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Journal of hazardous materials, ISSN 0304-3894, 2017, Volume 321, pp. 801 - 811
[Display omitted] •Ni/Mg/Al layered double hydroxides (NMA-LDHs) synthesized.•NMA-LDHs with hierarchically hollow microsphere structure.•Calcined NMA-LDHs have... 
Hierarchical hollow sphere | Cr(VI) ion | Congo red | Adsorption | Layered double hydroxide | MG-AL | MECHANISM | SORPTION | AQUEOUS-SOLUTION | NANOPARTICLES | LDH | ENVIRONMENTAL SCIENCES | ENHANCED ADSORPTION | REMOVAL | ENGINEERING, ENVIRONMENTAL | WASTE-WATER | KINETICS | Capacity | Hydroxides | Thermal properties | Thermodynamics | Chromium | Water pollution | X-ray spectroscopy | Aluminum | X-rays | Roasting | Nickel | Magnesium
Journal Article
Journal of colloid and interface science, ISSN 0021-9797, 2017, Volume 490, pp. 242 - 251
Journal Article
Journal of colloid and interface science, ISSN 0021-9797, 2017, Volume 504, pp. 688 - 696
....•NiO microspheres with hierarchical pore structure and high specific surface area.•NiO microspheres exhibited high Congo red adsorption capacity of 534.8mgg–1... 
Nickel(II) oxide | Congo red | Hierarchical microsphere | Anionic dye | Adsorption | METHYLENE-BLUE | DYE REMOVAL | CHEMISTRY, PHYSICAL | EFFICIENT ADSORPTION | LOW-TEMPERATURE | AQUEOUS-SOLUTION | CATALYTIC PERFORMANCE | ACTIVATED CARBON | WASTE-WATER | HOLLOW MICROSPHERES | LITHIUM-ION BATTERIES | Nickel | Hydroxides | Surface active agents | Ethanolamines | Analysis
Journal Article
Journal of hazardous materials, ISSN 0304-3894, 2011, Volume 185, Issue 2-3, pp. 889 - 897
...–desorption isotherms. Adsorption of Congo red (CR) onto the as-prepared samples from aqueous solutions was investigated and discussed... 
Nanosheets | Ni(OH) 2 | Congo red | NiO | Adsorption isotherm | Kinetics | Hierarchical porous structures | Ni(OH) | Nanocomposites | Adsorption | Isotherms | Surface chemistry | Nanomaterials | Mathematical models | Nanostructure | Diffusion | Waste water
Journal Article
Journal of hazardous materials, ISSN 0304-3894, 2009, Volume 161, Issue 1, pp. 126 - 131
The ability of Ca-bentonite to remove Congo red dye from aqueous solutions has been carried out as a function of contact time, temperature (20–50 °C), pH (5–10) and concentration (50–200 mg L −1). An amount... 
Bentonite | Thermodynamics | Congo red | Kinetics | Adsorption | ACID DYE | METHYLENE-BLUE | AGRICULTURAL SOLID-WASTE | BIOSORBENT | ENVIRONMENTAL SCIENCES | ENGINEERING, CIVIL | COLOR REMOVAL | ENGINEERING, ENVIRONMENTAL | ACTIVATED CARBON | COIR PITH | TEXTILE DYES | FLY-ASH | WATER | Models, Chemical | Solutions | Time Factors | Molecular Structure | Bentonite - chemistry | Congo Red - chemistry | Calcium - chemistry | Hydrogen-Ion Concentration | Thermal properties | Chemical properties
Journal Article
Applied surface science, ISSN 0169-4332, 2018, Volume 435, pp. 1136 - 1142
Journal Article
Journal of colloid and interface science, ISSN 0021-9797, 2016, Volume 466, pp. 238 - 246
....•The samples exhibit strong adsorption affinity toward Congo red (CR) in water.•The maximum adsorption capacity for CR is 204.1mg/g for NiO–SiO2... 
Hierarchical porosity | Hollow spheres | Congo red | Adsorption | NiO | ASSISTED SYNTHESIS | CATION-EXCHANGE REMOVAL | FACILE FABRICATION | CHEMISTRY, PHYSICAL | AQUEOUS-SOLUTION | PHOTOCATALYTIC ACTIVITIES | ACTIVATED CARBON | LAYERED DOUBLE HYDROXIDE | EFFICIENT REMOVAL | NIO NANOPARTICLES | VISIBLE-LIGHT IRRADIATION
Journal Article
Journal of hazardous materials, ISSN 0304-3894, 2007, Volume 147, Issue 3, pp. 979 - 985
...) and montmorillonite (MMT). The nanocomposites were characterized by FTIR and XRD. The effects of different molar ratios of CTS and MMT, initial pH value of the dye solution and temperature on adsorption capacities of samples for Congo Red (CR... 
Congo Red | Chitosan | Montmorillonite | Nanocomposites | Adsorption | Temperature | Nanocomposites - chemistry | Industrial Waste | Chitosan - chemistry | Spectrophotometry, Infrared | Waste Disposal, Fluid - methods | X-Ray Diffraction | Bentonite - chemistry | Kinetics | Congo Red - chemistry | Coloring Agents - chemistry | Hydrogen-Ion Concentration | Clay | Chemical properties | Nanotechnology
Journal Article