Silver Nitrate Impregnated Pellet-Type Adsorbents for Propylene/Propane Separation
Adsorptive separation of propylene from propane using adsorption has attracted much attention due to its energy efficiency compared to distillation. We prepared propylene-selective adsorbents suitable for pressure swing adsorption (PSA) separation by impregnating AgNO3 on high-surface-area pellets s...
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Published in | Industrial & engineering chemistry research Vol. 45; no. 26; pp. 9129 - 9135 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Washington, DC
American Chemical Society
20.12.2006
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Abstract | Adsorptive separation of propylene from propane using adsorption has attracted much attention due to its energy efficiency compared to distillation. We prepared propylene-selective adsorbents suitable for pressure swing adsorption (PSA) separation by impregnating AgNO3 on high-surface-area pellets such as silica, clay, and aluminosilica as substrates. Considering adsorption capacity, selectivity, desorption rate, and pellet crush strength before and after impregnation, AgNO3/aluminosilica was the most suitable adsorbent among the three adsorbents. A large portion of the AgNO3 was located inside micropores in the aluminosilica after impregnation. The propylene adsorption capacity of AgNO3/aluminosilica was 2.3 mmol/g, and the selectivity of propylene over propane was 3.1 at 298 K and 3 kgf/cm2. However, the adsorption capacity of AgNO3/aluminosilica for propylene decreased by exposing the adsorbent to hydrogen. |
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AbstractList | Adsorptive separation of propylene from propane using adsorption has attracted much attention due to its energy efficiency compared to distillation. We prepared propylene-selective adsorbents suitable for pressure swing adsorption (PSA) separation by impregnating AgNO3 on high-surface-area pellets such as silica, clay, and aluminosilica as substrates. Considering adsorption capacity, selectivity, desorption rate, and pellet crush strength before and after impregnation, AgNO3/aluminosilica was the most suitable adsorbent among the three adsorbents. A large portion of the AgNO3 was located inside micropores in the aluminosilica after impregnation. The propylene adsorption capacity of AgNO3/aluminosilica was 2.3 mmol/g, and the selectivity of propylene over propane was 3.1 at 298 K and 3 kgf/cm2. However, the adsorption capacity of AgNO3/aluminosilica for propylene decreased by exposing the adsorbent to hydrogen. |
Author | Park, Jong-Ho Kim, Jong-Nam Ko, Chang Hyun Han, Sang-Sup Cho, Soon-Haeng |
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Title | Silver Nitrate Impregnated Pellet-Type Adsorbents for Propylene/Propane Separation |
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