| Literature DB >> 25661174 |
Xinhong Qiu1, Keiko Sasaki2, Yu Takaki2, Tsuyoshi Hirajima2, Keiko Ideta3, Jin Miyawaki3.
Abstract
Hydrocalumite (Ca-Al-layered double hydroxide (LDH)) was prepared and applied for the removal of borate. The properties of Ca-Al-LDH calcined at different temperatures were diverse, which affected the sorption density and mechanism of boron species. The sorption density increased with increase in calcined temperature and the sample calcined at 900°C (Ca-Al-LDH-900) showed the maximum sorption density in this work. The solid residues after sorption were characterized by (11)B NMR, (27)Al NMR, SEM, and XRD to investigate the sorption mechanism. Dissolution-reprecipitation was the main mechanism for sorption of borate in Ca-Al-LDH. For Ca-Al-LDH calcined at 300 and 500°C, regeneration occurred in a short time and the newly forming LDHs were decomposed to release Ca(2+) ions and formed ettringite with borate. Two stages occurred in the sorption of boron by Ca-Al-LDH calcined at 900°C. In the first stage, boron species adsorbed on the alumina gel resulting from the hydration of calcined products. In this stage, borate was included as an interlayer anion into the newly forming LDHs in the following stage, and then immobilized as HBO3(2-) into the interlayer, most the LDHs.Entities:
Keywords: Boron; Calcination; Ettringite; Hydrocalumite; Mechanism
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Year: 2015 PMID: 25661174 DOI: 10.1016/j.jhazmat.2015.01.066
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588