木屑碳材料的结构特性和动力学参数研究。苯酚光解毒的应用

J. Matos, Carol Nahas, L. Rojas, M. Rosales
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引用次数: 2

摘要

以Algarroba木屑为原料,在200 ~ 900℃的CO2或N2气氛下进行热解,得到炭素材料。用表面孔面积、微孔面积、体积孔和平均孔径对碳材料进行表征。本文还介绍了与这些碳材料合成有关的动力学参数(表观恒速率和活化能)的方法。根据Al- garroba木材热降解的动力学数据,验证了三个不同的热解区。第一步是在200 - 350℃之间的初始碳化,第二步是在350 - 600℃之间的广泛碳化,第三步是在高于600℃的温度下形成孔隙。作为碳材料的目标应用,在紫外照射下对苯酚的吸附和光降解结果表明,在TiO2存在下,碳材料在处理污染水体方面具有潜力。
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Texture Properties and Kinetic Parameters Associated to Carbon Materials Obtained from Sawdust of Algarroba Wood. 1. Application in Phenol Photodetoxification
Carbon materials were obtained by pyrolysis of the sawdust of Algarroba wood under CO2 or N2 atmospheres at temperatures from 200oC up to 900oC. Carbon materials were characterized by surface and micropore areas, volume pore and mean pore diameter. An approach of the kinetic parameters (apparent constant-rates and activation energies) as- sociated with the synthesis of these carbon materials is also presented. From the kinetic data of thermal degradation of Al- garroba wood, three different pyrolysis zones were verified. First, an incipient carbonization between 200 up to 350oC, second an extensive carbonization between 350 up to 600oC, and a third step involving the pore formation at temperatures higher than 600oC. As a target application of carbon materials, results of phenol adsorption and phenol photodegradation under UV-irradiation indicated the potential of carbon materials in presence of TiO2 for treatment of polluted waters.
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