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Quantification of carbon nanotubes in different environmental matrices bv a microwave induced heating method

机译:微波诱导加热法量化不同环境基质中的碳纳米管

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摘要

Carbon nanotubes (CNTs) have been incorporated into numerous consumer products, and have also been employed in various industrial areas because of their extraordinary properties. The large scale production and wide applications of CNTs make their release into the environment a major concern. Therefore, it is crucial to determine the degree of potential CNT contamination in the environment, which requires a sensitive and accurate technique for selectively detecting and quantifying CNTs in environmental matrices. In this study, a simple device based on utilizing heat generated/temperature increase from CNTs under microwave irradiation was built to quantify single-walled CNTs (SWCNTs), multi-walled CNTs (MWCNTs) and carboxylated CNTs (MWCNT-COOH) in three environmentally relevant matrices (sand, soil and sludge). Linear temperature vs CNT mass relationships were developed for the three environmental matrices spiked with known amounts of different types of CNTs that were then irradiated in a microwave at low energies (70-149 W) for a short time (15-30 s). MWCNTs had a greater microwave response in terms of heat generated/temperature increase than SWCNTs and MWCNT-COOH. An evaluation of microwave behavior of different carbonaceous materials showed that the microwave measurements of CNTs were not affected even with an excess of other organic, inorganic carbon or carbon based nanomaterials (fullerene, granular activated carbon and graphene oxide), mainly because microwave selectively heats materials such as CNTs that have a higher dielectric loss factor. Quantification limits using this technique for the sand, soil and sludge were determined as low as 18.61,27.92,814.4 μg/g for MWCNTs at a microwave power of 133 W and exposure time of 15 s.
机译:碳纳米管(CNT)已被整合到众多消费产品中,并且由于其非凡的性能也已被用于各种工业领域。 CNT的大规模生产和广泛应用使得它们向环境的释放成为主要问题。因此,确定环境中潜在的CNT污染程度至关重要,这需要灵敏而准确的技术来选择性地检测和定量环境基质中的CNT。在这项研究中,建立了一个简单的装置,该装置利用微波辐射下CNT产生的热量/温度升高来量化三个环境中的单壁CNT(SWCNT),多壁CNT(MWCNT)和羧化CNT(MWCNT-COOH)。相关基质(沙子,土壤和污泥)。针对掺有已知量的不同类型CNT的三种环境基质,开发了线性温度与CNT的质量关系,然后将其在微波中以低能量(70-149 W)短时间(15-30 s)照射。相对于SWCNT和MWCNT-COOH,就产生的热量/温度升高而言,MWCNT具有更大的微波响应。对不同碳质材料的微波行为的评估表明,即使使用过量的其他有机,无机碳或碳基纳米材料(富勒烯,颗粒活性炭和氧化石墨烯),CNT的微波测量也不会受到影响,这主要是因为微波选择性地加热了材料例如具有较高介电损耗因子的CNT。在133 W的微波功率和15 s的暴露时间下,对于MWCNTs,使用该技术对沙子,土壤和污泥的定量限被确定为低至18.61,27.92,814.4μg/ g。

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  • 来源
    《The Science of the Total Environment 》 |2017年第15期| 509-517| 共9页
  • 作者单位

    Environmental Engineering and Science program, Department of Biomedical, Chemical and Environmental Engineering, University of Cincinnati, 2600 Clifton Ave, Cincinnati, OH 45221, United States;

    National Risk Management Research Laboratory, U.S. Environmental Protection Agency, 26 W. Martin Luther King Dr, Cincinnati, OH 45268, United States;

    Environmental Engineering and Science program, Department of Biomedical, Chemical and Environmental Engineering, University of Cincinnati, 2600 Clifton Ave, Cincinnati, OH 45221, United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carbon nanotubes; quantitative analysis; microwave method; quartz sand; soil; anaerobic sludge;

    机译:碳纳米管;定量分析;微波法石英砂泥;厌氧污泥;

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