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碳点在矿物上的吸附、聚集和沉积行为。

Adsorption, Aggregation, and Deposition Behaviors of Carbon Dots on Minerals.

机构信息

College of Environmental Science and Engineering, North China Electric Power University , Beijing 102206, P. R. China.

Institute of Plasma Physics, Chinese Academy of Sciences , P.O. Box 1126, Hefei, 230031, P. R. China.

出版信息

Environ Sci Technol. 2017 Jun 6;51(11):6156-6164. doi: 10.1021/acs.est.6b06558. Epub 2017 May 9.

Abstract

The increased production of carbon dots (CDs) and the release and accumulation of CDs in both surface and groundwater has resulted in the increasing interest in their research. To assess the environmental behavior of CDs, the interaction between CDs and goethite was studied under different environmental conditions. Electrokinetic characterization of CDs suggested that the ζ-potential and size distribution of CDs were affected by pH and electrolyte species, indicating that these factors influenced the stability of CDs in aqueous solutions. Traditional Derjaguin-Landau-Verwey-Overbeek theory did not fit well the aggregation process of CDs. Results of the effects of pH and ionic strength suggested that electronic attraction dominated the aggregation of CDs. Compared with other minerals, hydrogen-bonding interactions and Lewis acid-base interactions contributed to the aggregation of CDs, in addition to van der Waals and electrical double-layer forces. Adsorption isotherms and microscopic Fourier transformed infrared spectroscopy indicated that chemical bonds were formed between CDs and goethite. These findings are useful to understand the interaction of CDs with minerals, as well as the potential fate and toxicity of CDs in the natural environment, especially in soils and sediments.

摘要

碳点(CDs)产量的增加以及 CDs 在地表水和地下水中的释放和积累,导致人们越来越关注对它们的研究。为了评估 CDs 的环境行为,研究了在不同环境条件下 CDs 与针铁矿之间的相互作用。CDs 的电动特性表明,pH 值和电解质种类影响 CDs 的 ζ 电位和粒径分布,表明这些因素影响 CDs 在水溶液中的稳定性。传统的德加古因-兰德劳-韦尔韦因-奥弗贝克理论并不完全适用于 CDs 的聚集过程。pH 值和离子强度的影响结果表明,电子吸引力主导了 CDs 的聚集。与其他矿物相比,氢键和路易斯酸碱相互作用除了范德华力和双电层力之外,还促进了 CDs 的聚集。吸附等温线和微观傅里叶变换红外光谱表明,CDs 和针铁矿之间形成了化学键。这些发现有助于理解 CDs 与矿物的相互作用,以及 CDs 在自然环境中的潜在命运和毒性,特别是在土壤和沉积物中。

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