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Removal of orange G from aqueous solutions by polystyrene-modified chitin
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نویسنده
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umar a. ,sanagi m.m. ,naim a.a. ,ibrahim w.n.w. ,keyon a.s.a. ,ibrahim w.a.w.
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منبع
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jurnal teknologi - 2017 - دوره : 79 - شماره : 7 - صفحه:91 -99
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چکیده
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In this work,polystyrene modified-chitin was evaluated for the first time as adsorbent for the removal of orange g from aqueous solutions. its absorption capacity was compared to that of chitin. bet and fesem results showed that the polystyrene-modified chitin has higher surface area (12.47 m2/g) compared to chitin (4.92 m2/g). batch adsorption experiments on the removal of orange g from aqueous solutions were conducted. the results showed that the polystyrene-modified chitin has improved adsorption capacity compared to chitin. the maximum adsorption of orange g by chitin occurred at ph 2,while that of the polystyrene-modified chitin occurred at ph 6. at an initial concentration of 20 mg/l,the percentages of dye removal were 65.16% and 81.20% for raw chitin (rch) and polystyrene-modified chitin (mch),respectively. kinetics studies for the adsorbents were conducted using pseudo-first-order and pseudo-second-order models. the pseudo-first-order model gives poor fittings for both adsorbents,with low coefficients of determination (r2). the pseudo-second-order model fits the experimental data well,with r2 close to unity. langmuir and freundlich models were used to interpret the adsorption isotherms. it was found that langmuir isotherm conformed better than freundlich model in the adsorption of selected dye on chitin and the polystyrene-modified chitin,with r2 nearly unity. © 2017 penerbit utm press.
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کلیدواژه
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Adsorption; Chitin; Grafting; Orange G; Polystyrene-modified chitin
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آدرس
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department of chemistry,faculty of science,universiti teknologi malaysia,utm,johor bahru,johor,malaysia,department of chemistry,faculty of science,northwest university,p.m.b 3220,kano, Nigeria, department of chemistry,faculty of science,universiti teknologi malaysia,utm,johor bahru,johor,malaysia,centre for sustainable nanomaterials,ibnu sina institute for scientific and industrial research,universiti teknologi malaysia,utm,johor bahru,johor, Malaysia, department of chemistry,faculty of science,universiti teknologi malaysia,utm,johor bahru,johor, Malaysia, department of chemistry,faculty of science,universiti teknologi malaysia,utm,johor bahru,johor, Malaysia, department of chemistry,faculty of science,universiti teknologi malaysia,utm,johor bahru,johor, Malaysia, department of chemistry,faculty of science,universiti teknologi malaysia,utm,johor bahru,johor,malaysia,centre for sustainable nanomaterials,ibnu sina institute for scientific and industrial research,universiti teknologi malaysia,utm,johor bahru,johor, Malaysia
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Authors
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