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受木材启发的可压缩超亲水性海绵,用于从粘性油中高效去除微米级水滴。

Wood-Inspired Compressible Superhydrophilic Sponge for Efficient Removal of Micron-Sized Water Droplets from Viscous Oils.

作者信息

Li Xiaochen, Yang Zihao, Peng Ying, Zhang Fengfan, Lin Meiqin, Zhang Juan, Lv Qichao, Dong Zhaoxia

机构信息

Unconventional Petroleum Research Institute, China University of Petroleum (Beijing), Beijing 102249, People's Republic of China.

School of Energy Resources, China University of Geosciences (Beijing), Beijing 100083, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2022 Mar 9;14(9):11789-11802. doi: 10.1021/acsami.2c00785. Epub 2022 Feb 23.

Abstract

Efficient micron-sized droplet separation materials have become a new demand for environmental protection and economic development. However, existing separation methods are difficult to be effectively used for micron-sized water droplets surrounded by viscous oil, and common materials have difficulty maintaining hydrophilicity underoil. Here, inspired by the microstructure of tree xylem, we report a cellulose-polyurethane sponge (CP-Sponge) with wood-like pores and underoil superhydrophilicity using directional freeze-casting. The CP-Sponge has an excellent selective water absorption capacity underoil and compression resilience. This preparation strategy can flexibly control the sponge's dimensional morphology. The designed cylindrical CP-Sponge can be easily installed in the silicone tube of a peristaltic pump. During pump operation, with a simple absorption, compression, and recovery process, the CP-Sponge continuously and effectively removes micron-sized water from crude oil and lubricating oil, reducing residual water in the oil to less than 2 ppm. The absorption-saturated sponge can be dried to continue recycling. Eco-friendly, recyclable, and sustainable artificial porous sponges provide new ideas and inspiration for the practical application of deep dehydration of viscous oils.

摘要

高效的微米级液滴分离材料已成为环境保护和经济发展的新需求。然而,现有的分离方法难以有效地用于分离被粘性油包围的微米级水滴,并且普通材料在油环境下难以保持亲水性。在此,受树木木质部微观结构的启发,我们报道了一种通过定向冷冻铸造制备的具有类木孔隙和油下超亲水性的纤维素 - 聚氨酯海绵(CP - 海绵)。CP - 海绵在油环境下具有出色的选择性吸水能力和压缩回弹性。这种制备策略可以灵活控制海绵的尺寸形态。设计的圆柱形CP - 海绵可以轻松安装在蠕动泵的硅胶管中。在泵运行过程中,通过简单的吸附、压缩和恢复过程,CP - 海绵能持续有效地从原油和润滑油中去除微米级的水,将油中的残留水降低至2 ppm以下。吸附饱和的海绵可以干燥后继续循环使用。环保、可回收且可持续的人工多孔海绵为粘性油深度脱水的实际应用提供了新的思路和灵感。

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