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Carbon Dioxide Adsorption on Porous and Functionalized Activated Carbon Fibers

机译:多孔和官能化活性炭纤维上的二氧化碳吸附

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摘要

Polyacrylonitrile-based activated carbon fibers (ACFs), modified using potassium hydroxide (KOH) or tetraethylenepentamine (TEPA), were investigated for carbon dioxide (CO2) adsorption, which is one of the promising alleviation approaches for global warming. The CO2 adsorption isotherms were measured, and the values of isosteric heat of adsorption were calculated. The results showed that the KOH-modified ACFs exhibited a great deal of pore volume, and a specific surface area of 1565 m2/g was obtained. KOH activation made nitrogen atoms easily able to escape from the surface of ACFs. On the other hand, the surface area and pore volume of ACFs modified with TEPA were significantly reduced, which can be attributed to the closing or blocking of micropores by the N-groups. The CO2 adsorption on the ACF samples was via exothermic reactions and was a type of physical adsorption, where the CO2 adsorption occurred on heterogeneous surfaces. The CO2 uptakes at 1 atm and 25 °C on KOH-activated ACFs reached 2.74 mmole/g. This study observed that microporosity and surface oxygen functionalities were highly associated with the CO2 uptake, implying the existence of O-C coordination, accompanied with physical adsorption. Well cyclability of the adsorbents for CO2 adsorption was observed, with a performance decay of less than 5% over up to ten adsorption-desorption cycles.
机译:使用氢氧化钾(KOH)或四乙基二胺(TEPA)改性的聚丙烯腈基活性炭纤维(ACF)用于二氧化碳(CO2)吸附,这是全球变暖的有希望的缓解方法之一。测量CO 2吸附等温线,并计算吸附的旁剂热值。结果表明,KOH改性的ACFS表现出大量的孔体积,并且获得了1565m 2 / g的比表面积。 KOH活化使氮原子容易能够从ACF的表面逸出。另一方面,用TEPA改性的ACF的表面积和孔体积显着降低,这可以归因于N基团的微孔闭合或阻断。 ACF样品上的CO 2吸附是通过放热反应的,并且是一种物理吸附,其中CO 2吸附在异质表面上。在1个atm和25℃下的CO 2上唇在KOH活化的ACF上达到2.74毫摩尔/克。该研究观察到微孔孔隙和表面氧官能团与CO2吸收高度相关,暗示了O-C协调的存在,伴随物理吸附。观察到CO 2吸附的吸附剂的良好可释放性,性能衰减小于最多10个吸附 - 解吸循环。

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