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Pyrolysis of activated carbons exhausted with organic compounds

机译:有机化合物耗尽的活性炭热解

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The regeneration of activated carbons used for the decontamination of water and wastewater polluted with organic compounds related to the pharmaceutical industry, has been studied in this work. To this end, the pyrolysis of exhausted activated carbons was performed in a quartz reactor. The influence of the pyrolysis of saturated activated carbons on their adsorptive capacities and porous structure was evaluated. Textural characterisation of the samples was carried out by helium density, and N_2 and CO_2 adsorption isotherms, at -196 and 0℃, respectively. Consecutive cycles of pyrolysis of activated carbons exhausted with phenol and salicylic acid, generated a widening of the microporosity, and a decrease in the apparent BET surface areas. The adsorptive capacities for phenol retention after a series of adsorption/ pyrolysis cycles were found to decrease drastically. In contrast, consecutive cycles gave higher salicylic acid adsorptive capacities, as compared to phenol. The DTG pyrolysis profiles of the samples saturated with salicylic acid appeared at lower temperatures than those of phenol, which showed two peaks, while those exhausted with salicylic acid only showed one. These results provide evidence of the different adsorption mechanisms of these two pollutants.
机译:在这项工作中,已经研究了活性炭的再生,该活性炭用于对水和废水进行净化处理,该废水被与制药行业有关的有机化合物污染。为此,在石英反应器中进行了耗尽的活性炭的热解。评估了饱和活性炭的热解对其吸附能力和多孔结构的影响。样品的组织结构表征分别通过氦气密度,N_2和CO_2等温线分别在-196和0℃下进行。苯酚和水杨酸耗尽的活性炭的热解连续循环产生了微孔性的扩大和表观BET表面积的减少。发现在一系列的吸附/热解循环之后,苯酚保留的吸附能力急剧下降。相反,与苯酚相比,连续的循环具有更高的水杨酸吸附能力。水杨酸饱和样品的DTG热解曲线出现在比苯酚低的温度下,出现两个峰,而水杨酸耗尽的样品仅出现一个峰。这些结果提供了这两种污染物不同吸附机制的证据。

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