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Different Ways to Regenerate an Activated Carbon: Comparison between an Activated Carbon from Cork and a Commercial Carbon

机译:再生活性炭的不同方法:来自软木的活性炭和商业碳的比较

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Activated carbons are materials extensively used to remove a variety of pollutants in different media. The porous structure, the surface chemistry and the type of adsorptive determine the potential of activated carbons as an adsorbent material. However, in a more global perspective it is necessary to consider other factors such as the economical viability of production and reuse. This last factor depends on the capacity of regeneration of the activated carbons after each application. Following this guideline, the objective of this work was to evaluate the capacity of regeneration of some specific activated carbons prepared from cork oak wastes, used in the adsorption of phenolic compounds in the liquid phase. Simultaneously, the performance of our carbons are compared with the behaviour of a commercial carbon (Norit SX plus). The experimental procedure consists in the adsorption of one phenolic compound, followed by the regeneration of the adsorbent, succeeding a series of adsorption/regeneration processes. The methods of regeneration used were simple washing with distilled water under magnetic stirring, washing with ultrasound and thermal regeneration under inert atmosphere. The performance of the activated carbons was strongly dependent on their nature and the regeneration method applied.
机译:活性炭是广泛用于去除不同介质中各种污染物的材料。多孔结构,表面化学性质和吸附类型决定了活性炭作为吸附材料的潜力。但是,从更全球化的角度来看,有必要考虑其他因素,例如生产和再利用的经济可行性。最后一个因素取决于每次应用后活性炭的再生能力。遵循该准则,这项工作的目的是评估由软木橡木废料制得的某些特定活性炭的再生能力,这些活性炭用于液相中酚类化合物的吸附。同时,我们将碳的性能与商用碳(Norit SX plus)的性能进行了比较。实验程序包括一种酚类化合物的吸附,然后是吸附剂的再生,随后是一系列的吸附/再生过程。再生的方法是在磁力搅拌下用蒸馏水简单洗涤,用超声波洗涤和在惰性气氛下进行热再生。活性炭的性能在很大程度上取决于其性质和所采用的再生方法。

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