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Synthesis of nitrogen doped mesoporous carbons for carbon dioxide capture

机译:氮捕获的介孔碳的合成以捕集二氧化碳

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Nitrogen doped mesoporous carbons were prepared by nanocasting method at varying carbonization temperatures followed by characterization in terms of their structural, textural and chemical properties. Melamine-formaldehyde resin and mesoporous silica were used as the polymeric precursor and hard template respectively. Meso-structural ordering of the template was retained by the prepared carbons as suggested by the structural analysis. Evolution of nitrogen and oxygen functionalities along with textural properties of nitrogen doped carbons were regulated by the carbonization temperature. The prepared carbons obtained by carbonization at 700 degrees C exhibited a maximum surface area of 266 m(2) g(-1) along with a nitrogen content up to 21 weight%. CO2 adsorption was studied in a fixed-bed column at several temperatures (30 to 100 degrees C) and CO2 concentrations (5 to 12.5%). Adsorbent reusability was examined by carrying out multiple adsorption-desorption cycles. MF-700 showed the highest CO2 adsorption capacity of 0.83 mmol g(-1) at 30 degrees C. CO2 adsorption kinetics were investigated by fitting experimental CO2 uptake data to different adsorption kinetic models, out of which the fractional order model was found to fit over the complete adsorption range with the error% between experimental and model predicted data within the range of 5%. In addition, the isosteric heat of adsorption was estimated to be around 17 kJ mol(-1), confirming the occurrence of the physiosorption process.
机译:在不同的碳化温度下,通过纳米铸造法制备了氮掺杂的介孔碳,然后对其结构,结构和化学性质进行了表征。三聚氰胺甲醛树脂和中孔二氧化硅分别用作聚合物前体和硬模板。模板的细观结构排序被结构分析所建议的碳保留。碳化温度调节着氮和氧官能团的演变以及掺杂氮的碳的织构性质。通过在700摄氏度下碳化获得的制备碳具有266 m(2)g(-1)的最大表面积,并且氮含量高达21 wt%。在固定床色谱柱中,在几种温度(30至100摄氏度)和CO2浓度(5至12.5%)下研究了CO2吸附。通过进行多次吸附-解吸循环来检查吸附剂的可重复使用性。 MF-700在30摄氏度下的最高CO2吸附容量为0.83 mmol g(-1)。通过将实验性CO2吸收数据拟合到不同的吸附动力学模型,研究了CO2吸附动力学,其中分数阶模型适合在整个吸附范围内,实验和模型预测数据之间的误差%在5%的范围内。此外,估计的等温吸附热约为17 kJ mol(-1),证实了物理吸附过程的发生。

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