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独立支撑的碳纳米管/石墨烯杂化纸作为下一代吸附剂。

Free-standing carbon nanotube/graphene hybrid papers as next generation adsorbents.

机构信息

Department of Chemical Engineering, Rochester Institute of Technology, Rochester, NY 14623, USA.

出版信息

Nanoscale. 2014 Jun 21;6(12):6322-7. doi: 10.1039/c4nr01028k.

Abstract

The adsorption of a series of aromatic compounds from aqueous solution onto purified, free-standing single-walled carbon nanotube/graphene nanoplatelet hybrid papers is studied both experimentally and theoretically. Experimental data is obtained via changes in optical absorption spectra of the aqueous solutions and is used to extract all parameters required to implement a semi-empirical mass-transfer model. Agreement between experiment and theory is excellent and data from all compounds can be cast on a universal adsorption curve. Results indicate that the rate of adsorption and long-time capacity of many aromatic compounds on hybrid paper adsorbent significantly exceeds that of activated carbon by at least an order of magnitude. The combination of carbon nanotubes and graphene also promotes on the order of a 25% improvement in adsorption rates and capacities than either component alone. Hybrid nanocomposites show significant promise as adsorption materials used for environmental remediation efforts.

摘要

从水溶液中吸附一系列芳香族化合物到纯化的、独立的单壁碳纳米管/石墨烯纳米片混合纸的实验和理论研究。通过水溶液的光吸收光谱的变化获得实验数据,并用于提取实施半经验传质模型所需的所有参数。实验与理论之间具有极好的一致性,并且所有化合物的数据都可以绘制在通用吸附曲线上。结果表明,许多芳香族化合物在混合纸吸附剂上的吸附速率和长时间容量明显超过活性炭至少一个数量级。碳纳米管和石墨烯的组合也促进了吸附速率和容量的提高,分别比单独的任何一种成分提高了约 25%。混合纳米复合材料作为用于环境修复工作的吸附材料具有很大的应用前景。

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