School of Chemistry & Environmental Engineering, Yangtze University, Jingzhou, 434023, PR China.
School of Chemistry & Environmental Engineering, Yangtze University, Jingzhou, 434023, PR China.
Chemosphere. 2022 Feb;288(Pt 2):132571. doi: 10.1016/j.chemosphere.2021.132571. Epub 2021 Oct 13.
In this work, a CNTs-NH demulsifier was prepared by grafting ethylenediamine on the surface of carbon nanotubes to break oily wastewater. The physicochemical and interfacial properties of CNTs-NH were characterized and analyzed. It showed that CNTs-NH had an eminent amphipathicity and high interfacial activity, which allows it to sharply migrates to the interface and effectively interacts with interfacial film by the combined action of π-π interaction and electrostatic attraction. The demulsification tests exhibited that CNTs-NH could effectively remove emulsified oil from the oily wastewater. It could be used at acidic and neutral conditions, and high salinity. Moreover, it could be recycled and still maintained its interfacial activity, thusly vastly enhancing the application scope. The light transmittance was up to 88.1% and the corresponding oil removal rate was 99.2% with 100 mg/L of CNTs-NH for 30 min. The oil removal rate of CNTs-NH remained above 97.8% after 6 cycles. This work provides a deep understanding on the design of demulsifier and its demulsification mechanism.
在这项工作中,通过在碳纳米管表面接枝乙二胺制备了 CNTs-NH 破乳剂,以打破含油废水的乳化。对 CNTs-NH 的物理化学和界面性质进行了表征和分析。结果表明,CNTs-NH 具有卓越的两亲性和高界面活性,使其能够通过π-π 相互作用和静电吸引的共同作用,急剧迁移到界面并与界面膜有效相互作用。破乳测试表明,CNTs-NH 可以有效地从含油废水中去除乳化油。它可以在酸性和中性条件以及高盐度下使用。此外,它可以回收并保持其界面活性,从而大大提高了应用范围。透光率高达 88.1%,当 CNTs-NH 用量为 100mg/L,作用 30min 时,对应的除油率为 99.2%。经过 6 次循环后,CNTs-NH 的除油率仍保持在 97.8%以上。这项工作为破乳剂的设计及其破乳机理提供了深入的了解。