (c) and in •OH + O2 −•/HO2 • (d) reactions.
Figure 3Integrated diuron peaks obtained after HPLC-MS/MS analysis (optical detection). 1 × 10−4 mol dm−3 solution was irradiated under different conditions indicated in the Figure.
Figure 4Chromatogram of 1 × 10−4 mol dm−3 diuron solutions. Irradiation with 0.5 kGy dose in N2O or air atmosphere. The peak of each selected ion is depicted with different colour and its m/z value is indicated.
Figure 5Chloride release (Cl−) and the adsorbable organic chloride (AOX). Chloride release was measured in different solutions (indicated in the Figure) AOX was measured in air and O2 saturated (Na-formate added) solution (diuron 1.1 × 10−4 mol dm−3).
Figure 6TOC, COD and TN results and removal of diuron. All of the experiments were carried out in 1.2 × 10−4 mol dm−3 diuron solutions before irradiation and after irradiating with various doses.
Scheme 1•OH attack to diuron at the meta-position.
Scheme 2Reactions of eaq − with diuron.
Scheme 3Reactions of •OH with diuron in the presence and in the absence of O2.