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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Comparative studies of sorption of phenolic compounds onto carbon-encapsulated iron nanoparticles, carbon nanotubes and activated carbon
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Comparative studies of sorption of phenolic compounds onto carbon-encapsulated iron nanoparticles, carbon nanotubes and activated carbon

机译:碳包铁纳米颗粒,碳纳米管和活性炭吸附酚类化合物的比较研究

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摘要

The systematic comparative adsorption studies of three phenolic compounds (phenol, 2-chlorophenol and 4-chlorophenol) from aqueous solutions onto three types of carbon sorbents are presented. The equilibrium sorption studies along with sorption kinetics were investigated onto carbon-encapsulated iron nanoparticles, multi-wall carbon nanotubes and granulated activated carbon. These carbon sorbents have significantly different morphological and textural properties. Their surface area varied between 36 and 1187 m(2) g(-1). The highest adsorption capacity (280-550 mg/g) was found for activated carbon. The uptakes of adsorbates onto carbon nanotubes and carbon-encapsulated iron nanoparticles were substantially lower, i.e. 24-87 mg/g and 5-11 mg/g, respectively. The performed sorption kinetics studies revealed that the sorption kinetic rates for carbon nanotubes and carbon-encapsulated iron nanoparticles are 2-3 orders of magnitude larger (2-10 x 10(-2) g mg(-1) min(-1)) in comparison to activated carbon (1.9-4.5 x 10(-4) g mg(-1) min(-1)). The sorption performance and sorption kinetics were systematically discussed in the frames of morphology and textural properties of sorbents and the properties of adsorbates. Additionally, it was demonstrated that the sorption capacity of carbon nanotubes and carbon-encapsulated iron nanoparticles can be largely improved by the post-synthesis activation process. In this case the adsorption capacities increased even 2-7 times. The spent sorbents were regenerated in acetone. It was also found that carbon nanotubes and carbon-encapsulated iron nanoparticles retain up to 65% of their pristine adsorption performance, whilst the sorption capacity of activated carbon is reduced of 80%. (C) 2014 Elsevier B.V. All rights reserved.
机译:对水溶液中的三种酚类化合物(苯酚,2-氯苯酚和4-氯苯酚)在三种类型的碳吸附剂上进行了系统的比较吸附研究。对碳包封的铁纳米颗粒,多壁碳纳米管和粒状活性炭进行了平衡吸附研究以及吸附动力学。这些碳吸附剂具有明显不同的形态和质地特性。它们的表面积在36至1187 m(2)g(-1)之间变化。发现活性炭具有最高的吸附容量(280-550 mg / g)。吸附剂在碳纳米管和碳包封的铁纳米颗粒上的吸收率显着降低,分别为24-87 mg / g和5-11 mg / g。进行的吸附动力学研究表明,碳纳米管和碳封装的铁纳米颗粒的吸附动力学速率要大2-3个数量级(2-10 x 10(-2)g mg(-1)min(-1))与活性炭相比(1.9-4.5 x 10(-4)g mg(-1)min(-1))。在吸附剂的形貌和组织性质以及被吸附物的性质框架内,系统地讨论了吸附性能和吸附动力学。另外,已经证明,通过后合成活化过程可以大大提高碳纳米管和碳包封的铁纳米颗粒的吸附能力。在这种情况下,吸附能力甚至提高了2-7倍。用过的吸附剂在丙酮中再生。还发现,碳纳米管和碳包裹的铁纳米颗粒保留了其原始吸附性能的高达65%,而活性炭的吸附能力却降低了80%。 (C)2014 Elsevier B.V.保留所有权利。

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