Adsorptive removal of dyes from aqueous solution onto carbon nanotubes: a review.
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Vinod K. Gupta | A. Nayak | T. Saleh | R. Kumar | M. Barakat | V. Gupta | M. Barakat
[1] Junjie Wang,et al. Comparative study of methylene blue dye adsorption onto activated carbon, graphene oxide, and carbon nanotubes , 2013 .
[2] E. Mijowska,et al. Adsorption of anionic dye Direct Red 23 onto magnetic multi-walled carbon nanotubes-Fe3C nanocomposite: Kinetics, equilibrium and thermodynamics , 2012 .
[3] M. Ghaedi,et al. Comparison of Activated Carbon, Multiwalled Carbon Nanotubes, and Cadmium Hydroxide Nanowire Loaded on Activated Carbon as Adsorbents for Kinetic and Equilibrium Study of Removal of Safranine O , 2012 .
[4] Kunyan Sui,et al. Biocomposite fiber of calcium alginate/multi-walled carbon nanotubes with enhanced adsorption properties for ionic dyes. , 2012, Carbohydrate polymers.
[5] Wei Zhou,et al. Fabrication of spherical cellulose/carbon tubes hybrid adsorbent anchored with welan gum polysaccharide and its potential in adsorbing methylene blue , 2012 .
[6] C. Bergmann,et al. Adsorption of Reactive Blue 4 dye from water solutions by carbon nanotubes: experiment and theory. , 2012, Physical chemistry chemical physics : PCCP.
[7] Shaobin Wang,et al. Synergistic and competitive adsorption of organic dyes on multiwalled carbon nanotubes , 2012 .
[8] L. Ai,et al. Removal of methylene blue from aqueous solution with self-assembled cylindrical graphene–carbon nanotube hybrid , 2012 .
[9] Shaobin Wang,et al. A Comparative Study on the Adsorption of Acid and Reactive Dyes on Multiwall Carbon Nanotubes in Single and Binary Dye Systems , 2012 .
[10] M. Ghaedi,et al. Oxidized multiwalled carbon nanotubes as efficient adsorbent for bromothymol blue , 2012 .
[11] Vinod K. Gupta,et al. Photo-catalyzed degradation of hazardous dye methyl orange by use of a composite catalyst consisting of multi-walled carbon nanotubes and titanium dioxide. , 2012, Journal of colloid and interface science.
[12] L. Bharadwaj,et al. Controlling the density and site of attachment of gold nanoparticles onto the surface of carbon nanotubes. , 2012, Journal of colloid and interface science.
[13] Huaping Wang,et al. Structure and properties of regenerated cellulose fibers from different technology processes , 2012 .
[14] Tae Seok Seo,et al. Three-dimensional graphene oxide nanostructure for fast and efficient water-soluble dye removal. , 2012, ACS applied materials & interfaces.
[15] A. Mahvi,et al. Kinetics and Equilibrium Studies on Adsorption of Acid Red 18 (Azo-Dye) Using Multiwall Carbon Nanotubes (MWCNTs) from Aqueous Solution , 2012 .
[16] T. Saleh,et al. Column with CNT/magnesium oxide composite for lead(II) removal from water , 2012, Environmental Science and Pollution Research.
[17] Fang Liao,et al. Removal of methylene blue from aqueous solution with magnetite loaded multi-wall carbon nanotube: kinetic, isotherm and mechanism analysis. , 2011, Journal of hazardous materials.
[18] A. Afkhami,et al. Removal of some cationic dyes from aqueous solutions using magnetic-modified multi-walled carbon nanotubes. , 2011, Journal of hazardous materials.
[19] C. Bergmann,et al. Adsorption of Reactive Red M-2BE dye from water solutions by multi-walled carbon nanotubes and activated carbon. , 2011, Journal of hazardous materials.
[20] Vinod K. Gupta,et al. Removal of the hazardous dye—Tartrazine by photodegradation on titanium dioxide surface , 2011 .
[21] Masaaki Nagatsu,et al. Carbon nanotubes as adsorbents in environmental pollution management: A review , 2011 .
[22] Yunjin Yao,et al. Equilibrium and kinetic studies of methyl orange adsorption on multiwalled carbon nanotubes , 2011 .
[23] M. Ghaedi,et al. Multiwalled Carbon Nanotubes as Adsorbents for the Kinetic and Equilibrium Study of the Removal of Alizarin Red S and Morin , 2011 .
[24] Menachem Elimelech,et al. Electrochemical multiwalled carbon nanotube filter for viral and bacterial removal and inactivation. , 2011, Environmental science & technology.
[25] V. Gupta,et al. Chromium removal by combining the magnetic properties of iron oxide with adsorption properties of carbon nanotubes. , 2011, Water research.
[26] Seong-Rin Lim,et al. Effect of the addition mode of carbon nanotubes for the production of chitosan hydrogel core-shell beads on adsorption of Congo red from aqueous solution. , 2011, Bioresource technology.
[27] P. Chang,et al. Characterization of magnetic soluble starch-functionalized carbon nanotubes and its application for the adsorption of the dyes. , 2011, Journal of hazardous materials.
[28] C. Vecitis,et al. Electrochemical Carbon Nanotube Filter for Adsorption, Desorption, and Oxidation of Aqueous Dyes and Anions , 2011 .
[29] V. Gupta,et al. A comparative investigation on adsorption performances of mesoporous activated carbon prepared from waste rubber tire and activated carbon for a hazardous azo dye--Acid Blue 113. , 2011, Journal of hazardous materials.
[30] N. K. Jain,et al. Pulmonary toxicity of carbon nanotubes: a systematic report. , 2011, Nanomedicine : nanotechnology, biology, and medicine.
[31] Rajeev Kumar,et al. Biosorption of hazardous crystal violet dye from aqueous solution onto treated ginger waste (TGW) , 2011 .
[32] Vinod K. Gupta,et al. Synthesis and characterization of alumina-coated carbon nanotubes and their application for lead removal. , 2011, Journal of hazardous materials.
[33] S. K. Ling,et al. Dye Adsorption on Layered Graphite Oxide , 2011 .
[34] Wei Lin,et al. The influence of treatment duration on multi-walled carbon nanotubes functionalized by H2SO4/HNO3 oxidation , 2011 .
[35] C. Hsieh,et al. Adsorption of Phenol and Basic Dye on Carbon Nanotubes/Carbon Fabric Composites from Aqueous Solution , 2010 .
[36] S. Ramaprabhu,et al. Study of removal of azo dye by functionalized multi walled carbon nanotubes , 2010 .
[37] Navid B. Saleh,et al. Multiwalled carbon nanotube filter: improving viral removal at low pressure. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[38] G. Ovejero,et al. Adsorption of dyes on carbon nanomaterials from aqueous solutions , 2010, Journal of environmental science and health. Part A, Toxic/hazardous substances & environmental engineering.
[39] A. Nayak,et al. Adsorption-desorption studies of indigocarmine from industrial effluents by using deoiled mustard and its comparison with charcoal. , 2010, Journal of colloid and interface science.
[40] G. Zeng,et al. Preparation, characterization, adsorption kinetics and thermodynamics of novel magnetic chitosan enwrapping nanosized gamma-Fe2O3 and multi-walled carbon nanotubes with enhanced adsorption properties for methyl orange. , 2010, Bioresource technology.
[41] Rajeev Kumar,et al. Conducting Polyaniline/Iron Oxide Composite: A Novel Adsorbent for the Removal of Amido Black 10B , 2010 .
[42] Changwei Zhao,et al. Regeneration of carbon nanotubes exhausted with dye reactive red 3BS using microwave irradiation. , 2010, Journal of hazardous materials.
[43] Kun Yang,et al. Adsorption of organic compounds by carbon nanomaterials in aqueous phase: Polanyi theory and its application. , 2010, Chemical reviews.
[44] M. Rafatullah,et al. Adsorption of methylene blue on low-cost adsorbents: a review. , 2010, Journal of hazardous materials.
[45] Hongwen Yu,et al. A novel adsorbent obtained by inserting carbon nanotubes into cavities of diatomite and applications for organic dye elimination from contaminated water. , 2010, Journal of hazardous materials.
[46] Zhiwen Zhu,et al. Adsorption behavior of methylene blue on carbon nanotubes. , 2010, Bioresource technology.
[47] J. Mota,et al. Adsorption of light alkanes and alkenes onto single-walled carbon nanotube bundles: Langmuirian analysis and molecular simulations , 2010 .
[48] A. Mittal,et al. Adsorption of hazardous dye crystal violet from wastewater by waste materials. , 2010, Journal of colloid and interface science.
[49] Vinod K. Gupta,et al. Biosorption of nickel onto treated alga (Oedogonium hatei): Application of isotherm and kinetic models. , 2010, Journal of colloid and interface science.
[50] A. Mittal,et al. Decoloration treatment of a hazardous triarylmethane dye, Light Green SF (Yellowish) by waste material adsorbents. , 2010, Journal of colloid and interface science.
[51] Amar K Mohanty,et al. Single-walled carbon nanotubes dispersed in aqueous media via non-covalent functionalization: effect of dispersant on the stability, cytotoxicity, and epigenetic toxicity of nanotube suspensions. , 2010, Water research.
[52] A. Mittal,et al. Adsorptive removal of hazardous anionic dye "Congo red" from wastewater using waste materials and recovery by desorption. , 2009, Journal of colloid and interface science.
[53] K. Y. Foo,et al. Utilization of rice husk ash as novel adsorbent: a judicious recycling of the colloidal agricultural waste. , 2009, Advances in colloid and interface science.
[54] M. W. Lee,et al. Enhanced mechanical strength of chitosan hydrogel beads by impregnation with carbon nanotubes , 2009 .
[55] A. Mittal,et al. Adsorption studies on the removal of coloring agent phenol red from wastewater using waste materials as adsorbents. , 2009, Journal of colloid and interface science.
[56] A. Mittal,et al. Adsorption of carmoisine A from wastewater using waste materials--bottom ash and deoiled soya. , 2009, Journal of colloid and interface science.
[57] M. Jaurand,et al. Particle and Fibre Toxicology Mesothelioma: Do Asbestos and Carbon Nanotubes Pose the Same Health Risk? , 2022 .
[58] Suhas,et al. Application of low-cost adsorbents for dye removal--a review. , 2009, Journal of environmental management.
[59] D. Lee,et al. Enhanced adsorption of congo red from aqueous solutions by chitosan hydrogel beads impregnated with cetyl trimethyl ammonium bromide. , 2009, Bioresource technology.
[60] Bin Wang,et al. Removal of cationic dyes from aqueous solution using magnetic multi-wall carbon nanotube nanocomposite as adsorbent. , 2009, Journal of hazardous materials.
[61] J. Kong,et al. Magnetic removal of dyes from aqueous solution using multi-walled carbon nanotubes filled with Fe2O3 particles. , 2008, Journal of hazardous materials.
[62] Chung-Hsin Wu,et al. Adsorption of direct dyes from aqueous solutions by carbon nanotubes: determination of equilibrium, kinetics and thermodynamics parameters. , 2008, Journal of colloid and interface science.
[63] K. Pyrzyńska. Carbon Nanotubes as a New Solid‐Phase Extraction Material for Removal and Enrichment of Organic Pollutants in Water , 2008 .
[64] Yang-hsin Shih,et al. Adsorption of selected volatile organic vapors on multiwall carbon nanotubes. , 2008, Journal of hazardous materials.
[65] John Parthenios,et al. Chemical oxidation of multiwalled carbon nanotubes , 2008 .
[66] C. Kuo. Desorption and re-adsorption of carbon nanotubes: comparisons of sodium hydroxide and microwave irradiation processes. , 2008, Journal of hazardous materials.
[67] P. Badot,et al. Application of chitosan, a natural aminopolysaccharide, for dye removal from aqueous solutions by adsorption processes using batch studies: A review of recent literature , 2008 .
[68] E. Demirbas,et al. Adsorption of reactive dyes from aqueous solutions by fly ash: kinetic and equilibrium studies. , 2008, Journal of hazardous materials.
[69] K. Pyrzyńska,et al. Adsorption of heavy metal ions with carbon nanotubes , 2007 .
[70] R. Jain,et al. Electrochemical removal of the hazardous dye Reactofix Red 3 BFN from industrial effluents. , 2007, Journal of colloid and interface science.
[71] Vinod K. Gupta,et al. Defluoridation of wastewaters using waste carbon slurry. , 2007, Water research.
[72] K. Pyrzyńska. Application of Carbon Sorbents for the Concentration and Separation of Metal Ions , 2007, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[73] Chung-Hsin Wu,et al. Adsorption of reactive dye onto carbon nanotubes: equilibrium, kinetics and thermodynamics. , 2007, Journal of hazardous materials.
[74] V. Saini,et al. Removal of Reactofix Navy Blue 2 GFN from aqueous solutions using adsorption techniques. , 2007, Journal of colloid and interface science.
[75] M. Iqbal,et al. Adsorption of dyes from aqueous solutions on activated charcoal. , 2007, Journal of hazardous materials.
[76] V. Gupta,et al. Advances in water treatment by adsorption technology , 2006, Nature Protocols.
[77] Kun Yang,et al. Desorption of polycyclic aromatic hydrocarbons from carbon nanomaterials in water. , 2007, Environmental pollution.
[78] A. Mittal,et al. Adsorption of a hazardous dye, erythrosine, over hen feathers. , 2006, Journal of colloid and interface science.
[79] G. Crini,et al. Non-conventional low-cost adsorbents for dye removal: a review. , 2006, Bioresource technology.
[80] Chungsying Lu,et al. REMOVAL OF ZINC(II) FROM AQUEOUS SOLUTION BY PURIFIED CARBON NANOTUBES: KINETICS AND EQUILIBRIUM STUDIES , 2006 .
[81] M. Prato,et al. Chemistry of carbon nanotubes. , 2006, Chemical reviews.
[82] Suhas,et al. Removal of 2-Aminophenol Using Novel Adsorbents , 2006 .
[83] R. Gong,et al. Effect of chemical modification on dye adsorption capacity of peanut hull , 2005 .
[84] Lu Shen,et al. Preparation and mechanical properties of chitosan/carbon nanotubes composites. , 2005, Biomacromolecules.
[85] Valérie Cabuil,et al. Magnetic nano- and microparticles for metal removal and environmental applications: a review , 2005 .
[86] Lei Su,et al. Adsorption of Methylene Blue Dye onto Carbon Nanotubes: A Route to an Electrochemically Functional Nanostructure and Its Layer-by-Layer Assembled Nanocomposite , 2005 .
[87] Santiago Villaverde,et al. Combined anaerobic-aerobic treatment of azo dyes--a short review of bioreactor studies. , 2005, Water research.
[88] M. Okada,et al. Regeneration of granular activated carbon using ultrasound. , 2005, Ultrasonics sonochemistry.
[89] M. Rood,et al. Structural characterization of single-walled carbon nanotube bundles by experiment and molecular simulation. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[90] Yi‐Jun Xu,et al. The interaction of molecular oxygen with active sites of graphite: a theoretical study , 2004 .
[91] E. Forgács,et al. Removal of synthetic dyes from wastewaters: a review. , 2004, Environment international.
[92] J. Pignatello,et al. Evidence for π−π Electron Donor−Acceptor Interactions between π-Donor Aromatic Compounds and π-Acceptor Sites in Soil Organic Matter through pH Effects on Sorption , 2004 .
[93] A. L. Alves,et al. 1,2-Dichlorobenzene Interacting with Carbon Nanotubes , 2004 .
[94] P. K. Malik,et al. Kinetics of decolourisation of azo dyes in wastewater by UV/H2O2 process , 2004 .
[95] Hao Yan,et al. Thionine-mediated chemistry of carbon nanotubes , 2004 .
[96] Carolyn I. Pearce,et al. The removal of colour from textile wastewater using whole bacterial cells: a review , 2003 .
[97] Suhas,et al. Utilization of industrial waste products as adsorbents for the removal of dyes. , 2003, Journal of hazardous materials.
[98] Jian Zhang,et al. Photoluminescence and electronic interaction of anthracene derivatives adsorbed on sidewalls of single-walled carbon nanotubes , 2003 .
[99] Bin Chen,et al. Pore structure of raw and purified HiPco single-walled carbon nanotubes , 2002 .
[100] W. Pompe,et al. Reduced diameter distribution of single-wall carbon nanotubes by selective oxidation , 2002 .
[101] A. Rinzler,et al. Length sorting cut single wall carbon nanotubes by high performance liquid chromatography , 2002 .
[102] Young Hee Lee,et al. The effect of gas adsorption on the field emission mechanism of carbon nanotubes. , 2002, Journal of the American Chemical Society.
[103] J. Charlier,et al. Defects in carbon nanotubes. , 2002, Accounts of chemical research.
[104] T. Robinson,et al. Microbial decolourisation and degradation of textile dyes , 2001, Applied Microbiology and Biotechnology.
[105] R. T. Yang,et al. Carbon Nanotubes as a Superior Sorbent for Nitrogen Oxides , 2001 .
[106] J. Yates,et al. Molecular simulation of xenon adsorption on single-walled carbon nanotubes , 2001 .
[107] Robert H. Hauge,et al. Purification and Characterization of Single-Wall Carbon Nanotubes , 2001 .
[108] M. Okada,et al. Biodegradation of trichloroethylene (TCE) adsorbed on granular activated carbon (GAC) , 2000 .
[109] B. Mcenaney,et al. Adsorption of Nitrogen in Carbon Nanotube Arrays , 1999 .
[110] D. Srivastava,et al. Predictions of Enhanced Chemical Reactivity at Regions of Local Conformational Strain on Carbon Nanotubes: Kinky Chemistry , 1999 .
[111] M. W. Cole,et al. Low coverage adsorption in cylindrical pores , 1998 .
[112] Vinod K. Gupta,et al. Design parameters for fixed bed reactors of activated carbon developed from fertilizer waste for the removal of some heavy metal ions , 1998 .
[113] P. Chiang,et al. Comparison of chemical and thermal regeneration of aromatic compounds on exhausted activated carbon , 1997 .
[114] C. S. Jiménez,et al. A new method for regenerating activated carbon by thermal desorption with liquid water under subcritical conditions , 1996 .
[115] F. Glasser,et al. Zeolite P in cements: Its potential for immobilizing toxic and radioactive waste species , 1995 .
[116] Paul L. Bishop,et al. Anaerobic/aerobic treatment of selected azo dyes in wastewater , 1994 .
[117] S. Iijima. Helical microtubules of graphitic carbon , 1991, Nature.
[118] J. Abrahamson,et al. Carbon fibre layers on arc electrodes—I: Their properties and cool-down behaviour , 1978 .