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易于制造的低能耗焦耳加热超疏水泡沫用于快速清理粘性原油泄漏物

Easily Fabricated Low-Energy Consumption Joule-Heated Superhydrophobic Foam for Fast Cleanup of Viscous Crude Oil Spills.

作者信息

Li Zhangdi, Tian Qiong, Xu Jicheng, Sun Shouzhen, Cheng Ying, Qiu Fengxian, Zhang Tao

机构信息

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, Jiangsu Province, China.

Zhenjiang Key Laboratory of Functional Chemistry, Institute of Medicine and Chemical Engineering, Zhenjiang College, Zhenjiang 212028, China.

出版信息

ACS Appl Mater Interfaces. 2021 Nov 3;13(43):51652-51660. doi: 10.1021/acsami.1c13574. Epub 2021 Oct 22.

Abstract

Effective cleanup of viscous crude oil spills remains a persistent and crippling challenge. Herein, this work presents a Joule-heated superhydrophobic flower-like Cu(POOH)(PO)·7HO-coated copper foam (SHB-CF@CP) for rapid cleanup of viscous crude oil spills via a facile strategy. The SHB-CF@CP shows outstanding water repellency and excellent stability of hydrophobicity in harsh environments. Due to the high electrical conductivity and thermal conductivity, it requires lower power energy consumption (less than 1 V of voltage input) to raise the temperature significantly, which dramatically reduces the viscosity of crude oil (from ∼2 × 10 to ∼60 mPa s) and then increases the oil absorption rate, effectively avoiding the poor mobility and ineffective absorption of viscous crude oil. Notably, the SHB-CF@CP can achieve continuous and quick cleanup of crude oil under in situ pumping force. The high-performance Joule-heated SHB-CF@CP sorbent with a strong porous skeleton, corrosion resistance, and low predicted operational costs holds a promise of promoting its practical applications in the cleanup of intractable and large-area viscous oil spills.

摘要

有效清理粘性原油泄漏仍然是一个长期存在且极具挑战性的难题。在此,本研究通过一种简便的策略,提出了一种用于快速清理粘性原油泄漏的焦耳加热超疏水花状Cu(POOH)(PO)·7HO包覆泡沫铜(SHB-CF@CP)。SHB-CF@CP在恶劣环境中表现出出色的疏水性和优异的疏水稳定性。由于其高电导率和热导率,只需较低的电能消耗(电压输入小于1V)就能显著提高温度,这极大地降低了原油的粘度(从约2×10降至约60mPa·s),进而提高了吸油率,有效避免了粘性原油流动性差和吸收效果不佳的问题。值得注意的是,SHB-CF@CP能够在原位泵吸力作用下实现对原油的连续快速清理。这种具有强大多孔骨架、耐腐蚀且预测运行成本低的高性能焦耳加热SHB-CF@CP吸附剂有望推动其在清理棘手的大面积粘性油污方面的实际应用。

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