Loading…

Superhydrophobic magnetic hollow carbon microspheres with hierarchical micro/nano-structure for ultrafast and highly-efficient multitasking oil-water separation

Nowadays, developing separation materials for oil-water mixture and even emulsion have drawn extensive interest, with increasing oily wastewater pollution. Among kinds of separation materials, hydrophobic magnetic particles can rapidly and high-efficiently separate oil from either oil-water mixtures...

Full description

Saved in:
Bibliographic Details
Published in:Carbon (New York) 2021-04, Vol.174, p.70-78
Main Authors: Yang, Na, Luo, Zi-Xuan, Chen, Si-Chong, Wu, Gang, Wang, Yu-Zhong
Format: Article
Language:English
Subjects:
Citations: Items that this one cites
Items that cite this one
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:Nowadays, developing separation materials for oil-water mixture and even emulsion have drawn extensive interest, with increasing oily wastewater pollution. Among kinds of separation materials, hydrophobic magnetic particles can rapidly and high-efficiently separate oil from either oil-water mixtures or emulsions. However, they not only commonly suffer from complicated preparation procedures and poor resistance to harsh conditions, but also are almost unable to satisfy the demand of multitasking separations towards oil-water mixtures and micro/nanoemulsions with surfactant. Herein, a facile, simple and scalable approach is introduced to prepare superhydrophobic magnetic hollow carbon microspheres (SMHCMs) with micro/nano hierarchical surface. Thanks to the special wettability properties, micro/nano hierarchical surface, nano-porous shell and hollow cores, the as-prepared SMHCMs show an unprecedented absorption capacity of over 10 g/g for oil-water mixtures within an absorption time of 60 s as well as a superior separation efficiency of near 99% for surfactant-free and surfactant-stabilized micro/nanoemulsions at an extremely short time of as low as 10 s. In addition, the SMHCMs also possess stable performance, good reusability, durability and resistance to harsh environments (e.g., acidic, alkaline and high-saline). This work proposes a new prospect for designing advanced materials applied to the fast and highly-efficient oil-water separation. [Display omitted] •A facile, simple and scalable approach is introduced to prepare superhydrophobic magnetic hollow carbon microspheres (SMHCMs) with micro/nano hierarchical surface.•SMHCMs show an unprecedented absorption capacity for oil-water mixture.•SMHCMs exhibit a superior separation efficiency for micro/nanoemulsions within a extremely short time.•SMHCMs possess good reusability, durability and resistance to harsh environments.
ISSN:0008-6223
1873-3891
DOI:10.1016/j.carbon.2020.11.078