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阴离子和阳离子染料在具有不同表面化学性质的活性炭上的吸附。

Adsorption of anionic and cationic dyes on activated carbons with different surface chemistries.

作者信息

Faria P C C, Orfão J J M, Pereira M F R

机构信息

Departamento de Engenharia Química, Faculdade de Engenharia da Universidade do Porto, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal.

出版信息

Water Res. 2004 Apr;38(8):2043-52. doi: 10.1016/j.watres.2004.01.034.

Abstract

The influence of the surface chemical groups of an activated carbon on the removal of different classes of dyes is evaluated. Starting from the same material (NORIT GAC 1240 PLUS), the following treatments were carried out in order to produce a series of samples with different surface chemical properties but with no major differences in their textural properties: oxidation in the liquid phase with 6M HNO(3) and 10 M H(2)O(2) (acid materials) and heat treatment at 700 degrees C in H(2) or N(2) flow (basic materials). The specific micropores volume and mesopores surface area of the materials were obtained from N(2) adsorption equilibrium isotherms at 77K. The surface chemistry was characterised by temperature programmed desorption, by the determination of the point of zero charge (pH(pzc)) and by the evaluation of the acidity/basicity of the samples. Elemental and proximate analyses were also carried out. Equilibrium isotherms of selected dyes (an acid, a basic and a reactive dye) on the mentioned samples were obtained and the results discussed in relation to their surface chemistry. In general, the Langmuir model provided the best fit for the adsorption data. It is shown that the surface chemistry of the activated carbon plays a key role in dye adsorption performance. The basic sample obtained by thermal treatment under H(2) flow at 700 degrees C is the best material for the adsorption of all the tested dyes.

摘要

评估了活性炭表面化学基团对不同种类染料去除效果的影响。从同一种材料(诺芮特GAC 1240 PLUS)出发,进行了以下处理,以制备一系列具有不同表面化学性质但结构性质无显著差异的样品:用6M HNO₃和10M H₂O₂进行液相氧化(酸性材料)以及在700℃下于H₂或N₂气流中进行热处理(碱性材料)。材料的比微孔体积和中孔表面积通过77K下的N₂吸附平衡等温线获得。通过程序升温脱附、零电荷点(pH(pzc))的测定以及样品酸度/碱度的评估来表征表面化学性质。还进行了元素分析和近似分析。获得了所选染料(一种酸性染料、一种碱性染料和一种活性染料)在上述样品上的平衡等温线,并根据其表面化学性质对结果进行了讨论。一般来说,朗缪尔模型对吸附数据拟合最佳。结果表明,活性炭的表面化学性质在染料吸附性能中起关键作用。在700℃下于H₂气流中进行热处理得到的碱性样品是所有测试染料吸附的最佳材料。

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