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Volumn 338, Issue 2, 2009, Pages 402-409
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Phenol removal from aqueous solution by adsorption and ion exchange mechanisms onto polymeric resins
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Author keywords
Adsorption; Diffusion coefficients; Industrial aqueous effluents; Ion exchange; Kinetic; Phenol removal
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Indexed keywords
ACIDIC CONDITIONS;
ADSORPTION PROCESS;
ALKALINE CONDITIONS;
ANION EXCHANGE;
AQUEOUS SOLUTIONS;
COMBINED EFFECT;
CONTROLLING MECHANISM;
CROSS-LINKED POLYMERS;
DESORPTION PROCESS;
DIFFUSION COEFFICIENTS;
EXPERIMENTAL DATA;
INDUSTRIAL AQUEOUS EFFLUENTS;
ION EXCHANGE MECHANISMS;
KINETIC EXPERIMENT;
LANGMUIR AND FREUNDLICH ISOTHERMS;
LANGMUIR MODELS;
MAXIMUM LOADING;
PARTICLE DIFFUSION MODEL;
PH CONDITION;
PHENOL ADSORPTION;
PHENOL CONCENTRATION;
PHENOL REMOVAL;
POLYMERIC RESIN;
PROGRESSIVE MODELS;
RATE LIMITING;
RESIN PHASE;
STRONG ANION EXCHANGES;
THEORETICAL MODELS;
TOTAL RECOVERY;
ACTINIDES;
ADSORPTION;
ATMOSPHERIC TEMPERATURE;
CHEMICALS REMOVAL (WATER TREATMENT);
DESORPTION;
DIFFUSION;
EFFLUENTS;
EXPERIMENTS;
ION EXCHANGE;
ION EXCHANGE RESINS;
NEGATIVE IONS;
PHENOLS;
POLYMERS;
PROCESS CONTROL;
WASTEWATER TREATMENT;
PHENOLIC RESINS;
ANION EXCHANGE RESIN;
CHLORIDE ION;
ION EXCHANGE RESIN;
METHANOL;
PHENOL;
POLYMER;
WATER;
ACIDITY;
ADSORPTION;
ALKALINITY;
ANION EXCHANGE;
AQUEOUS SOLUTION;
ARTICLE;
CHEMICAL ANALYSIS;
DESORPTION;
DIFFUSION;
EQUILIBRIUM CONSTANT;
ION EXCHANGE;
ISOTHERM;
KINETICS;
PH;
PHYSICAL CHEMISTRY;
PRIORITY JOURNAL;
WASTE COMPONENT REMOVAL;
ADSORPTION;
HYDROGEN-ION CONCENTRATION;
ION EXCHANGE RESINS;
PHENOL;
POLYMERS;
SOLUTIONS;
SURFACE PROPERTIES;
WATER;
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EID: 68949167645
PISSN: 00219797
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jcis.2009.06.062 Document Type: Article |
Times cited : (208)
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References (39)
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