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  4. The influence of Si(iv) on the reactivity of [Fe(III)]/[Fe(II)] couples for 2-nitrophenol reduction in γ-Al2O3 suspensions
 
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The influence of Si(iv) on the reactivity of [Fe(III)]/[Fe(II)] couples for 2-nitrophenol reduction in γ-Al2O3 suspensions

Journal
RSC Advances
Journal Volume
8
Journal Volume
8
Journal Issue
14
Journal Issue
14
Pages
7465-7472
Start Page
7465
End Page
7472
ISSN
20462069
Date Issued
2018
Author(s)
Tao, Liang
SHAN-LI WANG  
Li, Fang-Bai
Yu, Nin-Ya
Wu, Ke
DOI
10.1039/c7ra13201h
URI
https://www.scopus.com/pages/publications/85042416305?origin=resultslist
URL
https://www2.scopus.com/inward/record.uri?eid=2-s2.0-85042416305&doi=10.1039%2fc7ra13201h&partnerID=40&md5=2b7c5b4807377296b28c33218d8bcf11
Abstract
In a natural environment, Fe(ii) adsorbed onto the surfaces of natural particles to form various surface complex species can influence the transformation of contaminants. The reductive reactivity of the [Fe(iii)]/[Fe(ii)] couples are close correlated with the surrounding conditions. In this study, we investigated the effects of Si(iv) on the reductive reactivity of [Fe(iii)]/[Fe(ii)] couples adsorbed onto γ-Al2O3. Experiments were conducted under different conditions to investigate the effects of Si(iv) on the reactivity of [Fe(iii)]/[Fe(ii)] couples for 2-nitrophenol (2-NP, selected as the model pollutant) reduction in γ-Al2O3 suspensions. Kinetics results revealed that chemical adsorption is the rate limiting step in Fe(ii) and Si(iv) adsorption processes and the reduction of 2-NP is an endothermic reaction. The linear correlations between the reduced peak oxidation potential (Ep) (versus SCE) and 2-NP reduction rate (lnk), and between the adsorbed Fe(ii) density (ρFe(II)) and lnk, illustrated that Ep and ρFe(II) are two key factors in the inhibiting effects of Si(iv) on the reductive reactivity of Fe(iii)/Fe(ii) couples on γ-Al2O3. The results of Fe K-edge X-ray absorption spectroscopy revealed that the increase of Si(iv) concentration resulted in the gradual change in the composition of the adsorbed Fe species from pure AlOFe+ (γ-Al2O3 surface-bound Fe(ii) species with higher reductive reactivity) to a mixture of AlOFe+ and SiOFe+ (SiO2 surface-bound Fe(ii) species with lower reductive reactivity), leading to the decrease in ρFe(II), the positive shift in Ep, the increase in activation energy (Ea), and consequently the decrease in the reduction rate (lnk) of 2-NP.
SDGs

[SDGs]SDG6

Publisher
Royal Society of Chemistry
Type
journal article

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