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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Structural properties and reactivities of amino-modified silica fume solid sorbents for low-temperature CO2 capture
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Structural properties and reactivities of amino-modified silica fume solid sorbents for low-temperature CO2 capture

机译:用于低温二氧化碳捕集的氨基改性硅粉固体吸附剂的结构性质和反应活性

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In this work, diisopropanolamine (DIPA) and 3-aminopropyltriethoxysilane (APTS) were respectively supported on hydrated silica fume particles by the impregnation method. The amino-modified silica fume solid sorbents were characterized, and their reactivities toward CO2 were evaluated using a thermogravimetric analyzer. All the prepared solid sorbents exhibited a type IV isotherm with a hysteresis loop of type H3. Due to the blocking of micropores and some mesopores, the specific surface areas of the sorbents were significantly reduced when DIPA or APTS was supported. The reactivity of DIPA/silica fume sorbents toward CO2 was higher than that of APTS/silica fume sorbents. The DIPA/silica fume sorbent prepared at a weight ratio of 1.0/1 had a maximum CO2 capture capacity of 1.25 mmol/g sorbent at a relatively low temperature of 30 °C where a CO2/N molar ratio of 0.41 was achieved. The incomplete amino utilizations are mostly due to the thermodynamic equilibrium at the tested temperatures and partly due to the limitations of CO2 mass transfer in the sorbents. Furthermore, the multiple adsorption/desorption cycling results indicate that the solid sorbents are quite stable and regenerable.
机译:在这项工作中,通过浸渍法将二异丙醇胺(DIPA)和3-氨基丙基三乙氧基硅烷(APTS)分别负载在水合硅粉颗粒上。对氨基改性的硅粉固体吸附剂进行了表征,并使用热重分析仪评估了其对二氧化碳的反应性。所有制备的固体吸附剂均表现出IV型等温线和H3型磁滞回线。由于微孔和一些中孔的阻塞,当支持DIPA或APTS时,吸附剂的比表面积显着降低。 DIPA /硅粉吸附剂对CO2的反应性高于APTS /硅粉吸附剂。以1.0 / 1的重量比制备的DIPA /硅粉吸附剂在30°C的相对较低温度下的最大CO2捕集能力为1.25 mmol / g吸附剂,其中CO2 / N摩尔比为0.41。氨基利用不完全主要是由于在测试温度下的热力学平衡,部分是由于吸附剂中CO2传质的限制。此外,多次吸附/解吸循环结果表明固体吸附剂非常稳定且可再生。

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