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首页> 外文期刊>ACS Omega >Synthesis, Characterization, and CO2 Uptake of Adsorbents Prepared by Hydrothermal Carbonization of Chitosan
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Synthesis, Characterization, and CO2 Uptake of Adsorbents Prepared by Hydrothermal Carbonization of Chitosan

机译:壳聚糖水热碳化制备的吸附剂的合成,表征和CO2摄取

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摘要

Chitosan, a heteropolysaccharide obtained from the N-deacetylation of chitin, has stood out as a raw material to produce CO_(2) adsorbents. In this work, we report the hydrothermal carbonization (HTC) of chitosan for different times and the potential of the materials for CO_(2) adsorption. Elemental analysis indicated that the carbon weight content increases, whereas the relative amount of oxygen atoms decreases upon increasing the time of HTC. The relative nitrogen content was almost constant, indicating that HTC did not lead to significant loss of nitrogenated compounds. FTIR and ~(13)C MAS/NMR spectra suggest that the structure of the sorbents becomes more aromatic with the increase of HTC time. The thermal properties of HTC materials were similar to that of chitosan, whereas their basicity was less compared to that of the parent chitosan. SEM images did not show significant porosity, which was confirmed by the BET area of the materials, around 2 m~(2)·g~(–1), similar to that of the parent chitosan. The materials were tested for CO_(2) capture at 25 °C and 1 bar; the HTC chitosan adsorbents showed CO_(2) uptakes about 4-fold higher than that of the parent chitosan. The adsorption process was better described by the Freundlich isotherm and the pseudo-second-order kinetic model.
机译:壳聚糖,从甲壳素的N-脱乙酰化获得的杂多糖,被赋予制备CO_(2)吸附剂的原料。在这项工作中,我们报告了壳聚糖的水热碳化(HTC)不同时间和CO_(2)吸附材料的潜力。元素分析表明,碳重含量增加,而在增加HTC的时间后,氧原子的相对量降低。相对氮含量几乎是恒定的,表明HTC没有导致显着的氮化合物损失。 FTIR和〜(13)C MAS / NMR光谱表明吸附剂的结构随着HTC时间的增加而变得更加芳香。 HTC材料的热性质与壳聚糖的热性质相似,而它们的碱度较少与亲本壳聚糖的碱度较少。 SEM图像没有显示出明显的孔隙率,该孔隙率被所述材料的BET区域确认,约2m〜(2)·g〜(1),类似于母壳多糖的含量。将材料在25℃和1巴特捕获CO_(2)捕获; HTC壳聚糖吸附剂显示CO_(2)上升约4倍的高于亲本壳聚糖的吸附。通过Freundlich等温线和伪二阶动力学模型更好地描述了吸附过程。

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