4.7 Article

Efficient macroporous adsorbent for phosphate removal based on hydrate aluminum-functionalized melamine sponge

期刊

CHEMICAL ENGINEERING JOURNAL
卷 421, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2020.127848

关键词

Melamine sponge; Adsorption; Porous material; Phosphate removal

资金

  1. National Key Project on Prevention and Control of Water Pollution from Ministry of Environmental Protection of China [2017ZX07203-005]

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The newly developed MF-HA sponge showed excellent adsorption performance across a wide pH range, with high uptake capacity and endothermic adsorption process. Additionally, the sponge could be easily separated from the solution and demonstrated good recyclability.
Effective removal of phosphate from aqueous solution is of great significance in environmental protection. In this paper, the concept of developing a hierarchical and cost-effective aluminum functionalized melamine foam (MF) as phosphate adsorbent is presented. The material with 3D interconnected network, flexibility and ultralow density was fabricated via a simple adsorbing method based on hydrate aluminum and commercially available MF sponge. For use as an adsorbent, performance of the as-prepared MF-HA sponge was assessed with various pH, temperatures, adsorption time, initial P concentrations, ionic strengths and co-existing ions. The experimental results demonstrated that MF-HA performed well in a wide pH range of 4-10 and in the presence of foreign anions, with high maximum uptake capacity of 36.21 mg P/g. Furthermore, for the as-prepared material, the phosphate removal performance at different temperatures established the endothermic nature of the adsorption process. Moreover, MF-HA sponge could be directly separated from the solution and showed a satisfactory recyclability. The adsorbing strategy to design and fabricate the novel sponge with resultant high adsorption efficiency, cost-effectiveness, preferable selectivity, environmental friendliness, and easy separation from water may promote sponge functionalization for applications in extensive wastewater treatment areas.

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