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  4. Adsorption of 2,4-D on Mg/Al-NO3 layered double hydroxides with varying layer charge density
 
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Adsorption of 2,4-D on Mg/Al-NO3 layered double hydroxides with varying layer charge density

Journal
Applied Clay Science
Journal Volume
40
Journal Volume
40
Journal Issue
1-4
Journal Issue
1-4
Pages
193-200
Start Page
193
End Page
200
ISSN
01691317
Date Issued
2008-06
Author(s)
Chao, Yia-Feng
Chen, Pin-Chieh
SHAN-LI WANG  
DOI
10.1016/j.clay.2007.09.003
URI
https://www.scopus.com/pages/publications/44349096353?origin=resultslist
http://scholars.lib.ntu.edu.tw/handle/123456789/338957
Abstract
Layered double hydroxides (LDHs) have high surface area and high anion exchange capacity, so they have been proposed to be an effective scavenger for contaminants. In this study, the adsorption of 2,4-dichlorophenoxyacetate (2,4-D) on Mg/Al-NO3 LDHs with varying layer charge density was investigated with particular attention on the effect of the orientation of the interlayer nitrate. Three Mg/Al LDHs were synthesized with Al3+/(Al3+ + Mg2+) molar ratios of 3.3 (LDH3), 2.6 (LDH4) and 2.1 (LDH5). The results of adsorption experiments showed that LDH5 exhibited an S-type isotherm with a low 2,4-D adsorption capacity due to the low accessibility of 2,4-D to the interlayer space. The accessibility was restricted by the small basal spacing of LDH5 as a result of the parallel orientation of the interlayer nitrate with respect to the hydroxide sheet. Thus, the 2,4-D adsorption occurred mainly on the external surface of the material. On the contrary, LDH3, which has the highest layer charge density among the samples, contains nitrate with an orientation perpendicular to the hydroxide sheet of LDH3. The interlayer nitrate was readily exchanged by 2,4-D. Thus, in addition to the adsorption on the external surface, the replacement of the interlayer nitrate by 2,4-D contributed to a higher adsorbed amount of 2,4-D; the 2,4-D adsorption of LDH3 exhibited an L-type isotherm. For LDH4 that contained interlayer nitrate with both parallel and perpendicular orientations, the adsorption characteristics were between those of LDH3 and LDH5. This work has demonstrated the dependence of 2,4-D adsorption characteristics on the nitrate orientation in LDHs, as a consequence of changing layer charge density.
Subjects
2
4-D
Adsorption
Anion exchange
Guest orientation
Layered double hydroxide
Selective removal
SDGs

[SDGs]SDG6

Type
journal article

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