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Removal of Congo red dye from aqueous medium by its catalytic reduction using sodium borohydride in the presence of various inorganic nano-catalysts: A review

Congo red is highly toxic and carcinogenic anionic dye. Its removal from aqueous medium by chemical reduction method using sodium borohydride as reducing agent in the presence of various nano-catalytic systems has been widely reported in literature during last ten years. This review article focuses...

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Bibliographic Details
Published in:Journal of cleaner production 2018-06, Vol.187, p.296-307
Main Authors: Naseem, Khalida, Farooqi, Zahoor H., Begum, Robina, Irfan, Ahmad
Format: Article
Language:English
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Summary:Congo red is highly toxic and carcinogenic anionic dye. Its removal from aqueous medium by chemical reduction method using sodium borohydride as reducing agent in the presence of various nano-catalytic systems has been widely reported in literature during last ten years. This review article focuses on recent research of designing of various metal nanoparticles catalysts reported for catalytic reduction of Congo red by sodium borohydride (NaBH4). Different nano-catalytic systems used for reduction of Congo red and their division on the basis of nature of metal nanoparticles and composition of supporting materials has been described critically. Advantages and disadvantages of different nano-catalysts used for reduction of Congo red and their capability to reduce Congo red present in industrial wastewater has been elaborated. An overview of different analytical techniques used for characterization of nano-catalytic systems reported for reduction of Congo red dye has been provided. Mechanism of chemical reduction of Congo red in the presence of nano-catalysts has been described critically with the help of recent literature. [Display omitted] •Congo red is released into environment from different industries.•Congo red is highly toxic dye that induces various diseases in humans.•Metal nanoparticles catalysts show high efficiency for reduction of Congo red.•Various supporting materials maintain catalytic efficiency of metal nanoparticles.•Stabilization of metal nanoparticles catalysts is cost effective and green approach.
ISSN:0959-6526
1879-1786
DOI:10.1016/j.jclepro.2018.03.209