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Adsorption Of Phenol From An Aqueous Solution By Selected Apatite Adsorbents: Kinetic Process And Impact Of The Surface Properties

机译:选定磷灰石吸附剂从水溶液中吸附苯酚的动力学过程及其对表面性能的影响

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Batch adsorption experiments were conducted to investigate the removal of phenol from wastewater by addition of three apatites (porous hydroxyapatite (PHAp) and crystalline hydroxyl- (HAp) and fluoroapatite (FAp)). The best performances were obtained with porous hydroxyapatite PHAp, which presented higher adsorption capacities (experimental: 8.2 mg g~(-1); calculated 9.2 mg g~(-1) than HAp and FAp (3-4 mg g~(-1)). Different models of adsorption were used to describe the kinetics data, to calculate corresponding rate constants and to predict the theoretical capacities of apatite surfaces for phenol adsorption. A mechanism of phenol adsorption associating chemisorption and physisorption processes is presented allowing the discussion of the variations in adsorption behavior between these materials in terms of specific surface area and chemical composition. These data suggest that apatites are promising materials for phenol sorption.
机译:通过添加三种磷灰石(多孔羟基磷灰石(PHAp)和结晶性羟基磷灰石(HAp)和氟磷灰石(FAp)),进行分批吸附实验,研究了废水中苯酚的去除方法。多孔羟基磷灰石PHAp具有最佳的吸附性能(实验:8.2 mg g〜(-1);计算值比HAp和FAp(3-4 mg g〜(-1)9.2 mg g〜(-1))。 ))。使用不同的吸附模型描述动力学数据,计算相应的速率常数,并预测磷灰石表面对苯酚的吸附的理论容量。提出了苯酚吸附与化学吸附和物理吸附过程相关的机理,从而讨论了这些材料之间的比表面积和化学组成方面的吸附行为的变化,这些数据表明磷灰石是用于苯酚吸附的有前途的材料。

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