Separation of carbon dioxide using selected porous materials: a review
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- Type
- review
- Published
- 2010-07-01
- Cited by
- 3
- References
- 42
- OpenAlex
- https://openalex.org/W78709252
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:134759920
Keywords
Adsorption, Porosity, Selectivity, Materials science, Chemical engineering
References
- Adsorption of Carbon Dioxide on Chemically Modified High Surface Area Carbon-Based Adsorbents at High Temperature
- Equilibria and kinetics of CO2 adsorption on hydrotalcite adsorbent
- Single and Mixed Gas Adsorption Equilibria of Carbon Dioxide/Methane on Activated Carbon
- Enhanced CO2 Adsorption in Metal-Organic Frameworks via Occupation of Open-Metal Sites by Coordinated Water Molecules
- Adsorber dynamics and optimal design of layered beds for multicomponent gas adsorption
- An experimental adsorbent screening study for CO2 removal from N2
- Recent Progress in the Synthesis of Porous Carbon Materials
- Prediction of the conditions for breathing of metal organic framework materials using a combination of X-ray powder diffraction, microcalorimetry, and molecular simulation.
- A new family of mesoporous molecular sieves prepared with liquid crystal templates
- Targets for stabilization of atmospheric CO2
- Adsorption of carbon dioxide at high temperature—a review
- Amine loaded zeolites for carbon dioxide capture: Amine loading and adsorption studies
- Adsorption separation of carbon dioxide, methane, and nitrogen on Hβ and Na-exchanged β-zeolite
- High temperature adsorption of CO2 on various hydrotalcite-like compounds
- Very High Surface Area Microporous Carbon with a Three-Dimensional Nano-Array Structure: Synthesis and Its Molecular Structure
- Anomalous Henry's law behavior of nitrogen and carbon dioxide adsorption on alkali-exchanged chabazite zeolites
- An Explanation for the Very Large Breathing Effect of a Metal–Organic Framework during CO2 Adsorption
- Sorbents for air prepurification in air separation
- In-Situ Infrared Study of CO2 Adsorption on SBA-15 Grafted with γ-(Aminopropyl)triethoxysilane
- Synthesis and modification of a functionalized 3D open-framework structure with MIL-53 topology.
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