4.7 Article

Construction of durable superhydrophilic activated carbon fibers based material for highly-efficient oil/water separation and aqueous contaminants degradation

期刊

ENVIRONMENTAL RESEARCH
卷 207, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2021.112212

关键词

Activated carbon fibers; Interconnected network architecture; Layered double hydroxide; Oil/water separation; Organic pollutant degradation

资金

  1. Zhejiang Provincial Natural Science Foundation of China [LQ21B070007]
  2. National Natural Science Foundation of China [52003240]

向作者/读者索取更多资源

Developing filtering materials with high permeation flux and contaminant removal rate is crucial for the remediation of oily wastewater. In this study, a three-dimensional composite of activated carbon fibers (ACFs) with uniformly grown layered double hydroxide (LDH) was successfully constructed. The LDH provided superhydrophilicity to the ACFs and allowed for efficient separation of oil-in-water emulsions. Additionally, the LDH had catalytic active sites that could effectively eliminate various organic pollutants. The modified ACFs showed exceptional removal rates for both oil and organic pollutants in continuous filtration, suggesting great potential for large-scale treatment of oily wastewater.
Developing filtering materials with high permeation flux and contaminant removal rate is of great importance for oily wastewater remediation. Herein, a robust three-dimensional (3D) activated carbon fibers (ACFs) based composite with uniformly grown layered double hydroxide (LDH) on the surface was successfully constructed through a feasible hydrothermal strategy. The LDH with a high surface energy and vertically aligned structure could provide superhydrophilicity to ACFs. Systematic investigation confirmed that the 3D material could overcome the size mismatch between the ACFs macropores and tiny emulsified droplets through the combination of size-sieving filtration on the surface and oil droplet coalescence in the fiber network. This process efficiently separated the intractable surfactant-stabilized oil-in-water emulsions with high permeation flux (up to 4.16 x 10(6) L m(-)2 h(-)1 bar(-1)). Notably, the LDH also had well-dispersed catalytic active sites, which could initiate advanced oxidation processes (AOPs) to efficiently eliminate various types of water-soluble organic pollutants (e. g., pharmaceuticals, phenolic compounds and organic dyes). The resulting modified ACFs exhibited exceptional removal rates for both oil and organic pollutants in the complex sewage during the continuous filtration process. These versatile abilities integrated with the facile preparation method reported herein provide outstanding prospects for the large-scale treatment of oily wastewater.

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