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有机化学品在碳纳米管上的吸附机制。

Adsorption mechanisms of organic chemicals on carbon nanotubes.

作者信息

Pan Bo, Xing Baoshan

机构信息

Department of Plant, Soil and Insect Sciences, University of Massachusetts, Amherst, Massachusetts 01003, USA.

出版信息

Environ Sci Technol. 2008 Dec 15;42(24):9005-13. doi: 10.1021/es801777n.

Abstract

Carbon nanotubes (CNTs) have drawn special research attention because of their unique properties and potential applications. This review summarizes the research progress of organic chemical adsorption on CNTs, and will provide useful information for CNT application and risk assessment. Adsorption heterogeneity and hysteresis are two widely recognized features of organic chemical-CNT interactions. However, because different mechanisms may act simultaneously, mainly hydrophobic interactions, pi-pi bonds, electrostatic interactions, and hydrogen bonds, the prediction of organic chemical adsorption on CNTs is not straightforward. The dominant adsorption mechanism is different for different types of organic chemicals (such as polar and nonpolar), thus different models may be needed to predict organic chemical-CNT interaction. Adsorption mechanisms will be better understood by investigating the effects of properties of both CNTs and organic chemicals along with environmental conditions. Another majorfactor affecting adsorption by CNTs is their suspendability, which also strongly affects their mobility, exposure, and risk in the environment. Therefore, organic chemical-CNT interactions as affected by CNT dispersion and suspending merit further experimental research. In addition, CNTs have potential applications in water treatment due to their adsorption characteristics. Thus column and pilot studies are needed to evaluate their performance and operational cost.

摘要

碳纳米管(CNTs)因其独特的性质和潜在应用而受到特别的研究关注。本综述总结了碳纳米管上有机化学吸附的研究进展,并将为碳纳米管的应用和风险评估提供有用信息。吸附非均质性和滞后现象是有机化学物质与碳纳米管相互作用的两个广泛认可的特征。然而,由于不同的机制可能同时起作用,主要是疏水相互作用、π-π键、静电相互作用和氢键,因此预测有机化学物质在碳纳米管上的吸附并非易事。对于不同类型的有机化学物质(如极性和非极性),主导的吸附机制不同,因此可能需要不同的模型来预测有机化学物质与碳纳米管的相互作用。通过研究碳纳米管和有机化学物质的性质以及环境条件的影响,将能更好地理解吸附机制。影响碳纳米管吸附的另一个主要因素是它们的悬浮性,这也强烈影响它们在环境中的迁移性、暴露程度和风险。因此,碳纳米管分散和悬浮对有机化学物质与碳纳米管相互作用的影响值得进一步开展实验研究。此外,由于碳纳米管的吸附特性,它们在水处理中具有潜在应用。因此,需要进行柱实验和中试研究来评估它们的性能和运行成本。

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