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Release Kinetics of Multiwalled Carbon Nanotubes Deposited on Silica Surfaces: Quartz Crystal Microbalance with Dissipation (QCM-D) Measurements and Modeling

机译:沉积在二氧化硅表面的多壁碳纳米管的释放动力学:具有耗散的石英晶体微天平(QCM-D)测量和建模

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摘要

Understanding the kinetics of the release of carbon nanotubes(CNTs) from naturally occurring surfaces is crucial for the prediction of the environmental fate and transport of CNTs. In this study, the release kinetics of multiwalled CNTs (MVVNTs) from silica surfaces was investigated using a quartz crystal microbalance with dissipation monitoring (QCM-D). MWNTs were first deposited on silica surfaces under favorable deposition conditions (1.50 mM CaCl_2 and pH 7.1) and the deposited MWNTs were then rinsed at different electrolyte solutions to induce the release of MWNTs from the primary energy minimum. The kinetics of MWNT release was shown to be first order with respect to the deposited MWNTs when complete release took place. A model that accounts for the releasable and unreleasable components of MWNTs was used to fit the experimental data in order to derive the release rate coefficients. When the CaCl_2 concentration in the eluent was decreased, a larger fraction of deposited MWNTs was released and the release rate coefficient of the releasable MWNTs also increased. The rise in the surface charges of both MWNTs and silica surfaces with the drop in CaCl_2 concentration likely resulted in the decrease in the height of the energy barrier, thus facilitating the release of the nanotubes. Moreover, when the initial surface concentrations of deposited MWNTs were over 1000 ng/cm~2 , the release rate coefficient was lower than expected. The reduced release kinetics was likely due to the formation of large surface-bound MWNT clusters which had considerably lower difiusion coefficients than dispersed MWNTs or MWNT aggregates.
机译:了解碳纳米管从自然表面释放的动力学对于预测碳纳米管的环境命运和运输至关重要。在这项研究中,使用带耗散监测的石英晶体微量天平(QCM-D),研究了多壁CNT(MVVNT)从二氧化硅表面的释放动力学。首先将MWNTs在有利的沉积条件(1.50 mM CaCl_2和pH 7.1)下沉积在二氧化硅表面上,然后在不同的电解质溶液中冲洗沉积的MWNTs,以使MWNTs从一次能量最小值释放出来。当完全释放发生时,相对于沉积的MWNT,显示出MWNT释放的动力学是一级的。为了说明释放速率系数,使用了一个模型,该模型考虑了MWNT的可释放和不可释放成分。当洗脱液中的CaCl_2浓度降低时,会释放更多的沉积MWNT,并且可释放MWNT的释放速率系数也会增加。随着CaCl_2浓度的下降,MWNTs和二氧化硅表面的表面电荷的增加可能导致能垒高度的降低,从而促进纳米管的释放。此外,当沉积的MWNTs的初始表面浓度超过1000 ng / cm〜2时,释放速率系数低于预期。释放动力学的降低可能是由于形成了较大的表面结合的MWNT团簇,该团簇的扩散系数比分散的MWNTs或MWNT聚集体低得多。

著录项

  • 来源
    《Environmental Science & Technology》 |2014年第8期|4406-4413|共8页
  • 作者

    Peng Yi; Kai Loon Chen;

  • 作者单位

    Department of Geography and Environmental Engineering, Johns Hopkins University, Baltimore, Maryland 21218-2686,Department of Environmental Sciences, Connecticut Agricultural Experiment Station, New Haven, Connecticut 06504-1106;

    Department of Geography and Environmental Engineering, Johns Hopkins University, Baltimore, Maryland 21218-2686;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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