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environmental performance of alternative schiff bases synthesis routes: a proposal for co2 storages
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نویسنده
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yaseen anahed a. ,yousif emad ,al‐ tikrity emaad t. b. ,kadhom mohammed ,yusop muhammad r. ,ahmed dina s.
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منبع
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pollution - 2022 - دوره : 8 - شماره : 1 - صفحه:239 -248
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چکیده
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The increased consumption of fossil fuels provokes high levels of carbon dioxide (co2) emissions, which give rise to serious environmental issues. accordingly, designing and utilizing new classes of materials, such as schiff bases, to capture co2 gained significant attention from researchers worldwide. in the present work, two schiff bases were synthesized and examined as storage materials for carbon dioxide gas. the prepared compounds were obtained by reacting trimethoprim with two aldehydes severally (benzaldehyde and parabromobenzaldehyde) in boiling methanol. the surface morphology of the compounds was investigated via field emission scanning electron microscopy (fesem). the brunauer-emmett-teller (bet) test showed that schiff bases 1 and 2 have surface areas of 17.993 and 2.732 m²/g, pore volumes of 0.008 and 0.005 cm³/g, and pore diameters of 17.02 and 74.89 nm, respectively. reasonable uptake values of co2 (31.36 cm³/g, 6.2 wt%) and (25.30 cm3/g, 5.0 wt%) were achieved by the prepared schiff bases 1 and 2, respectively, at 313 k temperature and 40 bars pressure.
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کلیدواژه
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schiff bases ,gas storage ,environmental pollution ,carbon dioxide uptake ,co2 capturing ,adsorption
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آدرس
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tikrit university, college of science, department of chemistry, iraq, al‐nahrain university, college of science, department of chemistry, iraq, tikrit university, college of science, department of chemistry, iraq, alkarkh university of science, college of energy and environmental science, department of environmental science, iraq, universiti kebangsaan malaysia, school of chemical sciences and food technology, faculty of science and technology, malaysia, al-mansour university college, department of medical instrumentation engineering, iraq
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پست الکترونیکی
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dina.saadi@muc.edu.iq
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Authors
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