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Synthesis of polybenzoxazine based nitrogen-rich porous carbons for carbon dioxide capture

机译:基于合成polybenzoxazine的富氮多孔碳的二氧化碳捕获

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Nitrogen-rich porous carbons (NPCs) were synthesized from 1,5-dihydroxynaphthalene, urea, and formaldehyde based on benzoxazine chemistry by a soft-templating method with KOH chemical activation. They possess high surface areas of 856.8-1257.8 m(2) g(-1), a large pore volume of 0.15-0.65 cm(3) g(-1), tunable pore structure, high nitrogen content (5.21-5.32 wt%), and high char yields. The amount of the soft-templating agent F127 has multiple influences on the textural and chemical properties of the carbons, affecting the surface area and pore structure, impacting the compositions of nitrogen species and resulting in an improvement of the CO2 capture performance. At 1 bar, high CO2 uptake of 4.02 and 6.35 mmol g(-1) at 25 and 0 degrees C was achieved for the sample NPC-2 with a molar ratio of F127 : urea = 0.010 : 1. This can be attributed to its well-developed micropore structure and abundant pyridinic nitrogen, pyrrolic nitrogen and pyridonic nitrogen functionalities. The sample NPC-2 also exhibits a remarkable selectivity for CO2/N-2 separation and a fast adsorption/desorption rate and can be easily regenerated. This suggests that the polybenzoxazine-based NPCs are desirable for CO2 capture because of possessing a high micropore surface area, a large micropore volume, appropriate pore size distribution, and a large number of basic nitrogen functionalities.
机译:富氮多孔碳(npc)合成1,5-dihydroxynaphthalene,尿素,基于苯并恶嗪化学和甲醛由一个极富与KOH化学方法激活。856.8 - -1257.8 m (2) g(1),一个大孔隙体积0.15 - -0.65厘米(3)g(1),可调的孔隙结构,高氮含量(5.21 - -5.32 wt %)和高char收益率。代理F127有多重影响结构和化学性质的碳,影响表面积和孔隙结构,影响氮物种的组成导致二氧化碳的改进捕获性能。4.02和6.35更易与g(1)在25和0摄氏度实现示例NPC-2摩尔比F127:尿素= 0.010:1。由于其高度发达的微孔结构和丰富pyridinic氮、pyrrolic氮和pyridonic氮功能。二氧化碳/ n - 2选择性分离和显著并且可以快速吸附/解吸率容易再生。对二氧化碳polybenzoxazine-based npc是可取的因为拥有高微孔捕获表面积,一个大的微孔体积,适当的孔隙大小分布,和一个大氮的数量基本功能。

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