| Literature DB >> 27318735 |
Wen Liu1, Weiling Sun2, Alistair G L Borthwick3, Ting Wang2, Fan Li4, Yidong Guan5.
Abstract
Clean-up of wastewaters with coexisting heavy metals and organic contaminants is a huge issue worldwide. In this study, a novel anatase/titanate nanosheet composite material (labeled as TNS) synthesized through a one-step hydrothermal reaction was demonstrated to achieve the goal of simultaneous removal of Cr(VI) and 4-cholophenol (4-CP) from water. TEM and XRD analyses indicated the TNS was a nano-composite of anatase and titanate, with anatase acting as the primary photocatalysis center and titanate as the main adsorption site. Enhanced photocatalytic removal of co-existent Cr(VI) and 4-CP was observed in binary systems, with apparent rate constants (k1) for photocatalytic reactions of Cr(VI) and 4-CP about 3.1 and 2.6 times of that for single systems. In addition, over 99% of Cr(VI) and 4-CP was removed within 120min through photocatalysis by TNS at pH 7 in the binary system. Mechanisms for enhanced photocatalytic efficiency in the binary system are identified as: (1) a synergetic effect on the photo-reduction of Cr(VI) and photo-oxidation of 4-CP due to efficient separation of electron-hole pairs, and (2) autosynchronous doping because of reduced Cr(III) adsorption onto TNS. Furthermore, TNS could be efficiently reused after a simple acid-base treatment.Entities:
Keywords: Autosynchronous doping; Combined pollution; Photocatalysis; Synergetic promotion; Titanate nanosheet
Year: 2016 PMID: 27318735 DOI: 10.1016/j.jhazmat.2016.06.002
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588