Title of article :
Synthesis and Preparation of Asymmetric PSf/ZIF-8 Mixed Matrix Membrane for CO2/CH4 Separation
Author/Authors :
Nordin, Nik Abdul Hadi Md Universiti Teknologi Malaysia - Advance Membrane Technology Research Centre (AMTEC), Faculty of Petroleum and Renewable Energy Engineering, Malaysia , Ismail, Ahmad Fauzi Universiti Teknologi Malaysia - Advance Membrane Technology Research Centre (AMTEC), Faculty of Petroleum and Renewable Energy Engineering, Malaysia , Mustafa, Azeman Universiti Teknologi Malaysia - Advance Membrane Technology Research Centre (AMTEC), Faculty of Petroleum and Renewable Energy Engineering, Malaysia
From page :
73
To page :
76
Abstract :
Utilizing nano-size filler into polymer matrix would overcome challenges in developing MMM by providing good dispersion in polymer matrix, high contact polymer-filler even at low filler loading. Asymmetric neat Polysulfone (PSf) and PSf/Zeolitic Imidazole Framework-8 (PSf/ZIF-8) mixed matrix membrane was prepared using dry/wet inversion method. Membrane prepared was coated with 3wt% of polydimethylsiloxane (PDMS) in n-hexane and undergoes heat treatment. The membranes was characterized using x-ray diffraction (XRD), thermagravimetric analysis (TGA), differential scanning calorimetry (DSC), and gas permeation test at 4 bar. XRD pattern revealed that ZIF-8 was successfully synthesis with crystal size around 73nm. Lowered membrane Tg after embodiment of ZIF-8 suggests that additional free volume form, while thermal stability up to 350°C related to ZIF-8 stability. Neat PSf prepared shows CO2 permeance at 4.97 GPU with CO2/CH4 selectivity at 7.52. Interestingly, incorporation of ZIF-8 showing improvement for both CO2 permeance and CO2/CH4 selectivity up to 51% and 47% respectively. Thus, employing nano ZIF-8 as filler into PSf matrix has resultant promising membrane for CO2/CH4 separation.
Keywords :
Mixed matrix membrane , PSf , ZIF , 8 , CO2 , CH4 separation
Journal title :
Jurnal Teknologi :F
Journal title :
Jurnal Teknologi :F
Record number :
2716687
Link To Document :
بازگشت