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Synthesis of N-rich microporous carbon materials from chitosan by alkali activation using Na_2CO_3

机译:Na_2CO_3碱活化壳聚糖合成富氮微孔碳材料

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The paper presents the first systematic study on the synthesis of nitrogen-rich nanoporous activated carbons by chitosan carbonization in the presence of a hard template (activator), i.e. Na_2CO_3. Carbonization process was carried out in the range of 600-900 ℃ under a flow of nitrogen. The effect of the addition of different volumes of activator and the temperature of carbonization on the development of specific surface area and pore structure (pore volume and median pore diameter) of the activated carbons was investigated. Additionally, the nitrogen content and nitrogen-containing surface species were determined by means of XPS and combustion elemental analysis. The nitrogen content was placed in the range of 2.4-13.1 wt.%. On the grounds of the low-temperature adsorption of nitrogen, it was found that obtained adsorption isotherms were of type-Ⅰ, based on the IUPAC classification, which is typical for microporous materials.
机译:本文介绍了在硬模板(活化剂)即Na_2CO_3存在下通过壳聚糖碳化合成富氮纳米孔活性炭的首次系统研究。在氮气流下于600-900℃范围内进行碳化过程。研究了添加不同体积的活化剂和碳化温度对活性炭比表面积和孔结构(孔体积和中值孔径)发展的影响。此外,通过XPS和燃烧元素分析确定了氮含量和含氮表面物质。氮含量为2.4-13.1重量%。基于氮的低温吸附,基于微孔材料的典型IUPAC分类,发现所获得的吸附等温线为Ⅰ型。

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