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interior modification of nano-porous fillers to fabricate high performance mixed matrix membranes
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نویسنده
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sanaeepur h. ,ebadi amooghin a. ,kargari a. ,omidkhah m. ,ismail a. f. ,ramakrishna s.
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منبع
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iranian journal of chemical engineering - 2019 - دوره : 16 - شماره : 2 - صفحه:70 -94
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چکیده
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A new method is developed to enhance the gas separation properties of mixed matrix membranes (mmms) by interior modification of an inorganic nano-porous particle. ship-in-a-bottle (sib), as a novel synthesis strategy, is considered to encapsulate a polyaza macrocyclic ag-ligand complex into the zeolite y, which has resulted in a new host-guest nano-composite. it is consequently incorporated into a glassy polymer matrix to fabricate a novel mmm for co2 separation. accordingly, cellulose acetate (ca) with relatively low gas permeability is selected as the membrane polymeric matrix to provide an appropriate opportunity for better tracking the effect of incorporating the new synthesized nano-porous hybrids. the results showed a promising increase in both the co2 permeability (45.71 %) and co2/n2 selectivity (40.28 %) of the prepared mmm over its pristine ca membrane. it can be concluded that the proposed method makes it possible to fabricate novel mmms with significant intensification in the performance of the current mmms.
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کلیدواژه
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ship-in-a-bottle (sib) ,macrocyclic ag-ligand complex ,nano-porous hybrid filler ,mixed matrix membrane ,gas separation
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آدرس
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arak university, institute of nanosciences & nanotechnologyو faculty of engineering, department of chemical engineering, ایران, arak university, institute of nanosciences & nanotechnology, faculty of engineering, department of chemical engineering, ایران, amirkabir university of technology(tehran polutechnic), membrane processes research laboratory (mprl), department of chemical engineering, ایران, tarbiat modares university, faculty of chemical engineering, ایران, universiti teknologi malaysia (utm), advanced membrane technology research centre (amtec), faculty of chemical and energy engineering, مالزی, national university of singapore, center for nanofibers and nanotechnology, faculty of engineering, engineering drive, department of mechanical engineering, singapore
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پست الکترونیکی
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seeram@nus.edu.sg
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Authors
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