| Literature DB >> 32325765 |
S A S C Samarasinghe1,2, Chong Yang Chuah1, H Enis Karahan1,3, G S M D P Sethunga1,2, Tae-Hyun Bae1,4.
Abstract
Membrane-based air separation (O2/N2) is of great importance owing to its energy efficiency as compared to conventional processes. Currently, dense polymeric membranes serve as the main pillar of industrial processes used for the generation of O2- and N2-enriched gas. However, conventional polymeric membranes often fail to meet the selectivity needs owing to the similarity in the effective diameters of O2 and N2 gases. Meanwhile, mixed-matrix membranes (MMMs) are convenient to produce high-performance membranes while keeping the advantages of polymeric materials. Here, we propose a novel MMM for O2/N2 separation, which is composed of Matrimid® 5218 (Matrimid) as the matrix, cobalt(II) phthalocyanine microparticles (CoPCMPs) as the filler, and Pluronic® F-127 (Pluronic) as the compatibilizer. By the incorporation of CoPCMPs to Matrimid, without Pluronic, interfacial defects were formed. Pluronic-treated CoPCMPs, on the other hand, enhanced O2 permeability and O2/N2 selectivity by 64% and 34%, respectively. We explain the enhancement achieved with the increase of both O2 diffusivity and O2/N2 solubility selectivity.Entities:
Keywords: Matrimid; O2/N2 separation; cobalt(II) phthalocyanine; mixed-matrix membrane; pluronic
Year: 2020 PMID: 32325765 PMCID: PMC7231378 DOI: 10.3390/membranes10040075
Source DB: PubMed Journal: Membranes (Basel) ISSN: 2077-0375
Figure 1Chemical structures of (a) Pluronic®, (b) cobalt(II) phthalocyanine microparticles (CoPCMPs), and (c) Matrimid®.
Figure 2Fourier transform infrared (FTIR) spectra of (a) CoPCMP-based membranes and (b) Pluronic-based membranes; (c,d) FTIR spectra of CoPCMP, Pluronic® F-127 (Pluronic), Matrimid® 5218 (Matrimid), and composite (Matrimid-Pluronic-CoPCMP) containing 5 wt.% CoPCMP and 10 wt.% Pluronic. The shift in absorption bands in (c,d) are indicated for easy comparison.
Figure 3X-ray diffraction (XRD) patterns of neat (Matrimid), blended (Matrimid-Pluronic), and composite (Matrimid-CoPCMP and Matrimid-Pluronic-CoPCMP) membranes.
Figure 4Cross-sectional FESEM images of (a) pure Matrimid membrane; (b) CoPCMP (deposited on a silicon wafer substrate); (c) Matrimid-CoPCMP (3 wt.%); (d) Matrimid-CoPCMP (5 wt.%); (e) Matrimid-Pluronic (5 wt.%); (f) Matrimid-Pluronic (10 wt.%); (g) Matrimid-Pluronic-CoPCMP (5 wt.%, 5 wt.%); (h) Matrimid-Pluronic-CoPCMP (10 wt.%, 5 wt.%); and (i) Matrimid-Pluronic-CoPCMP (10 wt.%, 5 wt.%) at higher magnification.
O2/N2 gas permeation behavior of neat (Matrimid), blended (Matrimid-Pluronic), and composite (Matrimid-CoPCMP and Matrimid-CoPCMP-Pluronic) membranes at 35 °C under 1 bar (21/79 vol/vol) O2/N2 feed pressure.
| Membrane Composition (wt.%) a,b | O2 Permeability (Barrer) | % Change (with Respect to Matrimid) | O2/N2 Selectivity | % Change (with Respect to Matrimid) | ||
|---|---|---|---|---|---|---|
| Matrimid | CoPCMP | Pluronic | ||||
| 100 | 0 | 0 | 1.72 ± 0.29 | - | 5.79 ± 0.12 | - |
| 97 | 3 | 0 | 1.02 ± 0.22 | −40.7 | 6.63 ± 0.08 | 14.5 |
| 95 | 5 | 0 | 1.32 ± 0.32 | −23.3 | 7.62 ± 0.54 | 31.6 |
| 95 | 0 | 5 | 0.93 ± 0.32 | −45.9 | 7.09 ± 1.09 | 22.5 |
| 90 | 0 | 10 | 0.77 ± 0.07 | −55.2 | 6.19 ± 0.64 | 6.9 |
| 90 | 5 | 5 | 1.66 ± 0.15 | −3.4 | 3.82 ± 0.18 | −34.0 |
| 85 | 5 | 10 | 2.82 ± 0.24 | 64.0 | 7.75 ± 1.44 | 33.9 |
a The membranes are stated in wt.% in order to show the clarity for each composition; b Membrane thickness ranges around 60–80 μm, based on the readings made using a micrometer screw gauge.
Figure 5(a) O2 and (b) N2 adsorption of neat (Matrimid), blended (Matrimid-Pluronic), and composite (Matrimid-CoPCMP and Matrimid-CoPCMP-Pluronic) membranes at 35 °C at different pressures.
Solubility and diffusivity data for neat (Matrimid), blended (Matrimid-Pluronic), and composite (Matrimid-CoPCMP and Matrimid-Pluronic CoPCMP) membranes.
| Membrane Composition | Density (g cm−3) | O2 Solubility (mol m−3 bar−1) | N2 Solubility (mol m−3 bar−1) | O2 Diffusivity (m2 s−1), ×10−12 | N2 Diffusivity (m2 s−1), ×10−12 | O2/N2 Solubility Selectivity a | O2/N2 Diffusivity Selectivity a |
|---|---|---|---|---|---|---|---|
| Matrimid | 1.24 | 31.3 | 24.3 | 1.87 | 0.415 | 1.29 | 4.50 |
| 5 wt.% CoPCMP | 1.25 | 27.9 | 19.4 | 1.60 | 0.302 | 1.44 | 5.30 |
| 10 wt.% Pluronic | 1.13 | 12.4 | 7.0 | 2.11 | 0.603 | 1.77 | 3.50 |
| 5 wt.% CoPCMP, | 1.20 | 23.2 | 13.6 | 2.42 | 1.08 | 1.70 | 2.24 |
| 5 wt.% CoPCMP, | 1.24 | 20.6 | 7.1 | 4.65 | 1.74 | 2.90 | 2.67 |
a Solubility and diffusivity selectivity is calculated by taking the quotient of O2 solubility with N2 solubility, as well as O2 diffusivity and N2 diffusivity, respectively.