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Carbon-60 nanoparticles: Adsorption and desorption of organic contaminants, and transport in soil.

机译:碳60纳米颗粒:有机污染物的吸附和解吸,以及在土壤中的运输。

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摘要

C60 is a new form of carbon with unique properties due to its small size. Since it has been predicted that C60 will be manufactured by tons, there is no doubt that it will ultimately find their way to the environment. Because of the insolubility of C60 in water, one might expect that it would not enter groundwater in great quantities. However, "nC60" (water-stable C60 aggregates) can be formed in water by exchange of solvents, or simply by stirring, indicating that C60 might be readily available in groundwater. Therefore it is necessary to investigate the transport of C60 particles and their interactions with other environmental contaminants.; The adsorption and desorption of naphthalene and 1,2-dichlorobenzene, two common organic contaminants, with nC60 in water was investigated and sorption hysteresis was observed. Naphthalene adsorption-desorption with activated carbon particles and soil organic carbon was also conducted. Similar sorption hysteresis was observed. Experimental data were fitted with different sorption models. The Dual-Equilibrium desorption model fits experimental data well. Each DED model fitting parameter has similar values for all three forms of carbon, indicating the possibility to predict the carbonaceous nanomaterial-contaminant interactions from well known carbon materials.; The transport of nC60 through a soil column was characterized by flow-through apparatus. It was observed in the transport study that nC 60 have limited mobility in the soil column at typical groundwater velocity, but they were more mobile at higher velocities. The effect of adsorbed nC 60 on naphthalene is similar to that of soil organic carbon. This study provides useful information for the environmental risk assessment of C 60 fullerene.
机译:C60由于体积小,是一种具有独特性能的新型碳。由于已经预测到C60将以吨为单位制造,因此毫无疑问,C60最终会进入环境。由于C60在水中的不溶性,人们可能会期望它不会大量进入地下水。但是,“ nC60”(水稳定的C60聚集体)可以在水中通过交换溶剂或简单地通过搅拌而形成,表明C60在地下水中可能容易得到。因此,有必要研究C60颗粒的运输及其与其他环境污染物的相互作用。研究了nC60在水中对萘和1,2-二氯苯(一种常见的有机污染物)的吸附和解吸现象,并观察到了吸附滞后现象。还进行了活性炭颗粒和土壤有机碳对萘的吸附-解吸。观察到相似的吸附滞后。实验数据适合不同的吸附模型。双平衡解吸模型很好地拟合了实验数据。对于所有三种形式的碳,每个DED模型拟合参数都具有相似的值,这表明有可能从众所周知的碳材料中预测碳质纳米材料与污染物的相互作用。 nC60通过土壤柱的运输用流通设备进行了表征。在运输研究中观察到,在典型的地下水速度下,nC 60在土壤柱中的迁移率有限,但在较高的速度下,它们的迁移率更高。 nC 60对萘的吸附作用与土壤有机碳相似。这项研究为评估C 60富勒烯的环境风险提供了有用的信息。

著录项

  • 作者

    Cheng, Xuekun.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Environmental Sciences.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学基础理论;环境污染及其防治;
  • 关键词

  • 入库时间 2022-08-17 11:40:36

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