Al2O3 encapsulated by calcium alginate as composite for efficient removal of phosphate from aqueous solutions: batch and column studies

Author:

Ai Huiying1,Xu Lei1,Zhang Zhiyong1,Hu Xiaoya1,Chen Chen1,Sun Wenjie2,Fu Ming-Lai1,Yuan Baoling13

Affiliation:

1. a Xiamen Key Laboratory of Municipal and Industrial Solid Waste Utilization and Pollution Control, College of Civil Engineering, Huaqiao University, Xiamen, Fujian 361021, P.R. China

2. b Department of Atmosperic and Hydrologic Science, St. Cloud State University, 720 4th Avenue South, St. Cloud, MN 56301, United States of America

3. c Key Laboratory of Songliao Aquatic Environment, Ministry of Education, Jilin Jianzhu University, Changchun 130118, P.R. China

Abstract

Abstract Activated alumina (Al2O3) has been widely used to remove aqueous anionic pollutants such as phosphate for preventing the eutrophication phenomenon. While Al2O3, as a fine powder material, cannot be stably packed into continuous flow treatment, which limits its practical applications. Herein, we proposed a new strategy in which Al2O3 was encapsulated by calcium alginate (CA) to fabricate Al2O3/CA composite, which has relatively large particle size and can be suitable for application in columns. The BET surface area of Al2O3/CA increased to 51.73 m2/g compared with 37.31 m2/g of Al2O3. The maximum adsorption capacity of phosphate on Al2O3/CA was estimated at 1.92-fold compared with that of pure Al2O3 by Langmuir fitting. The main mechanism of phosphate adsorption was the formation of aluminum phosphate precipitation. Moreover, the column studies showed that the adsorption of phosphate on Al2O3/CA was affected by the amount of outer calcium alginate, bed height, influent flow rates and phosphate concentration. This study demonstrated that Al2O3/CA composite has better adsorption capacity and can be used in the dynamic adsorption system as a promising approach for phosphate removal from water. HIGHLIGHTS Al2O3/CA composite was synthesized by encapsulating Al2O3 in calcium alginate. The BET surface area of Al2O3/CA increased 1.39-fold compared with pure Al2O3. Al2O3/CA with larger particle size can be easily separated from the water. The optimal conditions for dynamic adsorption of in fixed-bed column were investigated.

Funder

the Science and Technology Major Project of the Bureau of Science and Technology of Xiamen

the Key Projects of Enterprise and University Cooperation in Fujian

Quanzhou City Sciences & Technology Program of China

Subsidized Project for Postgraduates’ Innovative Fund in Scientific Research of Huaqiao University

the Start-up Foundation from Huaqiao University

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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