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Citation link: https://doi.org/10.26092/elib/3214

Publisher DOI: https://doi.org/10.1016/j.chemosphere.2015.11.057
Qi_Pichler_Sequential and simultaneous adsorption of Sb(III) and Sb(V) on ferrihydrite_2016_accepted-version.pdf
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Sequential and simultaneous adsorption of Sb(III) and Sb(V) on ferrihydrite: Implications for oxidation and competition


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Authors: Qi, Pengfei 
Pichler, Thomas  
Abstract: 
Antimony (Sb) is a naturally occurring element of growing environmental concern whose toxicity, adsorption behavior and other chemical properties are similar to that of arsenic (As). However, less is known about Sb compared to As. Individual and simultaneous adsorption experiments with Sb(III) and Sb(V) were conducted in batch mode with focus on the Sb speciation of the remaining liquid phase during individual Sb(III) adsorption experiments. The simultaneous adsorption and oxidation of Sb(III) was confirmed by the appearance of Sb(V) in the solution at varying Fe/Sb ratios (500, 100 and 8) and varying pH values (3.8, 7 and 9). This newly formed Sb(V) was subsequently removed from solution at a Fe/Sb ratio of 500 or at a pH of 3.8. However, more or less only Sb(V) was observed in the liquid phase at the end of the experiments at lower Fe/Sb ratios and higher pH, indicating that competition took place between the newly formed Sb(V) and Sb(III), and that Sb(III) outcompeted Sb(V). This was independently confirmed by simultaneous adsorption experiments of Sb(III) and Sb(V) in binary systems. Under such conditions, the presence of Sb(V) had no influence on the adsorption of Sb(III) while Sb(V) adsorption was significantly inhibited by Sb(III) over a wide pH range (4–10). Thus, in the presence of ferrihydrite and under redox conditions, which allow the presence of both Sb species, Sb(V) should be the dominant species in aquatic environments, since Sb(III) is adsorbed preferentially and at the same time oxidized to Sb(V).
Keywords: Antimony(III,V); ferrihydrite; Adsorption; Oxidation; Competition
Issue Date: Feb-2016
Publisher: Elsevier Science
Project: China Scholarship Council 
DFG grant 
Grant number: CSC[2011]305
INST 144/288-1
Journal/Edited collection: Chemosphere 
Start page: 55
End page: 60
Volume: 145
Type: Artikel/Aufsatz
ISSN: 1879-1298
Secondary publication: yes
Document version: Postprint
DOI: 10.26092/elib/3214
URN: urn:nbn:de:gbv:46-elib81806
Institution: Universität Bremen 
Faculty: Fachbereich 05: Geowissenschaften (FB 05) 
Institute: Fachgebiet Geochemie und Hydrogeologie 
Appears in Collections:Forschungsdokumente

  

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