Fungi-based porous carbons for CO2 adsorption and separation
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- Type
- article
- Published
- 2012-06-26
- Cited by
- 199
- References
- 39
- OpenAlex
- https://openalex.org/W2043376492
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:262292589
Keywords
Microporous material, Adsorption, Selectivity, Porosity, Chemical engineering
References
- Adsorption of Carbon Dioxide on Chemically Modified High Surface Area Carbon-Based Adsorbents at High Temperature
- Preparation of activated carbons from spanish anthracite. II. Activation by NaOH
- Gas storage in nanoporous materials.
- Hierarchical porous polyacrylonitrile-based activated carbon fibers for CO2 capture
- KOH Activation of Needle Coke to Develop Activated Carbons for High-Performance EDLC
- Polyaniline/multiwalled carbon nanotubes nanocomposite-an excellent reversible CO2 capture candidate
- CO2 capture and separation technologies for end-of-pipe applications – A review
- Effect of heat treatment on CO2 adsorption of KOH-activated graphite nanofibers.
- Nanospace engineering of KOH activated carbon
- Preparation of activated carbons and their adsorption properties for greenhouse gases: CH4 and CO2
- Synthesis, structure, and carbon dioxide capture properties of zeolitic imidazolate frameworks.
- Microporous organic polymers for carbon dioxide capture
- CO2 adsorption by activated templated carbons.
- Control of pore size and functionality in isoreticular zeolitic imidazolate frameworks and their carbon dioxide selective capture properties.
- Ultrahigh surface area hierarchical porous carbons based on natural well-defined macropores in sisal fibers
- Colossal cages in zeolitic imidazolate frameworks as selective carbon dioxide reservoirs
- Ordered mesoporous carbons: citric acid-catalyzed synthesis, nitrogen doping and CO2 capture
- Nanostructured polyaniline decorated graphene sheets for reversible CO2 capture
- Development of low-cost biomass-based adsorbents for postcombustion CO2 capture
- High density hydrogen storage in superactivated carbons from hydrothermally carbonized renewable organic materials
Cited by
- Microwave-Assisted Rapid Synthesis of Well-Shaped MOF-74 (Ni) for CO2 Efficient Capture.
- Spherical potassium intercalated activated carbon beads for pulverised fuel CO2 post-combustion capture
- Highly porous activated carbon materials from carbonized biomass with high CO2 capturing capacity
- Breakthrough adsorption studies of mixed gases on mango (Mangifera indicaL.) seed shell derived activated carbon extrudes
- Synthesis of Mesoporous Carbon for Carbon Dioxide Capture and Sequestration
- Cross-linked polymer-derived B/N co-doped carbon materials with selective capture of CO2
- Production of highly microporous carbons with large CO2 uptakes at atmospheric pressure by KOH activation of peanut shell char
- A facile nanocasting strategy to nitrogen-doped porous carbon monolith by treatment with ammonia for efficient oxygen reduction
- Preparation and CO2 adsorption properties of soft-templated mesoporous carbons derived from chestnut tannin precursors
- Porous materials for carbon dioxide capture
- Hierarchically tunable porous carbon spheres derived from larch sawdust and application for efficiently removing Cr (III) and Pb (II)
- Scalable preparation of nitrogen-enriched carbon microspheres for efficient CO2 capture
- Sustainable synthesis of Penicillium-derived highly conductive carbon film as superior binder-free electrode of lithium ion batteries
- Melaleuca bark based porous carbons for hydrogen storage
- A family of microporous carbons prepared via a simple metal salt carbonization route with high selectivity for exceptional gravimetric and volumetric post-combustion CO2 capture
- Preparation and characterization of monodisperse, micrometer-sized, hierarchically porous carbon spheres as catalyst support
- An efficient one-step condensation and activation strategy to synthesize porous carbons with optimal micropore sizes for highly selective CO₂ adsorption.
- KOH activation of carbon-based materials for energy storage
- Porous carbon with ultrahigh specific surface area derived from biomass rice hull
- Fabrication of novel polymeric and carbonaceous nanoscale networks by the union of self-assembly and hypercrosslinking
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