Literature DB >> 21062045

Photocatalytic oxidation mechanism of As(III) on TiO2: unique role of As(III) as a charge recombinant species.

Wonyong Choi1, Jiman Yeo, Jungho Ryu, Takashi Tachikawa, Tetsuro Majima.   

Abstract

Using TiO(2) photocatalyst, arsenite, As(III), can be rapidly oxidized to arsenate, As(V), which is less toxic and less mobile in the aquatic environment. Therefore, the TiO(2)/UV process can be employed as an efficient pretreatment method for arsenic contaminated water. Since we first reported in 2002 that the superoxide (or hydroperoxyl radical) plays the role of main oxidant of As(III) in the TiO(2)/UV process, there has been much debate over the true identity of the major photooxidant among superoxides, holes, and OH radicals. The key issue is centered on why the much stronger OH radicals cannot oxidize As(III), and it has been proposed that the unique role of As(III) as an external charge recombination center on the UV-excited TiO(2) particle is responsible for this eccentric mechanism. Although the proposed mechanism has been supported by many experimental evidences, doubts on it were not clearly removed. In this study, we provided direct and undisputed evidence to support the role of As(III) in the charge recombination dynamics using time-resolved transient absorption spectroscopy. The presence of As(III) indeed mediated the charge recombination in TiO(2). Under this condition, the role of the OH radical is suppressed because of the null cycle, and the weaker oxidant, superoxide, should prevail. The role of the superoxide has been previously doubted on the basis of the observation that the addition of excess formic acid (hole scavenger that should enhance the production of superoxides) inhibited the photocatalytic oxidation of As(III). However, this study proved that this was due to the photogeneration of reducing radicals (HCO(2)·) that recycle As(V)/As(IV) back to As(III). It was also demonstrated that the 4-chlorophenol/TiO(2) system under visible light that cannot generate neither OH radicals nor valence band holes converted As(III) to As(V) through the superoxide pathway.

Entities:  

Mesh:

Substances:

Year:  2010        PMID: 21062045     DOI: 10.1021/es102507u

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  3 in total

1.  Co3O4@CdS Hollow Spheres Derived from ZIF-67 with a High Phenol and Dye Photodegradation Activity.

Authors:  Haowei Yang; Jinlong Fan; Chengxin Zhou; Rui Luo; Hongwei Liu; Yingfei Wan; Jin Zhang; Jinwei Chen; Gang Wang; Ruilin Wang; Chunping Jiang
Journal:  ACS Omega       Date:  2020-07-07

2.  Arsenic(iii) removal from aqueous solution using TiO2-loaded biochar prepared by waste Chinese traditional medicine dregs.

Authors:  Yan Yang; Ruixue Zhang; Shiwan Chen; Jian Zhu; Pan Wu; Jiayan Huang; Shihua Qi
Journal:  RSC Adv       Date:  2022-03-09       Impact factor: 3.361

3.  Assessment of the Arsenic Removal From Water Using Lanthanum Ferrite.

Authors:  Fabiana E García; Marta I Litter; Isabella Natali Sora
Journal:  ChemistryOpen       Date:  2021-08       Impact factor: 2.630

  3 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.