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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Amidoxime-functionalized microcrystalline cellulose-mesoporous silica composites for carbon dioxide sorption at elevated temperatures
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Amidoxime-functionalized microcrystalline cellulose-mesoporous silica composites for carbon dioxide sorption at elevated temperatures

机译:mid胺肟官能化的微晶纤维素-介孔二氧化硅复合材料,可在高温下吸附二氧化碳

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摘要

Amidoxime-functionalized microcrystalline cellulose (MCC)-mesoporous silica composites were prepared for the first time by a two-step process. First, microcrystalline cellulose (MCC)-mesoporous silica with cyanopropyl groups (MCC-CP) was obtained by solvent evaporation-induced self-assembly of MCC, tetraethylorthosilicate, and (3-cyanopropyl) triethoxysilane in the presence of a Pluronic P123 triblock copolymer under acidic conditions. In the next step, the resulting material was treated with hydroxylamine hydrochloride to convert cyanopropyl groups into amidoxime functionalities to obtain a mesoporous MCC-AO composite. A series of MCC-CP and MCC-AO samples was examined for CO2 sorption at ambient (25 degrees C) and elevated (120 degrees C) temperatures. While the MCC-CP and MCC-AO samples showed relatively low CO2 uptake under ambient conditions, they performed very well at elevated temperatures (120 degrees C) reaching CO2 sorption capacities of 2.15-2.41 mmol g(-1) (MCC-CP) and 2.84-3.85 mmol g(-1) (MCC-AO). The CO2 sorption capacity of MCC-AO at 120 degrees C exceeds the values reported so far for many other sorbents, which makes this material attractive for CO2 capture in addition to its biocompatibility, biodegradability, non-toxicity, low cost, cycle stability, and good thermal and mechanical stability.
机译:two胺肟官能化的微晶纤维素(MCC)-介孔二氧化硅复合材料是通过两步法首次制备的。首先,在Pluronic P123三嵌段共聚物存在下,通过溶剂蒸发诱导的MCC,原硅酸四乙酯和(3-氰基丙基)三乙氧基硅烷的溶剂蒸发诱导自组装,获得具有氰基丙基的微晶纤维素(MCC)-介孔二氧化硅(MCC-CP)。酸性条件。在下一步中,将所得材料用盐酸羟胺处理以将氰基丙基转化为into肟官能团,从而获得中孔MCC-AO复合物。在环境温度(25摄氏度)和升高的温度(120摄氏度)下,检查了一系列MCC-CP和MCC-AO样品的CO2吸附量。虽然MCC-CP和MCC-AO样品在环境条件下显示出较低的CO2吸收量,但它们在高温(120摄氏度)下表现良好,达到了2.15-2.41 mmol g(-1)(MCC-CP)的CO2吸附能力和2.84-3.85 mmol g(-1)(MCC-AO)。 MCC-AO在120摄氏度时对CO2的吸附能力超过了迄今为止许多其他吸附剂所报告的值,这使得该材料除了具有生物相容性,生物降解性,无毒,低成本,循环稳定性和可吸收性之外,还具有很强的吸引力。良好的热稳定性和机械稳定性。

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