Please use this identifier to cite or link to this item: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/2756
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dc.contributor.authorFADIPE, Labake Ajoke-
dc.contributor.authorTijani, J.O.-
dc.contributor.authorUgochukwu, O.-
dc.contributor.authorBankole, M. T.-
dc.contributor.authorAbdulkareem, A. S.-
dc.contributor.authorRoos, W. D.-
dc.date.accessioned2021-06-11T16:01:19Z-
dc.date.available2021-06-11T16:01:19Z-
dc.date.issued2019-02-06-
dc.identifier.citationTijani, J.O., Ugochukwu, O., FADIPE, L. A., Bankole, M. T., Abdulkareem, A. S. & Roos, W. D. (2019). Photocatalytic degredation of local dyeing wastewater by iodine-phosphorous co-doped tungsten trioxide nanocomposites under natural sunlight irradiation. Journal of Environmental Management, 236, 519-533, https://www.sciencedirect.com/journal/journal-of-environmental management/vol./236/suppl./Cen_US
dc.identifier.issn0301-4797-
dc.identifier.urihttp://repository.futminna.edu.ng:8080/jspui/handle/123456789/2756-
dc.description.abstractIn the present work, one-step green synthesis of WO3based on the interaction of ammonium paratungstate andSpondias mombin leavesextract is reported. Different concentrations of iodine and phosphorus in the range of(2%, 5% and 10%) were firstly incorporated into the prepared WO3nanoparticles to obtain Iodine doped andPhosphorus doped WO3nanoparticles respectively. Subsequently, iodine and phosphorus co-doped WO3na-nocomposites was prepared using a wet impregnation method followed by calcination at high temperature. Thenanomaterials were characterized by HRSEM, HRTEM, BET, UV–Visible, EDS, XRD and XPS. The photo-oxi-dation of dyeing wastewater by the synthesized WO3nanomaterials were tested and assessed using Total organiccarbon (TOC) and Chemical oxygen demand (COD) as indicator parameters. XRD and HRSEM analysis de-monstrated the formation of only monoclinic phase of WO3irrespective of the dopants. The UV–Visible diffusereflectance spectroscopy showed the band gap energy of 2.61 eV for undoped WO3and 2.02 eV for I-P co-dopedWO3nanocomposites. 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 WO3by I−andP3+and formed I-P-WO(3-x). The I-P co-doped WO3exhibited 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. Theexperimental data better fitted to pseudo-second order than first order and pseudo-first order model. This studydemonstrated the enhanced photocatalytic performance of I-P co-doped WO3nanocomposites under sunlight.en_US
dc.language.isoenen_US
dc.publisherJournal of Environmental Management, 236, 519-533en_US
dc.relation.ispartofseries236;-
dc.subjectGreen synthesisTungsten trioxideSpondias mombinCo-dopingIodinePhosphorus monoclinic phasePhotocatalysisen_US
dc.titleOne-step synthesis of WO3 nanoparticles using Spondias mombin aqueous extract: effect of solution pH and calcination temperature.en_US
dc.typeArticleen_US
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