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Imine-Linked Polymer Based Nitrogen-Doped Porous Activated Carbon for Efficient and Selective CO2 Capture

机译:基于亚胺连接的聚合物的氮掺杂多孔活性炭,用于有效和选择性CO2捕获

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The preparation of nitrogen-doped activated carbon (NACs) has received significant attention because of their applications in CO2 capture and sequestration (CCS) owing to abundant nitrogen atoms on their surface and controllable pore structures by carefully controlled carbonization. We report high-surface-area porous N-doped activated carbons (NAC) by using soft-template-assisted self-assembly followed by thermal decomposition and KOH activation. The activation process was carried out under different temperature conditions (600-800?°C) using polyimine as precursor. The NAC-800 was found to have a high specific surface area (1900?m(2)?g(-1)), a desirable micropore size below 1?nm and, more importantly, a large micropore volume (0.98?cm(3)?g(-1)). NAC-800 also exhibits a significant capacity of CO2 capture i.e., over 6. 25 and 4.87?mmol?g(-1) at 273?K and 298?K respectively at 1.13?bar, which is one of among the highest values reported for porous carbons so far. Moreover, NAC also shows an excellent separation selectivity for CO2 over N2.
机译:由于它们在CO 2捕获和螯合(CCS)中由于它们的表面和可控孔结构而通过精心控制的碳化,因此在CO 2捕获和螯合(CCS)中的应用而受到显着的关注。通过使用软模板辅助自组装,然后热分解和KOH活化,我们报告高表面积多孔N掺杂的碳(NAC)。使用聚亚胺作为前体在不同温度条件下(600-800℃)下进行活化过程。发现NAC-800具有高比表面积(1900→M(2)〜Δg(-1)),优选的微孔尺寸低于1〜Nm,更重要的是,大微孔体积(0.98Ωcm( 3)?g(-1))。 NAC-800还表现出CO 2捕获的显着容量,即分别在1.13×k和298Ω·k的273Ω·k和298Ω·克(-12.8Ω·k)中,这是报道的最高值之​​一到目前为止,对于多孔碳。此外,NAC还显示出在N 2上的CO 2的优异的分离选择性。

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