Literature DB >> 31059936

Degradation of iodinated disinfection byproducts by VUV/UV process based on a mini-fluidic VUV/UV photoreaction system.

Jun Hu1, Chen Wang2, Zhen Ye2, Huiyu Dong3, Mengkai Li3, Jianmeng Chen2, Zhimin Qiang4.   

Abstract

This study investigated the VUV/UV photodegradation of three iodinated disinfection byproducts (I-DBPs), namely, triiodomethane (TIM), diiodoacetamide (DIAcAm) and triiodoacetic acid (TIAA), based on a mini-fluidic VUV/UV photoreaction system (MVPS). The pseudo-first-order rate constants (k) of TIM, DIAcAm and TIAA under VUV/UV irradiation (1769, 1301 and 1174 m2 einstein-1, respectively) were higher than those under UV irradiation (1003, 832 and 766 m2 einstein-1, respectively). The enhancement of photodegradation could be attributed to the indirect HO• oxidation rather than the direct VUV photolysis. As a whole, compared with the indirect HO• oxidation, the direct UV photolysis had a relatively greater contribution to the degradation of the three I-DBPs, especially DIAcAm and TIAA (ca. 57% and 60%, respectively). The two electron-withdrawing groups in DIAcAm and TIAA (i.e., acylamino and carboxyl) decreased the electron density of the C-I bonds, thus weakening the electrophilic attack of HO•. The iodine in the three I-DBPs was released to form I- and a small fraction (< 6%) of I- was oxidized to IO3-, indicating that HO• preferred to break the C-I bonds rather than oxidize I-. The direct UV photolysis proceeded via H2O-catalyzed deiodination reactions, while the indirect HO• oxidation proceeded via deiodination reactions along with HO• addition. The VUV/UV photodegradation of the three I-DBPs was more favored at an acidic pH but inhibited by the water matrix components (i.e., NOM, Cl- and alkalinity) to different extents.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Drinking water; Iodinated disinfection byproducts (I-DBPs); Mini-fluidic VUV/UV photoreaction system (MVPS); Vacuum ultraviolet (VUV)

Mesh:

Substances:

Year:  2019        PMID: 31059936     DOI: 10.1016/j.watres.2019.03.056

Source DB:  PubMed          Journal:  Water Res        ISSN: 0043-1354            Impact factor:   11.236


  2 in total

1.  Reactivity and kinetics of 1,3-butadiene under ultraviolet irradiation at 254 nm.

Authors:  Min Liang; Chang Yu; Suyi Dai; Haijun Cheng; Weiguang Li; Fang Lai; Li Ma; Xiongmin Liu
Journal:  BMC Chem       Date:  2022-02-18

2.  Enhancement of Curcuma xanthorrhiza Roxb Phytochemical Dissolution via Micronization Using a Supercritical Antisolvent Technique.

Authors:  Siti Machmudah; Rizky Prasetya Mahardika; Syahna Almadilla; Sugeng Winardi; Hideki Kanda; Motonobu Goto
Journal:  ACS Omega       Date:  2022-02-08
  2 in total

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