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Equilibrium, kinetics and mechanism modeling and simulation of basic and acid dyes sorption onto jute fiber carbon: Eosin yellow, malachite green and crystal violet single component systems.
J Hazard Mater. 2007 May 08; 143(1-2):311-27.JH

Abstract

Batch experiments were carried out for the sorption of eosin yellow, malachite green and crystal violet onto jute fiber carbon (JFC). The operating variables studied are the initial dye concentration, initial solution pH, adsorbent dosage and contact time. Experimental equilibrium data were fitted to Freundlich, Langmuir and Redlich-Peterson isotherm by non-linear regression method. Langmuir isotherm was found to be the optimum isotherm for eosin yellow/JFC system and Freundlich isotherm was found to be the optimum isotherm for malachite green/JFC and crystal violet/JFC system at equilibrium conditions. The sorption capacities of eosin yellow, malachite green and crystal violet onto JFC according to Langmuir isotherm were found to 31.49 mg/g, 136.58 mg/g, 27.99 mg/g, respectively. A single stage batch adsorber was designed for the adsorption of eosin yellow, malachite green and crystal violet onto JFC based on the optimum isotherm. A pseudo second order kinetic model well represented the kinetic uptake of dyes studied onto JFC. The pseudo second order kinetic model successfully simulated the kinetics of dye uptake process. The dye sorption process involves both surface and pore diffusion with predominance of surface diffusion at earlier stages. A Boyd plot confirms the external mass transfer as the rate limiting step in the dye sorption process. The influence of initial dye concentration on the dye sorption process was represented in the form of dimensionless mass transfer numbers (Sh/Sc(0.33)) and was found to be agreeing with the expression:

Authors+Show Affiliations

CIQ-UP, Department of Chemistry, Faculty of Science, University of Porto, Rua do Campo Alegre 687, 4169-007 Porto, Portugal.No affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't
Validation Study

Language

eng

PubMed ID

17069970

Citation

Porkodi, K, and K Vasanth Kumar. "Equilibrium, Kinetics and Mechanism Modeling and Simulation of Basic and Acid Dyes Sorption Onto Jute Fiber Carbon: Eosin Yellow, Malachite Green and Crystal Violet Single Component Systems." Journal of Hazardous Materials, vol. 143, no. 1-2, 2007, pp. 311-27.
Porkodi K, Vasanth Kumar K. Equilibrium, kinetics and mechanism modeling and simulation of basic and acid dyes sorption onto jute fiber carbon: Eosin yellow, malachite green and crystal violet single component systems. J Hazard Mater. 2007;143(1-2):311-27.
Porkodi, K., & Vasanth Kumar, K. (2007). Equilibrium, kinetics and mechanism modeling and simulation of basic and acid dyes sorption onto jute fiber carbon: Eosin yellow, malachite green and crystal violet single component systems. Journal of Hazardous Materials, 143(1-2), 311-27.
Porkodi K, Vasanth Kumar K. Equilibrium, Kinetics and Mechanism Modeling and Simulation of Basic and Acid Dyes Sorption Onto Jute Fiber Carbon: Eosin Yellow, Malachite Green and Crystal Violet Single Component Systems. J Hazard Mater. 2007 May 8;143(1-2):311-27. PubMed PMID: 17069970.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Equilibrium, kinetics and mechanism modeling and simulation of basic and acid dyes sorption onto jute fiber carbon: Eosin yellow, malachite green and crystal violet single component systems. AU - Porkodi,K, AU - Vasanth Kumar,K, Y1 - 2006/09/15/ PY - 2006/06/03/received PY - 2006/08/20/revised PY - 2006/09/10/accepted PY - 2006/10/31/pubmed PY - 2007/8/19/medline PY - 2006/10/31/entrez SP - 311 EP - 27 JF - Journal of hazardous materials JO - J Hazard Mater VL - 143 IS - 1-2 N2 - Batch experiments were carried out for the sorption of eosin yellow, malachite green and crystal violet onto jute fiber carbon (JFC). The operating variables studied are the initial dye concentration, initial solution pH, adsorbent dosage and contact time. Experimental equilibrium data were fitted to Freundlich, Langmuir and Redlich-Peterson isotherm by non-linear regression method. Langmuir isotherm was found to be the optimum isotherm for eosin yellow/JFC system and Freundlich isotherm was found to be the optimum isotherm for malachite green/JFC and crystal violet/JFC system at equilibrium conditions. The sorption capacities of eosin yellow, malachite green and crystal violet onto JFC according to Langmuir isotherm were found to 31.49 mg/g, 136.58 mg/g, 27.99 mg/g, respectively. A single stage batch adsorber was designed for the adsorption of eosin yellow, malachite green and crystal violet onto JFC based on the optimum isotherm. A pseudo second order kinetic model well represented the kinetic uptake of dyes studied onto JFC. The pseudo second order kinetic model successfully simulated the kinetics of dye uptake process. The dye sorption process involves both surface and pore diffusion with predominance of surface diffusion at earlier stages. A Boyd plot confirms the external mass transfer as the rate limiting step in the dye sorption process. The influence of initial dye concentration on the dye sorption process was represented in the form of dimensionless mass transfer numbers (Sh/Sc(0.33)) and was found to be agreeing with the expression: SN - 0304-3894 UR - https://www.unboundmedicine.com/medline/citation/17069970/Equilibrium_kinetics_and_mechanism_modeling_and_simulation_of_basic_and_acid_dyes_sorption_onto_jute_fiber_carbon:_Eosin_yellow_malachite_green_and_crystal_violet_single_component_systems_ L2 - https://linkinghub.elsevier.com/retrieve/pii/S0304-3894(06)01096-X DB - PRIME DP - Unbound Medicine ER -