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3070751 
Journal Article 
Comparative study of diethyl phthalate degradation by UV/H2O2 and UV/TiO2: Kinetics, mechanism, and effects of operational parameters 
Song, C; Wang, L; Ren, J; Lv, B; Sun, Z; Yan, J; Li, X; Liu, J 
2016 
Yes 
Environmental Science and Pollution Research
ISSN: 0944-1344
EISSN: 1614-7499 
Springer Verlag 
23 
2640-2650 
English 
The photodegradation of diethyl phthalate (DEP) by UV/H2O2 and UV/TiO2 is studied. The DEP degradation kinetics and multiple crucial factors effecting the clearance of DEP are investigated, including initial DEP concentration ([DEP]0), initial pH values (pH0), UV light intensity, anions (Cl(-), NO(3-), SO4 (2-), HCO3 (-), and CO3 (2-)), cations (Mg(2+), Ca(2+), Mn(2+), and Fe(3+)), and humic acid (HA). Total organic carbon (TOC) removal is tested by two treatments. And, cytotoxicity evolution of DEP degradation intermediates is detected. The relationship between molar ratio ([H2O2]/[DEP] or [TiO2]/[DEP]) and degradation kinetic constant (K) is also studied. And, the cytotoxicity tests of DEP and its degradation intermediates in UV/H2O2 and UV/TiO2 treatments are researched. The DEP removal efficiency of UV/H2O2 treatment is higher than UV/TiO2 treatment. The DEP degradation fitted a pseudo-first-order kinetic pattern under experimental conditions. The K linearly related with molar ratio in UV/H2O2 treatment while nature exponential relationship is observed in the case of UV/TiO2. However, K fitted corresponding trends better in H2O2 treatment than in TiO2 treatment. The Cl(-) is in favor of the DEP degradation in UV/H2O2 treatment; in contrast, it is disadvantageous to the DEP degradation in UV/TiO2 treatment. Other anions are all disadvantageous to the DEP degradation in two treatments. Fe(3+) promotes the degradation rates significantly. And, all other cations in question inhibit the degradation of DEP. HA hinders DEP degradation in two treatments. The intermediates of DEP degradation in UV/TiO2 treatment are less toxic to biological cell than that in UV/H2O2 treatment. 
Diethyl phthalate; Advanced oxidation processes; Hydrogen peroxide; Titanium dioxide; Kinetics; Molar ratio 
IRIS
• Dibutyl Phthalate (DBP)
     Database Searches
          Litsearch Jan 2016 - July 2016
               Pubmed
     Excluded: No Primary Data on Health Effects
          Not chemical specific
          Use in sample prep or assay
     Litsearch June 2015 - Jan 2016
          Pubmed
• Diethyl phthalate (DEP)
     Database searches
          Jan 2016 update
               Pubmed
          Jun 2016 update
               Pubmed
               Web of Science
          Jan 2017 update
               Prior search overlap
               Web of Science
          Jan 2020 update
               PubMed
               Web of Science
     Excluded: No Primary Data on Health Effects
          Use in sample prep or assay