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Effect of microwave and conventional regeneration on the microporous and mesoporous network and on the adsorptive capacity of activated carbons

机译:微波和常规再生对微孔和中孔网络以及活性炭吸附能力的影响

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摘要

The effect of different heating mechanisms on the porous network of activated carbons (AC) previously exhausted with phenol has been studied. To this end, thermal treatment of the exhausted AC was performed using two experimental devices: a single mode microwave device operating at 2450 MHz and a conventional electric furnace. By employing microwave energy, the regeneration time was considerably shortened compared to conventional thermal heating. Moreover, microwave heating preserved the porous structure of the regenerated AC more efficiently than treatment in a conventional device. In both cases successive regeneration cycles reduced the microporosity of the activated carbons. However, conventional heating shifted the micropore size distribution to pores of narrower sizes. The apparent BET surface areas were also reduced significantly over the regeneration cycles. A loss of the adsorptive capacity of the carbon material was observed after six adsorption–desorption cycles in both systems. The phenol adsorption capacities decreased to a greater extent in the samples regenerated in the electric furnace.
机译:研究了不同加热机制对以前用苯酚排出的活性炭(AC)多孔网络的影响。为此,使用两个实验设备对废旧的AC进行热处理:一个工作在2450 MHz的单模微波设备和一个传统的电炉。与常规热加热相比,通过利用微波能量,再生时间大大缩短。此外,与常规装置中的处理相比,微波加热更有效地保持了再生AC的多孔结构。在两种情况下,连续的再生循环都降低了活性炭的微孔率。然而,常规加热将微孔尺寸分布转移至更窄尺寸的孔。在再生循环中,表观的BET表面积也显着降低。在两个系统中经过六个吸附-解吸循环后,均观察到碳材料的吸附能力下降。在电炉中再生的样品中,苯酚的吸附能力有较大程度的下降。

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