4.7 Article

Interaction between phosphate and acid-activated neutralized red mud during adsorption process

Journal

APPLIED SURFACE SCIENCE
Volume 356, Issue -, Pages 128-134

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apsusc.2015.08.053

Keywords

Red mud; Phosphate complex; Precipitation; Ion exchange; Surface deposition

Funding

  1. CSC (China Scholarship Council)
  2. National Natural Science Foundation of China [51178047, 51378190, 51039001]
  3. Furong Scholar of Hunan Province

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Acid-activated neutralized red mud (AaN-RM) has become a promising adsorbent for phosphate adsorption. The maximum phosphate adsorption capacity of AaN-RM reached 492.46 mg g(-1) in this study, which was much higher than that of many other adsorbents. However, no study has specifically investigated how the phosphate reacted with AaN-RM. For the first time the interaction between phosphate and AaN-RM during adsorption process was investigated in this research. Kinetic models and isotherms were used to analyze the possible reaction pathways between AaN-RM and phosphate. Particularly, the phosphate complexes on AaN-RM surface, and the exact role of different adsorption mechanisms were systemically identified. The phosphate adsorption was well described by pseudo second-order kinetic model and Langmuir-Freundlich isotherm, which suggested that chemisorption occurred between the phosphate and AaN-RM, and the phosphate adsorption was governed by heterogeneous processes. Furthermore, the phosphate complexes of Fe-P, Al-P, Fe-P-H3PO4 and Al-P-H3PO4 were formed on AaN-RM surface through ion exchange, precipitation and surface deposition mechanisms. XPS analysis of P 2p peak showed that 59.78% of the phosphate was adsorbed through the ion exchange and precipitation with strong chemical bonds, and 40.22% was adsorbed through the surface deposition with weak chemical bonds. (C) 2015 Elsevier By. All rights reserved.

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