Issue 1, 2022

Ion cross-linking assisted synthesis of ZIF-8/chitosan/melamine sponge with anti-biofouling activity for enhanced uranium recovery

Abstract

Micro/mesoporous powder structures and biofouling of marine microorganisms directly limit the potential of zeolite frameworks in uranium recovery from seawater. Herein, an anti-biofouling zeolite framework-8/chitosan/melamine sponge adsorbent with a three-dimensional porous structure was prepared successfully using zinc ions and chitosan as adjuvants to promote the growth of zeolite framework-8 on the surface of melamine sponge. The mechanical and anti-biofouling properties of the sponge were determined by compression and algae tests. Relative to the zeolite framework-8 powders, the zeolite framework-8/chitosan/melamine sponge exhibited superior mechanical and anti-biofouling properties with 0.565 MPa of compressive stress and a 35% algae cell death rate. The adsorption capacities of the zeolite framework-8/chitosan/melamine sponge were 129.90 mg g−1 at pH 8.0 and 95.47 mg g−1 at the fifth adsorption–desorption cycle, which were higher than that of ZIF-8 powder (91.45 mg g−1). Furthermore, the excellent low-concentration U(VI) adsorption performance of zeolite framework-8/chitosan/melamine in natural seawater (Bohai) also confirmed its practical application potentiality.

Graphical abstract: Ion cross-linking assisted synthesis of ZIF-8/chitosan/melamine sponge with anti-biofouling activity for enhanced uranium recovery

Supplementary files

Article information

Article type
Research Article
Submitted
22 Sep 2021
Accepted
08 Nov 2021
First published
09 Nov 2021

Inorg. Chem. Front., 2022,9, 155-164

Ion cross-linking assisted synthesis of ZIF-8/chitosan/melamine sponge with anti-biofouling activity for enhanced uranium recovery

X. Guo, H. Yang and J. Wang, Inorg. Chem. Front., 2022, 9, 155 DOI: 10.1039/D1QI01203G

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