Journal Article10.1016/J.MOLLIQ.2019.110908
Selective adsorption of methylene blue (MB) dye from aqueous mixture of MB and methyl orange (MO) using mesoporous titania (TiO2) – poly vinyl alcohol (PVA) nanocomposite
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TL;DR: In this article, a very simple, rapid and practical method was proposed for the synthesis of an inorganic -organic hybrid nanocomposite containing TiO2 and PVA, which possess remarkable selectivity for the adsorption of methylene blue (MB), from the mixture of MBL and methyl orange (MO) in aqueous environment.
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About: This article is published in Journal of Molecular Liquids. The article was published on 15 Jul 2019. The article focuses on the topics: Freundlich equation & Adsorption.
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A state-of-the-art review on wastewater treatment techniques: the effectiveness of adsorption method.
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Recent Developments in Polymer Nanocomposite-Based Electrochemical Sensors for Detecting Environmental Pollutants
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Graphene oxide-montmorillonite/sodium alginate aerogel beads for selective adsorption of methylene blue in wastewater
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TL;DR: In this paper, a porous three-dimensional (3D) graphene oxide-montmorillonite/sodium alginate (GO-MMT/SA) beads have been prepared by a simple method of cross-linking and freeze-drying, which is used to selectively adsorb methylene blue (MB) in aqueous solution.
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A Review on Selective Dye Adsorption by Different Mechanisms
TL;DR: A comprehensive review of selective dye adsorption can be found in this article , where the authors summarized the recent works in this field and proposed recommendations for future works, including more attention to effects of operational and environmental factors, more theoretical calculations as well as the development of low-cost adsorbents and new separation mechanisms.
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Removal of methylene blue from colored effluents by adsorption on montmorillonite clay
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TL;DR: The results indicate that montmorillonite clay adsorbs MB efficiently and could be employed as a low-cost alternative in wastewater treatment for the removal of cationic dyes.
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Low-Cost Synthesis of Flowerlike α-Fe2O3 Nanostructures for Heavy Metal Ion Removal: Adsorption Property and Mechanism
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