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Packaging vertically aligned carbon nanotubes into a heat-shrink tubing for efficient removal of phenolic pollutants

机译:将垂直排列的碳纳米管包装到热缩管中,以有效去除酚类污染物

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摘要

Owing to their extremely high surface-to-volume ratio, carbon nanotubes (CNTs) are excellent adsorbents for the removal of organic pollutants. However, retrieval or collection of the CNTs after adsorption in existing approaches, which utilize CNTs dispersed in a solution of pollutants, is often more challenging than the removal of pollutants. In this study, we address this challenge by packaging vertically aligned CNTs into a PTFE heat-shrink tubing. Insertion of CNTs into the tubing and subsequent thermal shrinkage densified the CNTs radially by 35% and also reduced wrinkles in the nanotubes. The CNT-based adsorption tube with a circular cross-section enabled both easy functionalization of CNTs and facile connection to a source of polluted water, which we demonstrated for the removal of phenolic compounds. We purified and carboxylated CNTs, by flowing a solution of nitric acid through the tubing, and obtained adsorption capacities of 115, 124, and 81.2 mg g ~(?1) for 0.5 g L ~(?1) of phenol, m -cresol, 2-chlorophenol, respectively. We attribute the high adsorption capacity of our platform to efficient adsorbate-CNT interaction within the narrow interstitial channels between the aligned nanotubes. The CNT-based adsorption tubes are highly promising for the simple and efficient removal of phenolic and other types of organic pollutants.
机译:由于其极高的表面体积比,碳纳米管(CNT)是用于去除有机污染物的出色吸附剂。然而,在现有方法中吸附后,利用分散在污染物溶液中的CNT进行碳纳米管的回收或收集通常比去除污染物更具挑战性。在这项研究中,我们通过将垂直对齐的CNT包装到PTFE热缩管中来应对这一挑战。将CNT插入管中,然后进行热收缩,使CNT径向压缩35%,并且减少了纳米管中的皱纹。具有圆形横截面的基于CNT的吸附管既使CNT易于功能化,又易于与污染水源连接,我们证明了该技术可去除酚类化合物。我们通过使硝酸溶液流过管道来纯化和羧化的CNT,并获得115、124和81.2 mg g〜(?1)对0.5 g L〜(〜1)的苯酚,间甲酚的吸附容量。 ,2-氯苯酚。我们将平台的高吸附能力归因于对齐的纳米管之间狭窄的间隙通道内有效的被吸附物-CNT相互作用。基于CNT的吸附管对于简单有效地去除酚类和其他类型的有机污染物具有很高的前景。

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