| Literature DB >> 33799711 |
Xiuxiu Ren1, Masakoto Kanezashi2, Meng Guo1, Rong Xu1, Jing Zhong1, Toshinori Tsuru2.
Abstract
A new polyhedral oligomericEntities:
Keywords: POSS; amine group; gas separation; nanocomposite; organosilica membrane
Year: 2021 PMID: 33799711 PMCID: PMC8000124 DOI: 10.3390/membranes11030194
Source DB: PubMed Journal: Membranes (Basel) ISSN: 2077-0375
Figure 1The schematic networks of 1,2-bis(triethoxysilyl)ethane (BTESE)-(–(CH2)3–NH–(CH2)2–NH2)(PNEN) and BTESE-3-aminopropyltriethoxysilane (APTES) hybrid sols.
Figure 2Particle sizes of (a) BTESE sols and (b) BTESE-PNEN sols (after reacting for 2 h) at different reaction times.
Figure 3(a) Thermogravimetric (TG) curves of BTESE-PNEN powders under He and He+O2 atmospheres; (b) mass signals of BTESE-PNEN under He atmosphere.
Figure 4FT-IR spectra of (a) BTESE, PNEN and composite BTESE-PNEN (0.2) films calcination at 25 °C and (b) BTESE-PNEN-0.2 film calcination at 25 and 300 °C; (c) molar ratio of PNEN to BTESE at 0.2 and 0.02 formed films calcination at 300 °C in N2 atmosphere.
Figure 5Gas permeance tested at 200 °C for BTESE-PNEN membrane calcinated at 200, 300 and 350 °C.
Gas permeance and permselectivity at different calcination temperatures.
| Calcination Temperature/°C | H2 Permeance | Permselectivity | |||
|---|---|---|---|---|---|
| mol/(m2·s·Pa) | H2/N2 | H2/CH4 | H2/SF6 | CO2/N2 | |
| 200 | 1.2 × 10−7 | 30.9 | 12.2 | 481 | 5.6 |
| 300 | 2.0 × 10−7 | 22.9 | 19.1 | 659.8 | 4.6 |
| 350 | 2.4 × 10−7 | 20.7 | 16.6 | 604.2 | 4.9 |
Figure 6Temperature dependence of gas permeance of (a) BTESE-PNEN-0.02 and (b) BTESE-PNEN-0.2 mixed matrix membranes.
Gas permeance and related permselectivity of BTESE-PNEN-0.02 membrane.
| Test | H2 Permeance | CO2 Permeance | Permselectivity | |||
|---|---|---|---|---|---|---|
| mol/(m2·s·Pa) | mol/(m2·s·Pa) | H2/N2 | H2/CH4 | CO2/N2 | H2/CO2 | |
| 200 | 2.7 × 10−7 | 5.6 × 10−8 | 31.6 | 36.0 | 6.6 | 4.8 |
| 100 | 1.4 × 10−7 | 6.0 × 10−8 | 30.3 | 31.3 | 12.8 | 2.3 |
| 40 | 8.5 × 10−8 | 5.2 × 10−8 | 24.2 | 33.0 | 14.9 | 1.6 |
Gas permeance and related permselectivity of BTESE-PNEN-0.2 membrane.
| Test Temperature/°C | H2 Permeance | CO2 Permeance | Permselectivity | |||
|---|---|---|---|---|---|---|
| mol/(m2·s·Pa) | mol/(m2·s·Pa) | H2/N2 | H2/CH4 | CO2/N2 | H2/CO2 | |
| 200 | 2.0×10−7 | 4.1×10−8 | 22.9 | 19.1 | 4.6 | 4.9 |
| 100 | 7.1×10−8 | 2.0×10−8 | 26.4 | 21.9 | 7.5 | 3.6 |
| 40 | 2.3×10−8 | 7.6×10−9 | 15.9 | 13.9 | 5.2 | 3.0 |
Figure 7(a) Temperature dependence of gas permeance of BTESE-APTES-0.2 membrane and (b) kinetic diameter dependence of gas permeance of BTESE-APTES-0.2, BTESE-PNEN-0.2 and BTESE-PNEN-0.02 membranes at 200 °C.
Gas permeance and related permselectivity of BTESE-APTES-0.2 membranes.
| Test Temperature/°C | H2 Permeance | CO2 Permeance | Permselectivity | |||
|---|---|---|---|---|---|---|
| mol/(m2·s·Pa) | mol/(m2·s·Pa) | H2/N2 | H2/CH4 | CO2/N2 | H2/CO2 | |
| 200 | 3.1 × 10−7 | 3.1 × 10−8 | 57.6 | 90.5 | 5.8 | 10.0 |
| 100 | 1.7 × 10−7 | 2.9 × 10−8 | 81.5 | 114.3 | 13.7 | 5.9 |
| 40 | 8.3 × 10−8 | 1.9 × 10−8 | 71.6 | 87.5 | 16.3 | 4.4 |
Figure 8Relationship between kinetic diameters and k for BTESE-PNEN-0.2, 0.02 and BTESE-APTES-0.2 membranes (symbols: experimental; solid curves: calculated based on Equation (4)).
Pore size and apparent activation energy based on modified GT model.
| Membrane | Fitting Plot | k0 | Pore Size | E | ||
|---|---|---|---|---|---|---|
| R2 | - | nm | H2 | N2 | CO2 | |
| BTESE-PNEN-0.2 | 0.991 | 0.17 | 0.49 | 17.2 | 17.7 | 13.2 |
| BTESE-PNEN-0.02 | 0.991 | 0.15 | 0.43 | 10.7 | 9.12 | 2.06 |
| BTESE-APTES-0.2 | 0.994 | 0.17 | 0.43 | 11.1 | 14.4 | 4.95 |
Figure 9(a) Selectivity of CO2/N2 vs Ep(CO2)-Ep(N2) (b) selectivity of CO2/N2 vs Ep(N2) (c) permeance of CO2 vs Ep(CO2)-Ep(N2) (d) permeance of CO2 vs Ep(N2) for BTESE and related amine-hybrid organosilica membranes at 30–50 °C. (BTESE [40], BTESE-BTPP (50%) [38], BTESE-POSS (10–66.7%) [23], BTESE-PNEN (2, 20%) BTESE-APTES [this work], * BTESE-APTES (25%), ** BTESA-APTES (10%) [11,17]), BTPP: 4,6-bis(3-(triethoxysilyl)-1-propoxy)-1,3-pyrimidine; APTES: 3-aminopropyl triethoxysilane; POSS: octa-benzamidopropyl-POSS.