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Volumn 168, Issue 2-3, 2009, Pages 813-819
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Removal of Cu2+ and Zn2+ from model wastewaters by spontaneous reduction-coagulation process in flow conditions
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Author keywords
Aluminium; Heavy metals; Precipitation; Reduction; Wastewater
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Indexed keywords
ALUMINIUM;
ALUMINIUM COMPOSITES;
COAGULATION PROCESS;
CONVENTIONAL TREATMENTS;
COPPER REMOVAL;
FLOW CONDITION;
FLOW SYSTEMS;
METAL CONCENTRATIONS;
NEUTRAL PH;
PRECIPITATION;
REMOVAL CAPACITY;
REMOVAL MECHANISM;
REMOVAL RATE;
RESIDUAL CONCENTRATIONS;
TREATMENT TIME;
WORKING PARAMETERS;
ALUMINUM;
COAGULATION;
COPPER;
FLOW RATE;
HEAVY METALS;
METAL RECOVERY;
METAL WORKING;
METALS;
WASTEWATER;
WASTEWATER TREATMENT;
WATER RECYCLING;
ZINC;
CHEMICALS REMOVAL (WATER TREATMENT);
ALUMINUM HYDROXIDE;
COPPER ION;
ZINC ION;
COPPER;
ZINC;
ALUMINUM;
COAGULATION;
CONCENTRATION (COMPOSITION);
COPPER;
HEAVY METAL;
REACTION KINETICS;
REDUCTION;
REMOVAL EXPERIMENT;
WASTE TREATMENT;
WASTEWATER;
ZINC;
ARTICLE;
CONCENTRATION (PARAMETERS);
CONTROLLED STUDY;
FLOW RATE;
HEAVY METAL REMOVAL;
METAL INDUSTRY;
PH;
PRECIPITATION;
PROCESS OPTIMIZATION;
REDUCTION;
WASTE WATER MANAGEMENT;
ISOLATION AND PURIFICATION;
KINETICS;
OXIDATION REDUCTION REACTION;
THEORETICAL MODEL;
WATER POLLUTANT;
COPPER;
HYDROGEN-ION CONCENTRATION;
KINETICS;
MODELS, THEORETICAL;
OXIDATION-REDUCTION;
WATER POLLUTANTS, CHEMICAL;
ZINC;
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EID: 67649887056
PISSN: 03043894
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jhazmat.2009.02.096 Document Type: Article |
Times cited : (87)
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References (18)
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