شماره ركورد كنفرانس
4046
عنوان مقاله
اثر گروه هاي عاملي پركننده در خواص جداسازي گازي غشاهاي بستر آميخته PEBA-CNT
عنوان به زبان ديگر
Effect of filler functional groups on gas separation properties of PEBA-CNT mixed matrix membranes
پديدآورندگان
Amirkhani Farid farid.znucheng@yahoo.com University of Kashan , Asghari Morteza asghari@kashanu.ac.ir University of Kashan
تعداد صفحه
8
كليدواژه
پلي اتر بلوك آميد , كربن نانو تيوب , نانو پركننده عاملدار شده , جداسازي گاز
سال انتشار
1396
عنوان كنفرانس
چهارمين كنفرانس بين المللي نوآوري هاي اخير در شيمي و مهندسي شيمي
زبان مدرك
انگليسي
چكيده فارسي
Poly ether-block-amide (PEBA) is a polymeric membrane material which being used in CO2/N2 separation. In order to further improve its gas separation capability and develop a membrane with a superior performance, modified multi-walled carbon nanotubes (mMWCNTs) were incorporated into the PEBA matrix. In this study, the gas separation performance of PEBA and PEBA/mMWCNTs mixed matrix membranes (MMMs) was investigated for N2 and CO2 at different pressures. The carboxylic MWCNTs to embedding in the polymeric matrix, were functionalized with cyanate groups. Prepared MMMs were characterized by FTIR, XRD and AFM tests. The cyanate functionalized MMM showed 4% increase in the permeability of CO2 at 20 ˚C and 13 bar compared to the neat membrane. Moreover results illustrates 53% enhancement in selectivity of CO2/N2. The MMMs containing fillers overcomes the CO2/N2 Robesons upper bound and cyanate functionalized MMM showed better gas separation performance.
چكيده لاتين
Poly ether-block-amide (PEBA) is a polymeric membrane material which being used in CO2/N2 separation. In order to further improve its gas separation capability and develop a membrane with a superior performance, modified multi-walled carbon nanotubes (mMWCNTs) were incorporated into the PEBA matrix. In this study, the gas separation performance of PEBA and PEBA/mMWCNTs mixed matrix membranes (MMMs) was investigated for N2 and CO2 at different pressures. The carboxylic MWCNTs to embedding in the polymeric matrix, were functionalized with cyanate groups. Prepared MMMs were characterized by FTIR, XRD and AFM tests. The cyanate functionalized MMM showed 4% increase in the permeability of CO2 at 20 ˚C and 13 bar compared to the neat membrane. Moreover results illustrates 53% enhancement in selectivity of CO2/N2. The MMMs containing fillers overcomes the CO2/N2 Robesons upper bound and cyanate functionalized MMM showed better gas separation performance.
كشور
ايران
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