Journal of Water Resource and Protection

Journal of Water Resource and Protection

ISSN Print: 1945-3094
ISSN Online: 1945-3108
www.scirp.org/Journal/jwarp
E-mail: jwarp@scirp.org
"The Use of New Chemically Modified Cellulose for Heavy Metal Ion Adsorption and Antimicrobial Activities"
written by R. Saravanan, L. Ravikumar,
published by Journal of Water Resource and Protection, Vol.7 No.6, 2015
has been cited by the following article(s):
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[1] Optimization of toxic metal adsorption on DEA-calix [4] arene appended silica resin using a central composite design
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[2] Removal of Heavy Metal Ions Using Cellulose Nanocrystals and Succinic Anhydride-modified Cellulose Nanocrystals Prepared from Bleached Soda Bagasse Pulp.
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[3] Chromium Adsorption from Aqueous Solution onto Dowex Retardion 11A8 and Amberlite IRA 743 Free Base: An Insight into the Mechanism
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[4] Waste Orange Peel Adsorbent for Heavy Metal Removal from Water
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[5] Nanocomposite material-based catalyst, adsorbent, and membranes for petroleum wastewater treatment
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[6] Critical review of bioadsorption on modified cellulose and removal of divalent heavy metals (Cd, Pb, and Cu)
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[7] Micro-mesoporous modified activated carbon from corn husks for removal of hexavalent chromium ions
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[8] Modifikasi eceng gondok (eichhornia crassipes) menggunakan asam sitrat sebagai adsorben ion nikel (ni) dan besi (fe) pada limbah cair laboratorium kimia
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[9] Modifikasi eceng gondok (Eichhornia crassipes) menggunakan asam sitrat sebagai adsorben ion tembaga (Cu) pada limbah cair laboratorium kimia
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[10] Fabrication of dual cross-linked spherical treated waste biomass/alginate adsorbent and its potential for efficient removal of lead ions from aqueous solutions
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[11] Current Research in Green and Sustainable Chemistry
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[12] Eco-friendly zeolite/alginate microspheres for Ni ions removal from aqueous solution: Kinetic and isotherm study
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[13] BIOSORPTION OF Pb (II) AND Cu (II) IONS FROM AQUEOUS SOLUTION USING COFFEE SENNA (Senna occidentalis) LEAVES AS BIOMASS
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[14] Polymeric Substitution of Triazole Moieties in Cellulosic Schiff Base for Heavy Metal Complexation Studies
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[15] Adsorptive Removal of Cd (II) Ions from Wastewater Using Maleic Anhydride Nanocellulose
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[16] Biodegradable composite adsorbents of modified cellulose and chitosan to remove heavy metal ions from aqueous solution
2021
[17] CHEMICALLY MODIFIED CELLULOSE CAPPED ZINC OXIDE NANOCOMPOSITE: SPECTRAL AND OPTICAL PROPERTIES.
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[18] Heavy metal removal from industrial effluents using biopolymer membranes
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[19] Development of hybrid gel beads of lignocellulosic compounds derived from agricultural waste: Efficient lead adsorbents for a comparative biosorption
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[20] Biopolymers and Their Application in Wastewater Treatment
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[21] Sorption behavior of Arachis hypogaea shells against Ag+ ions and assessment of antimicrobial properties of the product
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[22] Graphene oxide functionalized chitosan-magnetite nanocomposite for removal of Cu (II) and Cr (VI) from waste water
2020
[23] Development of tannin-immobilized cellulose fiber extracted from coconut husk and the application as a biosorbent to remove heavy metal ions
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[24] THE EFFICIENCY OF Fe@ Mg-Al LAYERED DOUBLE HYDROXIDE FOR CADMIUM REMOVAL FROM WATER SAMPLES
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[25] Phytoremediation of Banana Leaf-Functionalization of Mercaptan-Cellulose and its Utilization for the Removal of Heavy Metals in Aqueous Environment
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[26] Aumento da adsorção de crômio, cádmio, chumbo e níquel por biochars modificados com adição de grupos isotiocianato
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[27] Stabilizing Aqueous Three-Dimensional Printed Constructs Using Chitosan-Cellulose Nanocrystal Assemblies
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[28] Removal of Azo Dye Methyl Orange in Aqueous Solution by Kaolinite Clay: Equilibrium Isotherms, Kinetics and Error Analyses
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[29] Maleic acid modified cellulose for scavenging lead from water
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[30] Sequestration of Pb (II) Ions from Aqueous Systems with Novel Green Bacterial Cellulose Graphene Oxide Composite
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[31] Flocculation and antibacterial performance of dual coagulant system of modified cassava peel starch and alum
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[32] Cellulose with Bidentate Chelating Functionality: An Adsorbent for Metal Ions from Wastewater
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[33] Synthesis of super hydrophilic cellulose-alpha zirconium phosphate ion exchange membrane via surface coating for the removal of heavy metals from wastewater
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[34] Synthesis of a cross-linked cellulose-based amine polymer and its application in wastewater purification
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[35] The Biosorption of Lead from Aqueous Solutions by a Wood-immobilized Fungal Biosorbent
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[36] Chelating modified cellulose bearing pendant heterocyclic moiety for effective removal of heavy metals
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[37] Analisar a capacidade adsortiva da algaroba (prosopis juliflora) na remoção do corante azul de metileno.
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[38] Tree-like cellulose nanofiber membranes modified by citric acid for heavy metal ion (Cu2+) removal
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[39] Remediation of heavy metals and dyes from wastewater using cellulose-based adsorbents
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[40] Synthesis of Three Dimensional Cellulose Diamine Polymer for Wastewater Purification
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[41] Sintesis Selulosa Sitrat dari Selulosa Ampas Tebu (Saccharum officinarum L.) Melalui Reaksi Esterifikasi Dengan Asam Sitrat sebagai Adsorben Ion Seng (Zn2+) …
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[42] The use of new chemically modified cellulose for heavy metal ion adsorption
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[43] Rare earth elements removal from water using natural polymers
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[44] Sintesis Selulosa Sitrat dari Selulosa Ampas Tebu (Saccharum officinarum L.) Melalui Reaksi Esterifikasi Dengan Asam Sitrat sebagai Adsorben Ion Seng …
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[45] Novel Complexes of Copper with modified grafted cellulose copolymer and its application
Journal of Basic and Environmental Sciences, 2018
[46] Cellulose Based Green Adsorbents for Pollutant Removal from Wastewater
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[47] New glucosamine Schiff base grafted poly (acrylic acid) as efficient Cu2+ ions adsorbent and antimicrobial agent
Journal of Environmental Chemical Engineering, 2018
[48] Chemical modification, characterization, and heavy metal adsorption of cellulose-based natural fibers.
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[49] Kinetic Studies on the Removal of some Lanthanide Ions from Aqueous Solutions Using Amidoxime-Hydroxamic Acid Polymer
Journal of Analytical Methods in Chemistry, 2018
[50] Removal of heavy metal and sulfate ions by cellulose derivative-based biosorbents
Cellulose, 2018
[51] FABRICATION AND CHARACTERIZATION OF MAGNETORESPONSIVE CARBON NANOTUBE-INFUSED POLYSULFONE (CNT-IPSF) NANOCOMPOSITES …
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[52] New modified poly (vinylamine)-gels as selective and efficient Hg2+ ions adsorbents
Chemical Engineering Journal, 2017
[53] Renewable modified cellulose bearing chelating schiff base for adsorptive removal of heavy metal ions and antibacterial action
Water Environment Research, 2017
[54] Modified cellulose with tertiary amine and Schiff base chelating sites for the removal of heavy metal ions from aqueous solution
2017
[55] Optical detection and efficient removal of transition metal ions from water using poly (hydroxamic acid) ligand
Sensors and Actuators B: Chemical, 2017
[56] New modified poly (vinylamine)-gels as selective and efficient Hg 2+ ions adsorbents
Chemical Engineering Journal, 2017
[57] Potassium fulvate-functionalized graft copolymer of polyacrylic acid from cellulose as a promising selective chelating sorbent
RSC Advances, 2017
[58] A STUDY ON THE REMOVAL OF MERCURY (II) IONS FROM AQUEOUS SOLUTION BY CHEMICALLY MODIFIED CELLULOSE GREEN ADSORBENT: KINETIC AND EQUILIBRIUM STUDIES
2017
[59] The promise of a specially-designed graft copolymer of acrylic acid onto cellulose as selective sorbent for heavy metal ions
International Journal of Biological Macromolecules, 2017
[60] Cellulose‐based Materials for the Removal of Heavy Metals from Wastewater–An Overview
ChemBioEng Reviews, 2017
[61] Swipe to navigate through the articles of this issue
2017
[62] Fabrication and characterization of magnetoresponsive carbon nanotube-infused polysulfone (cnt-ipsf) nanocomposites for water purification
2017
[63] Fabrication and characterization of magneto responsive carbon nanotube-infused polysulfone (cnt-ipsf) nanocomposites for water purification
2017
[64] Synthesis and application of a new carboxylated cellulose derivative. Part I: Removal of Co2+, Cu2+ and Ni2+ from monocomponent spiked aqueous solution
Journal of Colloid and Interface Science, 2016
[65] Synthesis of poly (hydroxamic acid) ligand from polymer grafted corn‐cob cellulose for transition metals extraction
Polymers for Advanced Technologies, 2016
[66] Synthesis and application of a new carboxylated cellulose derivative. Part I: Removal of Co 2+, Cu 2+ and Ni 2+ from monocomponent spiked aqueous solution
Journal of Colloid and Interface Science, 2016
[67] Novel hyperbranched polyurethane resins for the removal of heavy metal ions from aqueous solution
Process Safety and Environmental Protection, 2016
[68] Adsorption of Selected Heavy Metals on Modified Nano Cellulose
2016
[69] Aldehyde-functionalized porous nanocellulose for effective removal of heavy metal ions from aqueous solutions
RSC Advances, 2016
[70] Potassium fulvate-modified graft copolymer of acrylic acid onto cellulose as efficient chelating polymeric sorbent
International Journal of Biological Macromolecules, 2016
[71] Impact of ferrocyanide salts on the thermo-oxidative degradation of lignocellulosic sorbents
Journal of Thermal Analysis and Calorimetry, 2016
[72] Cellulose bearing Schiff base and carboxylic acid chelating groups a low cost and green adsorbent for heavy metal ion removal from aqueous solution
Water Science & Technology, 2016
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