» Articles » PMID: 30936014

Hydrophobically Modified Chitin/halloysite Nanotubes Composite Sponges for High Efficiency Oil-water Separation

Overview
Publisher Elsevier
Date 2019 Apr 3
PMID 30936014
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

A high-performance oil-water separation device that built by environment-friendly materials is a promising strategy to solve water pollution problem. In this study, we developed an oil-water separation system with chitin/halloysite nanotubes (C/HNTs) composites. C/HNTs were crosslinked by epichlorohydrin and freeze-dried, then a porous sponge was formed. The C/HNTs sponge was modified to be hydrophobic via immersing into bromohexadecane ethanol solution. The surface structure, mechanical properties, microstructure, oil absorption and oil-water separation ability of the C/HNTs sponge were investigated. The addition of HNTs significantly increased the compressive strength of chitin sponge without influence on porous structure. IR spectra indicated the successful coating of bromohexadecane on the C/HNTs sponge surface, which enabled the hydrophobicity and lipophilicity of this construct. The inside construct of the C/HNTs sponges were full of interconnected pores, and the pore size ranged from 250 to 500 μm. The absorption capability for various oil and grease were measured, including methylbenzene, sunflower seed oil, carbon dichloride, n-hexane, chloroform and acetone. It is found that the total amount of chloroform absorbed by a C/HNTs sponge was ~11.23 times of the sponge's weight, and the absorption for hexane was ~3.94 times of the sponge's weight. The sponge also exhibited an excellent oil-water separation ability with as high as 98.7% separation efficiency. All the results suggested that the chitin/HNTs sponges with improved mechanical property would have a great potential in oil-water separation.

Citing Articles

Biomass Chitosan-Based Tubular/Sheet Superhydrophobic Aerogels Enable Efficient Oil/Water Separation.

Wang W, Lin J, Guo J, Sun R, Han G, Peng F Gels. 2023; 9(4).

PMID: 37102958 PMC: 10137560. DOI: 10.3390/gels9040346.


Alginate-Halloysite Nanocomposite Aerogel: Preparation, Structure, and Oil/Water Separation Applications.

Bhagyaraj S, Krupa I Biomolecules. 2020; 10(12).

PMID: 33287322 PMC: 7761768. DOI: 10.3390/biom10121632.


Bionanocomposite Films Containing Halloysite Nanotubes and Natural Antioxidants with Enhanced Performance and Durability as Promising Materials for Cultural Heritage Protection.

Infurna G, Cavallaro G, Lazzara G, Milioto S, Dintcheva N Polymers (Basel). 2020; 12(9).

PMID: 32878027 PMC: 7564337. DOI: 10.3390/polym12091973.


Halloysite/Keratin Nanocomposite for Human Hair Photoprotection Coating.

Cavallaro G, Milioto S, Konnova S, Fakhrullina G, Akhatova F, Lazzara G ACS Appl Mater Interfaces. 2020; 12(21):24348-24362.

PMID: 32372637 PMC: 8007073. DOI: 10.1021/acsami.0c05252.


Complex Aerogels Generated from Nano-Polysaccharides and Its Derivatives for Oil-Water Separation.

Yagoub H, Zhu L, Shibraen M, Altam A, Babiker D, Liang S Polymers (Basel). 2019; 11(10).

PMID: 31569491 PMC: 6835607. DOI: 10.3390/polym11101593.