World Journal of Nano Science and Engineering

World Journal of Nano Science and Engineering

ISSN Print: 2161-4954
ISSN Online: 2161-4962
www.scirp.org/journal/wjnse
E-mail: wjnse@scirp.org
"Effective Photocatalytic Reduction of Cr(VI) by Carbon Modified (CM)-n-TiO2 Nanoparticles under Solar Irradiation"
written by Yasser A. Shaban,
published by World Journal of Nano Science and Engineering, Vol.3 No.4, 2013
has been cited by the following article(s):
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[8] SOLAR ENERGY DRIVEN-PHOTOCATALYSIS: KINETICS AND SORPTION STUDIES OF Cr (VI) REDUCTION IN PAINT EFFLUENT
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[10] Photocatalysis for the Removal of Environmental Contaminants
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[11] Hexavalent Chromium Removal via Photoreduction by Sunlight on Titanium–Dioxide Nanotubes Formed by Anodization with a Fluorinated Glycerol–Water Electrolyte
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[12] Facile green synthesis of zero-valent iron nanoparticles using Barberry leaf extract (GnZVI@ BLE) for photocatalytic reduction of hexavalent chromium
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[13] Hypergolic Synthesis of Inorganic Materials by the Reaction of Metallocene Dichlorides With Fuming Nitric Acid At Ambient Conditions: The Case of Photocatalytic …
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[14] Investigations on dye adsorption and photocatalytic Cr-(VI) reduction by SnS 2 nanosheets prepared via hydrothermal method
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[15] Facile photocatalytic reduction of carcinogenic Cr (vi) on Fe-doped copper sulfide nanostructures
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[16] Recent advances in removal techniques of Cr (VI) toxic ion from aqueous solution: a comprehensive review
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[17] Photocatalytic removal of cyanide and Cr(IV) from wastewater in the presence of each other by using TiO2/UV
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[18] Photocatalytic removal of cyanide and Cr (IV) from wastewater in the presence of each other by using TiO2/UV
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[19] Application of thermal lens microscopy (TLM) for measurement of Cr (VI) traces in wastewater
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[20] High rates of Cr (VI) photoreduction with magnetically recoverable nano-Fe 3 O 4@ Fe 2 O 3/Al 2 O 3 catalyst under visible light
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[21] Photo catalytic degradation of Alizarin red S using ZnS and cadmium doped ZnS nanoparticles under unfiltered sunlight
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[22] Facile Synthesis of Indium Oxysulfide Photocatalyst for Hexavalent Chromium Detoxification and Hydrogen Evolution
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[23] Performance of NiFe2O4-SiO2-TiO2 magnetic photocatalyst for the effective photocatalytic reduction of Cr (VI) in aqueous solutions.
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[24] Performance of NiFe2O4-SiO2-TiO2 Magnetic Photocatalyst for the Effective Photocatalytic Reduction of Cr (VI) in Aqueous Solutions
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[25] High rates of Cr (VI) photoreduction with magnetically recoverable nano-Fe3O4@ Fe2O3/Al2O3 catalyst under visible light
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[26] Ionic liquid assisted hydrothermal syntheses of Au doped TiO 2 NPs for efficient visible-light photocatalytic hydrogen production from water, electrochemical …
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[27] Reducción fotocatalítica de Cr6+ en presencia de luz visible y CdS sintetizado por un método novedoso
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[31] Ανάπτηξη υβριδικών μικρο-και νανοπορωδών υλικών για τεχνολογικές και περιβαλλοντικές εφαρμογές
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[32] بررسي احياي فتوكاتاليستي كروم شش ظرفيتي توسط نانوذرات سبز آهن در محلول هاي آبي: يك مطالعه آزمايشگاهي‎
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[33] Physico-chemical characterization of activated carbon–metal oxide photocatalysts by immersion calorimetry in benzene and water
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[34] Visible light photocatalytic reduction of Cr (VI) by surface modified CNT/titanium dioxide composites nanofibers
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[35] Kombinasi Teknologi Elektrokoagulasi dan Fotokatalisis dalam Mereduksi Limbah Berbahaya dan Beracun Cr (VI)
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[36] Chromium (VI) removal using nano-TiO2/chitosan film in photocatalytic system
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[37] Chromium (VI) removal using nano-TiOzlchitosan film in photocatalytic system
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[38] Simultaneous Photocatalytic Reduction of Cr (VI) and Oxidation of Citric Acid in Aqueous Solutions
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