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Novel porous carbon materials with ultrahigh nitrogen contents for selective CO2 capture

机译:具有高氮含量的新型多孔碳材料,可选择性地捕获二氧化碳

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摘要

Nitrogen-doped carbon materials were prepared by a nanocasting route using tri-continuous mesoporous silica IBN-9 as a hard template. Rationally choosing carbon precursors and carefully controlling activation conditions result in an optimized material denoted as IBN9-NC1-A, which possesses a very high nitrogen doping concentration (~13 wt%) and a large surface area of 890 m~2 g~(-1) arising from micropores (<1 nm). It exhibits an excellent performance for CO2 adsorption over a wide range of CO2 pressures. Specifically, its equilibrium CO2 adsorption capacity at 25 °C reaches up to 4.50 mmol ~(-1) at 1 bar and 10.53 mmol g~(-1) at 8 bar. In particular, it shows a much higher CO2 uptake at low pressure (e.g. 1.75 mmol g~(-1) at 25 °C and 0.2 bar) than any reported carbon-based materials, owing to its unprecedented nitrogen doping level. The high nitrogen contents also give rise to significantly enhanced CO2/N2 selectivities (up to 42), which combined with the high adsorption capacities, make these new carbon materials promising sorbents for selective CO2 capture from power plant flue gas and other relevant applications.
机译:使用三连续中孔二氧化硅IBN-9作为硬模板,通过纳米浇铸法制备了氮掺杂碳材料。合理地选择碳前驱物并仔细控制活化条件,可得到一种名为IBN9-NC1-A的优化材料,该材料具有很高的氮掺杂浓度(〜13 wt%)和大的890 m〜2 g〜(- 1)来自微孔(<1 nm)。它在很宽的CO2压力范围内均具有出色的CO2吸附性能。具体而言,其在25°C下的平衡CO2吸附容量在1 bar下达到4.50 mmol〜(-1),在8 bar下达到10.53 mmol g〜(-1)。特别地,由于其前所未有的氮掺杂水平,它在低压下(例如在25°C和0.2 bar下,例如1.75 mmol g〜(-1))显示出更高的二氧化碳吸收率。高氮含量还导致CO2 / N2选择性大大提高(高达42),再加上高吸附能力,使得这些新型碳材料有望成为用于从电厂烟气和其他相关应用中选择性捕集CO2的吸附剂。

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