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一种太阳能驱动的降解-蒸发策略,用于粘性原油/水乳液的高效分离中的膜自清洁。

A solar-driven degradation-evaporation strategy for membrane self-cleaning in the efficient separation of viscous crude oil/water emulsions.

机构信息

Key Laboratory of Earth and Planetary Physics, Institute of Geology and Geophysics, Innovation Academy for Earth Sciences, Chinese Academy of Sciences, Beijing 100029, China.

Key Laboratory of Earth and Planetary Physics, Institute of Geology and Geophysics, Innovation Academy for Earth Sciences, Chinese Academy of Sciences, Beijing 100029, China; College of Earth Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Hazard Mater. 2023 Sep 5;457:131826. doi: 10.1016/j.jhazmat.2023.131826. Epub 2023 Jun 10.

Abstract

Membrane separation techniques are promising methods for effectively treating hazardous emulsified oily wastewater, but membrane fouling remains a serious challenge because the high viscosity and complex composition of crude oil make it easy to adhere to membranes and difficult to be removed by conventional physical or chemical cleaning means. Herein, a two-stage solar-driven (photo-Fenton degradation/evaporation) strategy was proposed to realize the self-cleaning of membranes fouled by viscous crude oil (>60,000 mPa s), wherein the photo-Fenton process helped to degrade the heavy components into light components, and all light components removed during the solar-driven evaporation process. A 1D/2D heterostructure membrane with photo-Fenton activity and anti-crude-oil-fouling performance was prepared via a facile self-assembly vacuum-assist method. The addition of rod-like g-CN (RCN) increased the interlayer distance of α-FeOOH/porous g-CN (FPCN) nanosheets, resulting in a high permeation flux. The FPCN-RCN membrane exhibited both high permeation flux of 779 ± 19 L mhbar and a separation efficiency of 99.4% for highly viscous crude oil-in-water emulsion. Importantly, the viscous crude oil fouled on the membrane was completely removed by the photo-Fenton degradation/solar-driven evaporation strategy, and the flux recovery rate of the membrane was ∼100%. Therefore, the FPCN-RCN membrane combined with the novel self-cleaning strategy exhibits great potential for practical emulsified oily wastewater treatment.

摘要

膜分离技术是有效处理危险乳化含油废水的有前途的方法,但膜污染仍然是一个严重的挑战,因为原油的高粘度和复杂组成使其容易附着在膜上,并且难以通过传统的物理或化学清洗方法去除。在此,提出了一种两级太阳能驱动(光芬顿降解/蒸发)策略,以实现粘性原油(>60,000 mPa s)污染膜的自清洁,其中光芬顿过程有助于将重质成分降解为轻质成分,并且所有轻质成分都在太阳能驱动蒸发过程中去除。通过简便的自组装真空辅助方法制备了具有光芬顿活性和抗原油污染性能的 1D/2D 异质结构膜。棒状 g-CN(RCN)的添加增加了α-FeOOH/多孔 g-CN(FPCN)纳米片的层间距,从而实现了高通量。FPCN-RCN 膜表现出 779 ± 19 L m h bar 的高渗透通量和 99.4%的高粘性原油-水乳液分离效率。重要的是,通过光芬顿降解/太阳能驱动蒸发策略完全去除了污染在膜上的粘性原油,膜的通量恢复率约为 100%。因此,FPCN-RCN 膜结合新颖的自清洁策略在实际乳化含油废水处理方面具有很大的潜力。

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