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Development of activated carbon from vine shoots by physical and chemical activation methods. Some insight into activation mechanisms

机译:通过物理和化学活化方法从藤条中产生活性炭。对激活机制的一些见解

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Activated carbons (ACs) are prepared from vine shoots (VS) by the method of physical activation in air, CO2 and steam atmospheres and by the method of chemical activation with H3PO4, ZnCl2 and KOH aqueous solutions. The ACs were characterized texturally by N2 adsorption at - 196 °C, mercury porosimetry, and density measurements. The method of chemical activation has been proved to be more effective than the method of physical activation to prepare ACs with a well-developed porosity. ACs with high micro- and mesopore volumes are prepared with ZnCl2 and H3PO4. Using ZnCl2, the volume of micropores is 0.62 cm~3g~(-1) and the volume of mesopores is 0.81 cm g~(-1). A greater development of macroporosity is obtained by KOH activation. The volume of macropores is as high as 1.13 cm~3 g~(-1) for the resulting AC. Yield of the process of preparation of the ACs is low for the method of chemical activation. Some insights into the performance of the activating agents in the activation process are provided.
机译:活性炭(ACs)由藤芽(VS)通过在空气,CO2和蒸汽气氛中进行物理活化的方法以及通过H3PO4,ZnCl2和KOH水溶液进行化学活化的方法制备。通过在-196°C下的N2吸附,水银孔隙率法和密度测量对AC进行结构表征。事实证明,化学活化方法比物理活化方法更有效,以制备具有良好孔隙率的AC。用ZnCl2和H3PO4制备高微孔和中孔体积的AC。使用ZnCl2,微孔的体积为0.62cm〜3g〜(-1),中孔的体积为0.81cm〜g〜(-1)。通过KOH活化获得大孔隙度的更大发展。所得AC的大孔体积高达1.13 cm〜3 g〜(-1)。对于化学活化方法,制备AC的过程的产率低。提供了一些有关活化过程中活化剂性能的见解。

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