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Highly effective adsorption of heavy metal ions from aqueous solutions by macroporous xylan-rich hemicelluloses-based hydrogel.
- Source :
-
Journal of agricultural and food chemistry [J Agric Food Chem] 2012 Apr 18; Vol. 60 (15), pp. 3909-16. Date of Electronic Publication: 2012 Apr 06. - Publication Year :
- 2012
-
Abstract
- Xylan-rich hemicelluloses-based hydrogel was developed as a novel porous bioadsorbent by graft co-polymerization of acrylic acid (AA) and xylan-rich hemicelluloses for adsorption of heavy metal ions (Pd(2+), Cd(2+), and Zn(2+)) from aqueous solutions. The chemical structure, the interaction between the hydrogel and metal ions, and the porous structure of xylan-rich hemicelluloses-g-AA hydrogel were revealed by Fourier transform infrared spectroscopy and scanning electron microscopy. The effects of AA and cross-linker dosage, pH value, contacting time, and initial concentration of metal ion on the adsorption capacity were studied. The adsorption equilibrium time was about 60 min from the adsorption kinetics study. The maximum adsorption capacities of Pd(2+), Cd(2+), and Zn(2+) were 859, 495, and 274 mg/g, respectively. Furthermore, xylan-rich hemicelluloses-g-AA hydrogel also exhibited highly efficient regeneration and metal ion recovery efficiency and can be reused without noticeable loss of adsorption capacity for Pd(2+), Cd(2+), and Zn(2+) after quite a number of repeated adsorption/desorption cycles.
- Subjects :
- Adsorption
Environmental Restoration and Remediation instrumentation
Hydrogen-Ion Concentration
Kinetics
Porosity
Environmental Restoration and Remediation methods
Hydrogel, Polyethylene Glycol Dimethacrylate chemistry
Metals, Heavy chemistry
Polysaccharides chemistry
Water Pollutants, Chemical chemistry
Xylans analysis
Subjects
Details
- Language :
- English
- ISSN :
- 1520-5118
- Volume :
- 60
- Issue :
- 15
- Database :
- MEDLINE
- Journal :
- Journal of agricultural and food chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 22468965
- Full Text :
- https://doi.org/10.1021/jf300387q