Porous Materials for Carbon Dioxide Capture by An-Hui Lu, Sheng Dai

By An-Hui Lu, Sheng Dai

This multi-authored publication presents a finished evaluation of the newest advancements in porous CO2 catch fabrics, together with ionic liquid–derived carbonaceous adsorbents, porous carbons, metal-organic frameworks, porous fragrant frameworks, micro porous natural polymers. It additionally experiences the sorption concepts equivalent to cyclic uptake and desorption reactions and membrane separations. In every one type, the layout and fabrication, the great characterization, the overview of CO2 sorption/separation and the sorption/degradation mechanism are highlighted. furthermore, the benefits and final demanding situations in addition to destiny views for every porous fabric are covered.

This publication is geared toward scientists and graduate scholars in such fields as separation, carbon, polymer, chemistry, fabric technological know-how and know-how, who will use and delight in this knowledge resource of their study. different experts may well seek advice particular chapters to discover the newest, authoritative reviews.

Dr. An-Hui Lu is a Professor on the nation Key Laboratory of excellent chemical compounds, tuition of Chemical Engineering, school of Chemical, Environmental and organic technology and expertise, Dalian college of know-how, China.

Dr. Sheng Dai is a company Fellow and crew chief within the Chemical Sciences department at Oak Ridge nationwide Laboratory (ORNL) and a Professor of Chemistry on the college of Tennessee, USA.

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Lu et al. 1 Porous Carbons Replicated from Porous Silica Porous carbons replicated from porous silica are extensively investigated. For example, Lindén and coworkers prepared hierarchical porous monolithic carbon containing wormholelike mesopores and macropores [88–90]. In a similar way, Shi et al. [91] prepared a novel porous carbon with co-continuous structure and trimodal pores using a hierarchical silica monolith as the template. Hu et al. [92] synthesized hierarchically porous carbons with a relatively higher graphite-like ordered carbon structure by using meso-/macroporous silica as a template and using mesophase pitch as a precursor.

Thus, synthetic polymers-based porous carbons are extensively investigated nowadays. The strategies toward advanced porous carbons mainly rely on protocols such as precursor-controlled pyrolysis, rational synthesis by chemical vapor deposition (CVD), templating and surface-mediated synthesis, self-assembly, surfacegrafting and modification, and others. The CO2 capture performances are strongly depending on these microstructure features. This can be achieved by a designed synthesis methodology. Thus, a precise controlled synthesis on carbon structure will provide a promising opportunity to authentically understand the physical and chemical properties of carbon materials from molecular level and thereby efficiently guide practical applications.

For example, Lindén and coworkers prepared hierarchical porous monolithic carbon containing wormholelike mesopores and macropores [88–90]. In a similar way, Shi et al. [91] prepared a novel porous carbon with co-continuous structure and trimodal pores using a hierarchical silica monolith as the template. Hu et al. [92] synthesized hierarchically porous carbons with a relatively higher graphite-like ordered carbon structure by using meso-/macroporous silica as a template and using mesophase pitch as a precursor.

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