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Removal of metal ions using lignite in aqueous solution-Low cost biosorbents
Fuel Processing Technology Cilt 88 ss. 99-106
Scopus Toplam 151 atıf DOI
Turkish lignite can be used as a new adsorption material for removing some toxic metals from aqueous solution. The adsorption of lignite (brown young coals) to remove copper (Cu2+), lead (Pb2+), and nickel (Ni2+) from aqueous solutions was studied as a function of pH, contact time, metal concentration and temperature. Adsorption equilibrium was achieved between 40 and 70 min for all studied cations except Pb2+, which is between 10 and 30 min. The adsorption capacities are 17.8 mg/g for Cu2+, 56.7 mg/g for Pb2+, 13.0 mg/g for Ni2+ for BC1 (Ilgi{dotless}n lignite) and 18.9 mg/g for Cu2+, 68.5 mg/g for Pb2+, 12.0 mg/g for Ni2+ for BC2 (Beysehir lignite) and 7.2 mg/g for Cu2+, 62.3 mg/g for Pb2+, 5.4 mg/g for Ni2+ for AC (activated carbon). More than 67% of studied cations were removed by BC1 and 60% BC2, respectively from aqueous solution in single step. Whereas about 30% of studied cations except Pb2+, which is 90%, were removed by activated carbon. Effective removal of metal ions was demonstrated at pH values of 3.8-5.5. The adsorption isotherms were measured at 20 °C, using adsorptive solutions at the optimum pH value to determine the adsorption capacity. The Langmuir adsorption isotherm was used to describe observed sorption phenomena. The rise in temperature caused a slight decrease in the value of the equilibrium constant (Kc) for the sorption of metal ions. The mechanism for cations removal by the lignite includes ion exchange, complexation and sorption. The process is very efficient especially in the case of low concentrations of pollutants in aqueous solution, where common methods are either economically unfavorable or technically complicated. © 2006 Elsevier B.V. All rights reserved.
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Ascorbic Acid Adsorption-Release Performance and Antibacterial Activity of Chitosan-ter(GMA-MA-NTBA) Polymer Microcapsules
Journal of Polymers and the Environment Cilt 28 ss. 2277-2288
Scopus Havuzumuzda 12 atıf almış
This study reports ascorbic acid adsorption/release performance and antibacterial activity of chitosan composite microcapsules containing terpolymer of glycidyl methacrylate (GMA), maleic anhydride (MA) and N-tert-butylacrylamide (NTBA). The effects of amount of chitosan composite microcapsules, solution pH, ascorbic acid concentration and contact time on the adsorption of ascorbic acid by chitosan-ter (GMA-MA-NTBA) polymer microcapsules were studied. The maximum ascorbic acid adsorption was observed for 0.075 g of microcapsules under following conditions; ascorbic acid concentration: 10 mg L−1, pH 7.35, temperature: 35 °C and contact time: 1 h. Antibacterial activity of chitosan-ter (GMA-MA-NTBA) polymer microcapsules was tested against Pseudomonas aeruginosa ATCC 27853, Escherichia coli ATCC 25113, Klebsiella pneumoniae ATCC 700603, Staphylococcus aureus ATCC 25923, Enterococcus faecalis ATCC 29212 and Salmonella enteritidis ATCC 13076 bacterial strains. In vitro antibacterial studies demonstrated that chitosan microcapsules with 0.25% ter (GMA-MA-NTBA) polymer (by mass) were more effective on inhibiting of bacterial growth. Plain glutaraldehyde-chitosan beads showed no antibacterial activity, indicating that ter(GMA-MA-NTBA) polymer content was responsible for the antibacterial activity of the chitosan-ter(GMA-MA-NTBA) polymer microcapsules. Graphic Abstract: [Figure not available: see fulltext.]
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Kurumlar (1)
Selçuk Üniversitesi Selçuklu, Turkey