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活性炭物理化学性质在铅离子吸附中的作用

Roles of physical and chemical properties of activated carbon in the adsorption of lead ions.

作者信息

Zhang K, Cheung W H, Valix M

机构信息

Department of Chemical Engineering, The University of Sydney, Building J01, NSW 2006 Sydney, Australia.

出版信息

Chemosphere. 2005 Aug;60(8):1129-40. doi: 10.1016/j.chemosphere.2004.12.059.

Abstract

Elucidation of the roles of chemical and physical properties of activated carbons is an important basis for the systematic development of adsorbents with optimal properties specific for certain applications. Such an understanding has challenged most researchers and this has been attributed with the difficulty in decoupling the effect of chemical and physical properties that characterize activated carbons. This study proposed empirical modeling in resolving the effects of individual carbon properties in lead adsorption. A model based on lead adsorption and carbon properties including total surface area, mean pore size and heteroatom concentrations has been shown to adequately describe the lead adsorption onto activated carbons prepared from bagasse. To support this investigation a series of activated carbons were prepared from bagasse by physical and by chemical activation techniques. The surface chemical properties of the carbons were inferred from carbon pH and heteroatom concentrations. The physical characterizations of the carbons included total surface area by the BET technique and mean pore size measured using the Horvath-Kawazoe equation. Adsorption tests were conducted using a low concentration of lead (5 ppm) and the solution pH was maintained at 1.0 to maintain lead speciation to the un-complexed Pb(2+) ion. The adequacy of the proposed empirical models was statistically assessed. This form of analysis was shown to provide valuable information in tailor making adsorbents and selecting appropriate adsorbents for lead adsorption.

摘要

阐明活性炭化学和物理性质的作用是系统开发具有特定应用最佳性能吸附剂的重要基础。这种理解对大多数研究人员来说是一个挑战,这归因于难以区分表征活性炭的化学和物理性质的影响。本研究提出了经验模型来解决单个碳性质对铅吸附的影响。一个基于铅吸附和包括总表面积、平均孔径和杂原子浓度在内的碳性质的模型已被证明能够充分描述铅在甘蔗渣制备的活性炭上的吸附。为支持这项研究,通过物理和化学活化技术从甘蔗渣制备了一系列活性炭。通过碳的pH值和杂原子浓度推断碳的表面化学性质。碳的物理表征包括采用BET技术测定的总表面积和使用Horvath-Kawazoe方程测量的平均孔径。使用低浓度的铅(5 ppm)进行吸附试验,并将溶液pH值保持在1.0以维持铅形态为未络合的Pb(2+)离子。对所提出的经验模型的充分性进行了统计评估。这种分析形式被证明在定制吸附剂和选择适合铅吸附的吸附剂方面提供了有价值的信息。

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