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Zn(II) Ion Biosorption onto Surface of Eucalyptus Leaf Biomass. Isotherm, Kinetic, and Mechanistic Modeling
被引:57
作者:
Mishra, Vishal
[1
]
Balomajumder, Chandrajit
[1
]
Agarwal, Vijay Kumar
[1
]
机构:
[1] Indian Inst Technol, Dept Chem Engn, Roorkee 247667, Uttar Pradesh, India
关键词:
Bioremediation;
Intra particle diffusion;
Langmuir isotherm;
Pseudo second order reaction;
Zn(II) ion;
AQUEOUS-SOLUTIONS;
WASTE-WATER;
METAL-IONS;
COMPETITIVE ADSORPTION;
INDUSTRIAL-WASTE;
ZINC IONS;
REMOVAL;
EQUILIBRIUM;
SORPTION;
CADMIUM(II);
D O I:
10.1002/clen.201000030
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Bioremediation of Zn(II) by biosorption across aqueous phase on to surface of euca lyptus leaf powder has been investigated in present research work The adsorptive potential of eucalyptus leaf powder was evaluated as function of pH temperature contact time agitation rate and particle size Maximum metal ion uptake and per centage removal capacity of eucalyptus leaf powder were 23 5 mg g(-1) and 94% respectively at optimized pH 5 20 +/- 1 degrees C contact time 6 h particle size 0 5mm and agitation rate 200 rpm The biomass surface analysis revealed the fact that the biomass surface was heterogeneous and porous in nature The functional groups like amine amide carboxyl hydroxyl and methyl groups significantly important for metal ion binding were present on biomass surface in tremendous amount Additionally the Fourier transformation IR spectrum analysis of acid and base activated eucalyptus leaf biomass ruled out all the possibilities of the presence of surface functional groups mentioned above The reaction rate was studied by applying two rate limiting models pseudo first and pseudo second order Pseudo second order model was found to be more suitable (R-2 = 0 998) in comparison to pseudo first order (R-2 = 0 724) Adsorption equilibrium of batch stirred reaction data fitting shows the dominance of Langmuir isotherm (R-2 = 0 99) against Freundlich isotherm (R-2 = 0 887) model with equipartitional involvement of both film and ultra particle diffusion as rate limiting steps at differential status of contact time
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页码:1062 / 1073
页数:12
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