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Zeolite-cage-lock strategy for in situ synthesis of highly nitrogen-doped porous carbon for selective separation of carbon dioxide gas

机译:沸石笼锁策略原位合成高氮掺杂多孔碳以选择性分离二氧化碳气体

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摘要

Nitrogen-doped porous carbon (NPC) was prepared by directly carbonizing zeolite ZSM-39 containinga structure-directing agent, tetramethylammonium chloride (TMACl), which also acted as a source of Cand N for NPC. The cage-like pore of zeolite ZSM-39 acted as an ideal space for immobilizing the C andN species. The obtained NPCs have a high N content up to 18.14%. The quaternary N of template TMAClwas transformed into pyridinic and pyrrolic/pyridonic N during the carbonization. NPCs were suitable forselective adsorption of CO2 because of their unique ultra-micropores and abundant basic sites. Theadsorption selectivity of CO2 over N2 was more than 12.1 (molar ratio). The CO2 adsorption capacity ofthe unit surface area for a NPC-723 sample was calculated as 26.6 mmol m2 at 0.93 bar and 273 K,which is one of the highest values among carbon adsorbents. Its excellent selectivity makes the NPCa good candidate for separating low concentrations of CO2 in the purification of gas mixtures.
机译:氮掺杂多孔碳(NPC)是通过将含有结构导向剂四甲基氯化铵(TMAC1)的ZSM-39沸石直接碳化而制得的,该沸石也用作NPC的Cand N来源。 ZSM-39沸石的笼状孔是固定C和N物种的理想空间。所获得的NPC具有高达18.14%的高N含量。在碳化过程中,模板TMAC1的季氮被转化为吡啶和氮/吡咯烷氮。 NPC由于其独特的超微孔和丰富的碱性位点而适合于CO2的选择性吸附。 CO 2对N 2的吸附选择性大于12.1(摩尔比)。 NPC-723样品在0.93 bar和273 K下的单位表面积的CO2吸附容量计算为26.6 mmol m2,这是碳吸附剂中最高的值之一。其出色的选择性使NPCa成为在净化混合气体中分离低浓度CO2的理想选择。

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