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Phosphate sorption speciation and precipitation mechanisms on amorphous aluminum hydroxide

  • Xiaoming Wang
  • , Brian L. Phillips
  • , Jean François Boily
  • , Yongfeng Hu
  • , Zhen Hu
  • , Peng Yang
  • , Xionghan Feng
  • , Wenqian Xu
  • , Mengqiang Zhu
  • Huazhong Agricultural University
  • University of Wyoming
  • Umeå University
  • University of Saskatchewan
  • United States Department of Energy

Research output: Contribution to journalArticlepeer-review

61 Scopus citations

Abstract

Aluminum (Al) oxides are important adsorbents for phosphate in soils and sediments, and significantly limit Phosphate (P) mobility and bioavailability, but the speciation of surface-adsorbed phosphate on Al oxides remains poorly understood. Here, phosphate sorption speciation on amorphous Al hydroxide (AAH) was determined under pH 3–8 and P concentration of 0.03 mM–15 mM using various spectroscopic approaches, and phosphate precipitation mechanisms were discussed as well. AAH exhibits an extremely high phosphate sorption capacity, increasing from 3.80 mmol/g at pH 7 to 4.63 mmol/g at pH 3. Regardless of reaction pH, with increasing P sorption loading, the sorption mechanism transits from bidentate binuclear (BB) surface complexation with dP-Al of 3.12 Å to surface precipitation of analogous amorphous AlPO4 (AAP), possibly with ternary complexes, such as (≡Al-O)2-PO2-Al, as intermediate products. Additionally, the percentage of precipitated phosphate occurring in AAP linearly and positively correlates with P sorption loading. Compared to phosphate reaction with ferrihydrite, phosphate adsorbs and precipitates more readily on AAH due to the higher solubility product (Ksp) of AAH. The formation of AAP particles involves AlIII release, which is promoted by phosphate adsorption, and its subsequent precipitation with phosphate at AAH surfaces or in the bulk solution.

Original languageEnglish
Article number20
Pages (from-to)1-17
Number of pages17
JournalSoil Systems
Volume3
Issue number1
DOIs
StatePublished - Mar 2019

Keywords

  • Al hydroxide
  • Phosphate
  • Precipitation
  • Sorption
  • Speciation

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