Open Journal of Applied Sciences

Open Journal of Applied Sciences

ISSN Print: 2165-3917
ISSN Online: 2165-3925
www.scirp.org/journal/ojapps
E-mail: ojapps@scirp.org
"Selected Adsorbents for Removal of Contaminants from Wastewater: Towards Engineering Clay Minerals"
written by Kalebaila K. Kennedy, Kenneth J. Maseka, Misheck Mbulo,
published by Open Journal of Applied Sciences, Vol.8 No.8, 2018
has been cited by the following article(s):
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[3] A concise review on nano adsorbents for abatement of heavy metal wastewater contaminants: Mechanistic, classification and application view
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[5] Removal of Copper from Aqueous Solution Using Raw Cowpea Husk, And Cowpea Husk Coated With Zinc Oxide Nanoparticle Adsorbent
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[6] Synthesis and Characterization of 2D Magnesium Oxide Nanoflakes: A Potential Nanomaterial for Effective Phosphate Removal from Wastewater
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[7] Carbonized Sorbents of Shungite and Rice Husk for Purification of Petroleum Contaminated Soils
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[8] Produção de CaAl/HDL a partir de resíduo calcinado de concha de Mytella falcata para remoção dos corantes azul de metileno e alaranjado de metila
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[10] A review on recent advances in the treatment of dye-polluted wastewater
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[11] Adsorption of persistent organic pollutants (POPs) from the aqueous environment by nano-adsorbents: A review
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[12] Selective removal of cationic organic pollutants using disulfide-linked polymer
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[13] Potential Application of Plant-Based Derivatives as Green Components in Functional Coatings: A review
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[14] Review of clay-based nanocomposites as adsorbents for the removal of heavy metals
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[15] Adsorptive Membrane for Boron Removal: Challenges and Future Prospects
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[16] Synthesis and Characterization of Mesoporous Aluminum Silicate and Its Adsorption for Pb (II) Ions and Methylene Blue in Aqueous Solution
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[17] Valorization of coconut waste for facile treatment of contaminated water: a comprehensive review (2010–2021)
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[18] Water purification via novel nano-adsorbents and their regeneration strategies
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[19] Fundamentals of adsorption technology
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[20] Estudio físico-químico de eliminación de cationes Zn (II) en disolución acuosa mediante el empleo de macroalgas marinas
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[21] Desing of selective adsorption materials for the remova lof hazardous organic compounds
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[22] Improving Quality of Water from Murchison Bay using Clay from Chelel, Kapchorwa District, Ugandao
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[23] Improved Removal of Quinoline from Wastewater Using Coke Powder with Inorganic Ions
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[24] The A Comparative Study of the Adsorption of Crystal Violet Dye from Aqueous Solution on Rice Husk and Charcoal
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[25] Nanoadsorbents and nanoporous materials for the food industry
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[26] ADSORPSI NITRIT MENGGUNAKAN ABU DASAR (BOTTOM ASH) BATUBARA TERAKTIVASI NaOH dan HCl
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[27] Cassava starch: structural modification for development of a bio-adsorber for aqueous pollutants. Characterization and adsorption studies on methylene blue
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[28] Department of Food Materials and Process Design Engineering, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan, Iran
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[29] Opportunities and challenges to valorize tropical fruit by-products as bioactive compounds: a case study on rambutan (Nephelium lappaceum L.) peel
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[30] A Comparative Study of the Adsorption of Crystal Violet Dye from Aqueous Solution on Rice Husk and Charcoal
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[31] Preučevanje adsorpcijskih lastnosti šungita
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[32] Synthesis of pineapple peel based activated carbon via microwave irradiation for methylene blue (MB) dye removal
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[33] Ανάπτυξη προσροφητικών υλικών από τη βιομάζα αγροτικών αποβλήτων για τον καθαρισμό νερού
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[34] Clay nano-adsorbent: structures, applications and mechanism for water treatment
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[35] REMOVAL OF TOXIC SUBSTANCES FROM WATER/WASTE WATER TREATMENT PLANT USING SUITABLE ADSORBENT
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[37] Cleaner Materials
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