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- W3042947162 abstract "A well-developedporous structure and ultrahigh surface area ofporous carbons are essential for challenging the gas adsorption. Herein,we synthesized biomass-based porous carbon with a facile and effectivelyadjustable pore structure. The maximum surface area of activated carbonis up to 3839 m2 g–1, and high microporesand narrow mesopores (1.94 mL g–1 with d < 3 nm) are obtained. The tailored porous carbons are extensivelyapplied in the energy and environment fields, such as their improvedacetone adsorption, CO2 capture, and light hydrocarbonseparation. The porous carbon exhibits record-high acetone (i.e.,26.2 mmol·g–1 at 18 kPa and 25 °C) andCO2 uptake (i.e., 29.5 mmol·g–1 at30 bar and 25 °C) among reported carbons at relative high pressure.Besides, the UC800 exhibits superior C2H6 andC3H8 uptake of 7.19 and 12.02 mmol·g–1, respectively. The C2H6/CH4 and C3H8/CH4 selectivityof the UC800 are up to 9.1–14.6 and 41.8–63.2, respectively.The simple method can open the door to design and develop highly porouscarbons with a desired porous structure for the gas adsorption application." @default.
- W3042947162 created "2020-07-23" @default.
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- W3042947162 date "2020-07-17" @default.
- W3042947162 modified "2023-10-03" @default.
- W3042947162 title "Activated Porous Carbon with an Ultrahigh Surface Area Derived from Waste Biomass for Acetone Adsorption, CO<sub>2</sub> Capture, and Light Hydrocarbon Separation" @default.
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- W3042947162 doi "https://doi.org/10.1021/acssuschemeng.0c03725" @default.
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