Green magnetite nanostructure for removing organic pollutants from water
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[1] O. Montedo,et al. Photocatalytic pathway on the degradation of methylene blue from aqueous solutions using magnetite nanoparticles , 2021 .
[2] S. Sain,et al. Visible light photocatalysts from low-grade iron ore: the environmentally benign production of magnetite/carbon (Fe3O4/C) nanocomposites , 2021, Environmental Science and Pollution Research.
[3] Md. Rezaul Haque,et al. Green synthesis of magnetite nanoparticles using Lathyrus sativus peel extract and evaluation of their catalytic activity , 2021, Cleaner Engineering and Technology.
[4] Hongtao Han,et al. Recent Advances of Photocatalytic Application in Water Treatment: A Review , 2021, Nanomaterials.
[5] E. Chatzisymeon. Application of Biological and Chemical Processes to Wastewater Treatment , 2021, Water.
[6] R. Cusick,et al. Electrochemical Disinfection in Water and Wastewater Treatment: Identifying Impacts of Water Quality and Operating Conditions on Performance , 2021, Environmental science & technology.
[7] I. Shakir,et al. Nanostructured maghemite and magnetite and their nanocomposites with graphene oxide for photocatalytic degradation of methylene blue , 2020 .
[8] H. Mohamed,et al. Environment-Friendly Nanoporous Titanium Dioxide with Enhanced Photocatalytic Activity , 2019, Catalysts.
[9] A. Popa,et al. Starch-coated green synthesized magnetite nanoparticles for removal of textile dye Optilan Blue from aqueous media , 2019, Journal of the Taiwan Institute of Chemical Engineers.
[10] H. Mohamed,et al. Eco-friendly synthesized α-Fe2O3/TiO2 heterojunction with enhanced visible light photocatalytic activity , 2019, Journal of Photochemistry and Photobiology A: Chemistry.
[11] D. Bahnemann,et al. ZnO@ porous graphite nanocomposite from waste for superior photocatalytic activity , 2019, Environmental Science and Pollution Research.
[12] H. Mohamed. Sonochemical synthesis of ZnO hollow microstructure/reduced graphene oxide for enhanced sunlight photocatalytic degradation of organic pollutants , 2018 .
[13] P. S. Kumar,et al. Efficient techniques for the removal of toxic heavy metals from aquatic environment: A review , 2017 .
[14] S. Sharma,et al. Drinking water contamination and treatment techniques , 2017, Applied Water Science.
[15] K. Shameli,et al. Green Synthesis of Magnetite (Fe3O4) Nanoparticles Using Seaweed (Kappaphycus alvarezii) Extract , 2016, Nanoscale Research Letters.
[16] R. Domingues,et al. Novel protocol for the solid-state synthesis of magnetite for medical practices , 2015 .
[17] Y. R. Lee,et al. Sonochemically synthesized ferromagnetic Fe3O4 nanoparticles as a recyclable catalyst for the preparation of pyrrolo[3,4-c]quinoline-1,3-dione derivatives , 2014 .
[18] Y. R. Lee,et al. Green fabrication of ferromagnetic Fe3O4 nanoparticles and their novel catalytic applications for the synthesis of biologically interesting benzoxazinone and benzthioxazinone derivatives , 2014 .
[19] N. Salem,et al. A Green and Facile Approach for Synthesis of Magnetite Nanoparticles , 2013 .
[20] L. Mir,et al. Sol–gel synthesis of 8 nm magnetite (Fe3O4) nanoparticles and their magnetic properties , 2012 .
[21] I. Kennedy,et al. GAS-PHASE FLAME SYNTHESIS AND PROPERTIES OF MAGNETIC IRON OXIDE NANOPARTICLES WITH REDUCED OXIDATION STATE. , 2010, Journal of aerosol science.
[22] Mingyuan Gao,et al. Preparation of Biocompatible Magnetite Nanocrystals for In Vivo Magnetic Resonance Detection of Cancer , 2006 .
[23] H. Mohamed,et al. Design of porous Ga doped TiO2 nanostructure for enhanced solar light photocatalytic applications , 2021 .
[24] H. Mohamed,et al. TiO2/carbon dots decorated reduced graphene oxide composites from waste car bumper and TiO2 nanoparticles for photocatalytic applications , 2020 .