Boosting the adsorption and removal of dye from water by COOH-functionalized carbon nanotubes

IF 9.1 Q1 ENGINEERING, CHEMICAL Green Chemical Engineering Pub Date : 2023-03-01 DOI:10.1016/j.gce.2022.05.002
Binran Zhao , Yiyi Zhao , Peng Liu , Yu-Long Men , Yun-Xiang Pan
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引用次数: 8

Abstract

Water pollution caused by dye is a serious challenge. Herein, we use a novel discharge process to functionalize carbon nanotube (CNT) by COOH groups to form CNT30 for removing methyl red (MR) from water. By pristine CNT, 75% MR is removed in 60 min, with an adsorption capacity of 68.44 mg g-1. By CNT30, 85% MR is fast removed in only 5 min, and the removal efficiency reaches to 95% after 30 min, with an adsorption capacity of 80.33 mg g-1. Thus, a higher MR removal efficiency is achieved in a much shorter time on CNT30. Moreover, CNT30 has an outstanding reusability, with the MR removal efficiency decreasing by only 7% after ten cycles. The COOH groups on CNT30 improve the hydrophilicity of CNT30, thus promoting the interaction of MR in water with CNT30. The hydrogen bonding and electrostatic interaction of MR with the COOH groups on CNT30 could be the force to drive MR adsorption on CNT30. The higher COOH content could be the origin for the better performance of CNT30 in removing dye from water. The discharge process developed herein is operated in O2, without using harmful substances, and the COOH content on CNT can be efficiently tuned by simply changing discharge time. This is different from the chemical modification widely used to functionalize CNT by strong oxidants, e.g., HNO3. The present work is of great significance to realize green construction of materials for more efficiently removing dye from water.

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羧酸官能化碳纳米管对水中染料的吸附和去除
染料造成的水污染是一个严峻的挑战。在此,我们使用一种新的放电工艺通过COOH基团对碳纳米管(CNT)进行功能化,以形成用于从水中去除甲基红(MR)的CNT30。通过原始CNT,在60分钟内去除75%的MR,吸附容量为68.44 mg g-1。CNT30在5分钟内快速去除85%的MR,30分钟后去除率达到95%,吸附容量为80.33 mg g-1。因此,在CNT30上以更短的时间实现了更高的MR去除效率。此外,CNT30具有出色的可重复使用性,10次循环后MR去除效率仅下降7%。CNT30上的COOH基团提高了CNT30的亲水性,从而促进了水中MR与CNT30的相互作用。MR与CNT30上COOH基团的氢键和静电相互作用可能是驱动MR在CNT30上吸附的力。较高的COOH含量可能是CNT30在去除水中染料方面具有更好性能的原因。本文开发的放电过程在O2中操作,而不使用有害物质,并且可以通过简单地改变放电时间来有效地调节CNT上的COOH含量。这不同于通过强氧化剂(例如HNO3)广泛用于官能化CNT的化学改性。本工作对实现材料的绿色施工,更有效地去除水中的染料具有重要意义。
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来源期刊
Green Chemical Engineering
Green Chemical Engineering Process Chemistry and Technology, Catalysis, Filtration and Separation
CiteScore
11.60
自引率
0.00%
发文量
58
审稿时长
51 days
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