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Morphologic and Surface Characterization of Different Types of Activated Carbon Fibres

机译:不同类型活性炭纤维的形貌和表面表征

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This study provides a comparison of different types of commercially available activated carbon fibres (ACFs). Thus, ACFs in cloth (ACFC) and felt forms (ACFF) with three different surface areas were each analyzed for their pore volumes, pore sizes and pore-size distributions. The fibre morphology and organization was visualized using scanning electron microscopy (SEM). The microporosity of the ACF materials based on nitrogen isotherms, the percentage of micropores by area and volume, the average pore size and the pore-size distribution were also determined. An increase in the surface areas of the ACFC types led to an increase in the total pore volume, micropore volume, micropore area and pore width, but led to a decrease in the percentage of micropores by area and volume. The nitrogen isotherms demonstrated that the surface area dictated the amount of adsorption onto the ACF regardless of the form of the latter. The difference in the volume of smaller micropores between the ACFC and ACFF types may be attributed to the difference in the adsorbent density and the accessibility of the fibre surface to the activating gas during the activation process. An understanding of the pore structure of ACFs by form and surface area is crucial in determining the appropriate specific applications of such adsorbents.
机译:这项研究提供了不同类型的市售活性炭纤维(ACF)的比较。因此,分别分析了具有三种不同表面积的布料中的ACF(ACFC)和毛毡形式(ACFF)的孔体积,孔径和孔径分布。使用扫描电子显微镜(SEM)观察纤维的形态和组织。还确定了基于氮等温线的ACF材料的微孔率,按面积和体积计的微孔百分比,平均孔径和孔径分布。 ACFC类型的表面积增加导致总孔体积,微孔体积,微孔面积和孔宽度增加,但导致微孔按面积和体积的百分比减少。氮等温线表明,表面积决定了吸附在ACF上的量,而与后者的形式无关。 ACFC和ACFF类型之间较小的微孔体积的差异可能归因于活化过程中吸附剂密度的差异以及纤维表面对活化气体的可及性。通过形式和表面积来了解ACF的孔结构对于确定此类吸附剂的适当具体应用至关重要。

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