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Mobility of Acid-Treated Carbon Nanotubes in Water-Saturated Porous Media

机译:酸处理的碳纳米管在水饱和多孔介质中的迁移率

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The production, use, and disposal of nanomaterials may inevitably lead to their appearance in water. With the development of new industries around nanomaterials, it seems necessary to be concerned about the transport of nanomaterials in the environment. In this paper, the transport of acid-treated carbon nanotubes (CNTs) in porous media was investigated. Before the mobility investigation, the stability of acid-treated CNT dispersions was studied using ultraviolet-visible spectra and it was indicated that, under the chemical conditions employed in this work, there was no apparent aggregation. The mobility investigation showed that transport of acid-treated CNTs increased with treatment time due to increase in particle zeta potential. Carbon nanotubes treated with nitric acid for 2, 6, and 12 h possessed measured zeta potentials of -30.0, -43.0, and -48.5 mV, respectively. Utilizing clean-bed filtration theory, we showed that acid-treated CNTs have the potential to migrate 3.28, 5.67, and 7.69 m in saturated glass beads, respectively. We showed that solution ionic strength and pH have important effects on the mobility of acid-treated CNTs. Increasing the pH from 6.0 to 7.9 resulted in an increase in migration potential from 2.96 to 10.86 m. Increasing the ionic strength from 0.005 to 0.020 M resulted in a decrease in CNT migration potential from 5.67 to 1.42 m.
机译:纳米材料的生产,使用和处置可能不可避免地导致其在水中出现。随着围绕纳米材料的新兴产业的发展,似乎有必要关注环境中纳米材料的运输。本文研究了酸处理的碳纳米管(CNTs)在多孔介质中的传输。在迁移率研究之前,使用紫外线-可见光谱研究了酸处理的CNT分散体的稳定性,结果表明,在这项工作中使用的化学条件下,没有明显的聚集。迁移率研究表明,由于颗粒zeta电位的增加,酸处理的CNTs的运输随处理时间的增加而增加。用硝酸处理2、6和12 h的碳纳米管分别具有-30.0,-43.0和-48.5 mV的测量zeta电位。利用清洁床过滤理论,我们表明酸处理的CNTs可能分别在饱和玻璃珠中迁移3.28、5.67和7.69m。我们表明,溶液的离子强度和pH值对酸处理的CNT的迁移率具有重要影响。 pH值从6.0增加到7.9导致迁移潜力从2.96增加到10.86 m。离子强度从0.005 M增加到0.020 M导致CNT迁移电位从5.67 m减少到1.42 m。

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