Investigation on performance of Eu:GO:KSrPO4 nanocomposite for MB dye photocatalytic degradation: Experimental and ANN modeling

被引:8
作者
Athavale S. [1 ]
Barai D.P. [1 ]
Bhanvase B.A. [1 ]
Pandharipande S.L. [1 ]
机构
[1] Department of Chemical Engineering, Laxminarayan Institute of Technology, Rashtrasant Tukadoji Maharaj Nagpur University, MS, Nagpur
来源
Optik | 2023年 / 275卷
关键词
ANN; Eu:GO/KSrPO[!sub]4[!/sub; MB dye; Phosphor; Sonochemical synthesis;
D O I
10.1016/j.ijleo.2023.170561
中图分类号
学科分类号
摘要
Ultrasonic-assisted synthesis of Eu-doped GO/KSrPO4 (Eu:GO/KSrPO4) nanocomposite has been accomplished in this work for its application for photocatalytic degradation of dye. Formation of the Eu:GO/KSrPO4 nanocomposite photocatalyst was confirmed through various characterization (SEM, UV/vis, and XRD) techniques. Additionally, experiments on photocatalytic degradation of methylene blue (MB) dye from wastewater allowed determination of photocatalytic activity of the produced nanocomposite material. Influence of different factors including Eu3+ ion concentration in KSrPO4:Eu3+ phosphor in the nanocomposite and other process parameters like catalyst dosage, amount of dye present in feed, pH, and synthesis technique was also assessed. A maximum percent removal of 82.75% of the dye was achieved for ultrasonically prepared Eu:GO/KSrPO4 photocatalyst with 0.5 mol.% Eu3+ ion doping at catalyst dose of 1 mg/ml, amount of dye present in feed of 20 ppm, and pH 10.56. ANN modeling was accomplished to predict the % methylene blue dye removal using prepared photocatalyst. © 2023 Elsevier GmbH
引用
收藏
相关论文
共 80 条
  • [1] Bethi B., Sonawane S.H., Potoroko I., Bhanvase B.A., Sonawane S.S., Novel hybrid system based on hydrodynamic cavitation for treatment of dye waste water: a first report on bench scale study, J. Environ. Chem. Eng., 5, pp. 1874-1884, (2017)
  • [2] Bhanvase B.A., Veer A., Shirsath S.R., Sonawane S.H., Ultrasound assisted preparation, characterization and adsorption study of ternary chitosan-ZnO-TiO2 nanocomposite: advantage over conventional method, Ultrason. Sonochem., 52, pp. 120-130, (2019)
  • [3] Bethi B., Sonawane S., Bhanvase B., Mittal V., Ashokkumar M., Sonochemical Synthesis of Go- Zno Nanophotocatalyst for the Degradation of Malachite Green Using a Hybrid Advanced Oxidation Process, pp. 159-184, (2019)
  • [4] Hagab R.H., Kotp Y.H., Eissa D., Using nanotechnology for enhancing phosphorus fertilizer use efficiency of peanut bean grown in sandy soils, J. Adv. Pharm. Educ. Res, 8, pp. 59-67, (2018)
  • [5] Eissa D., Hegab R.H., Abou-Shady A., Kotp Y.H., Green synthesis of ZnO, MgO and SiO2 nanoparticles and its effect on irrigation water, soil properties, and Origanum majorana productivity, Sci. Rep., 12, (2022)
  • [6] Kotp Y.H., Fabrication of cerium titanate cellulose fiber nanocomposite materials for the removal of methyl orange and methylene blue from polluted water by photocatalytic degradation, Environ. Sci. Pollut. Res., 29, pp. 81583-81608, (2022)
  • [7] Meshram S.P., Jolhe P.D., Shingte S.D., Bhanvase B.A., Sonawane S.H., Sonochemical Synthesis of Mg-Doped Zno NPS For Efficient Sunlight Driven Photocatalysis, Nov. Water Treat. Sep. Methods, pp. 47-60, (2017)
  • [8] Bhanvase B.A., Deosarkar M.P., Sonochemical Preparation of Graphene Nanocomposites: Process Intensification, Chem. Funct. Carbon Nanomater., pp. 454-473, (2015)
  • [9] Bhanvase B.A., Pawade V.B., Dhoble S.J., Sonawane S.H., Ashokkumar M., Nanomaterials for green energy, (2018)
  • [10] Shende T.P., Bhanvase B.A., Rathod A.P., Pinjari D.V., Sonawane S.H., Sonochemical synthesis of Graphene-Ce-TiO2 and Graphene-Fe-TiO2 ternary hybrid photocatalyst nanocomposite and its application in degradation of crystal violet dye, Ultrason. Sonochem., 41, pp. 582-589, (2018)