Research articlePhotocatalytic degradation of local dyeing wastewater by iodine-phosphorus co-doped tungsten trioxide nanocomposites under natural sunlight irradiation
-
Add time:08/15/2019 Source:sciencedirect.com
In the present work, one-step green synthesis of WO3 based on the interaction of ammonium paratungstate and Spondias mombin leaves extract is reported. Different concentrations of iodine and phosphorus in the range of (2%, 5% and 10%) were firstly incorporated into the prepared WO3 nanoparticles to obtain Iodine doped and Phosphorus doped WO3 nanoparticles respectively. Subsequently, iodine and phosphorus co-doped WO3 nanocomposites was prepared using a wet impregnation method followed by calcination at high temperature. The nanomaterials were characterized by HRSEM, HRTEM, BET, UV–Visible, EDS, XRD and XPS. The photo-oxidation of dyeing wastewater by the synthesized WO3 nanomaterials were tested and assessed using Total organic carbon (TOC) and Chemical oxygen demand (COD) as indicator parameters. XRD and HRSEM analysis demonstrated the formation of only monoclinic phase of WO3 irrespective of the dopants. The UV–Visible diffuse reflectance spectroscopy showed the band gap energy of 2.61 eV for undoped WO3 and 2.02 eV for I-P co-doped WO3 nanocomposites. The surface area of I-P co-doped WO3 (416.18 m2/g) was higher than the undoped WO3 (352.49 m2/g). The XPS demonstrated interstitial and substitution of oxygen (O2−) vacancies in WO3 by I− and P3+ and formed I-P-WO(3-x). The I-P co-doped WO3 exhibited higher catalytic activities (93.4% TOC, 95.1% COD) than the undoped (54.9% TOC, 79.2% COD) due to the synergistic effects between the two dopants. The experimental data better fitted to pseudo-second order than first order and pseudo-first order model. This study demonstrated the enhanced photocatalytic performance of I-P co-doped WO3 nanocomposites under sunlight.
We also recommend Trading Suppliers and Manufacturers of Phosphorus trioxide (cas 1314-24-5). Pls Click Website Link as below: cas 1314-24-5 suppliers
Prev:Structural studies of degradation process of Zirconium dioxide (cas 1314-23-4) tetragonal phase induced by grinding with dental bur
Next:Full Length ArticleIn situ polymerization synthesis of Z-scheme tungsten trioxide/polyimide photocatalyst with enhanced visible-light photocatalytic activity) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Solution-processed phosphorus-tungsten oxide film as hole injection layer for application in efficient organic light-emitting diode08/24/2019
- The constitution of mineral trioxide aggregate08/23/2019
- Basic ResearchMercury Intrusion Porosimetry and Assessment of Cement-dentin Interface of Anti–washout-type Mineral Trioxide Aggregate08/22/2019
- A study on the reaction of silicon tetrahalides with phosphorus pentoxide and of alkali metal fluorosilicates with phosphorus pentoxide and sulphur trioxide08/21/2019
- Mineral trioxide aggregate in management of immature teeth with open apices – A report of clinical cases08/20/2019
- Lithography-free fabrication of field effect transistor channels with randomly contact-printed black phosphorus flakes08/19/2019
- Basic ResearchChemical-physical Properties and Apatite-forming Ability of Mineral Trioxide Aggregate Flow08/18/2019
- Original Full Length ArticleArsenic trioxide affects bone remodeling by effects on osteoblast differentiation and function08/17/2019
- Full Length ArticleIn situ polymerization synthesis of Z-scheme tungsten trioxide/polyimide photocatalyst with enhanced visible-light photocatalytic activity08/16/2019
-
Health and Chemical more >


