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Nitric acid modification of activated carbon produced from waste tea and adsorption of methylene blue and phenol

机译:废茶产生的活性炭的硝酸改性及对亚甲基蓝和苯酚的吸附

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Nitric acid (HNO_3) modification of activated carbon (AC) prepared from waste tea with the assistance of microwave activation was studied. Unmodified and modified AC samples were characterised in terms of structural, morphological and chemical properties. Methylene blue (MB) and phenol adsorption from aqueous solution were investigated to determine the effect of modification on the adsorption performances. Modification process increased the oxygen containing groups on the surface of the AC. The adsorption of MB and phenol on the modified AC was quite different. It is reported that the adsorption of these contaminants highly depends on electrostatic and dispersion interaction between the contaminant and the surface property of the AC. Formation of carboxylic groups causes two different effects on MB adsorption. One involves the weakening of dispersion forces which reduces the adsorption. The other involves the enhancement of electrostatic force and lead to higher adsorption capacity. For phenol adsorption, it is proposed that absence of basic surface functional groups and existence of carboxylic groups have predominant factors which hinder the adsorption.
机译:研究了废茶中微波活化对硝酸(HNO_3)活性炭(AC)的改性作用。根据结构,形态和化学性质对未改性和改性的交流样品进行了表征。研究了亚甲基蓝(MB)和水溶液中苯酚的吸附情况,以确定改性对吸附性能的影响。改性过程增加了AC表面上的含氧基团。 MB和苯酚在改性AC上的吸附差异很大。据报道,这些污染物的吸附高度依赖于污染物与AC的表面性质之间的静电和分散相互作用。羧基的形成对MB吸附产生两种不同的影响。一种涉及减弱分散力,这降低了吸附。另一个涉及增强静电力并导致更高的吸附容量。对于苯酚吸附,提出不存在碱性表面官能团和存在羧基是阻碍吸附的主要因素。

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