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Boron removal by anion exchangers impregnated with citric and tartaric acids

Authorized Users Only
1996
Authors
Ristić, Mirjana
Rajaković, Ljubinka V.
Article (Published version)
Metadata
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Abstract
The separation of boron compounds, boric acid and borax, with anion-exchange resins, before and after impregnation with citric and tartaric acids, has been studied. Three different commercially available anion exchangers were selected for this study. The results indicate that ion-exchanging on the examined resins is not quite effective for the removal of boron from boric acid and borax water solution. The presence of citric or tartaric acid is essential for the enhancement of the sorption capacity above that observed for the untreated resins. Sorption data show that citric acid is a more effective impregnant than tartaric acid.
Keywords:
boron / anion exchangers / impregnation / separation / citric acid / tartaric acid
Source:
Separation Science and Technology, 1996, 31, 20, 2805-2814
Publisher:
  • Taylor & Francis Inc, Philadelphia

DOI: 10.1080/01496399608000828

ISSN: 0149-6395

WoS: A1996VX85500005

Scopus: 2-s2.0-0030387895
[ Google Scholar ]
19
17
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/101
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Ristić, Mirjana
AU  - Rajaković, Ljubinka V.
PY  - 1996
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/101
AB  - The separation of boron compounds, boric acid and borax, with anion-exchange resins, before and after impregnation with citric and tartaric acids, has been studied. Three different commercially available anion exchangers were selected for this study. The results indicate that ion-exchanging on the examined resins is not quite effective for the removal of boron from boric acid and borax water solution. The presence of citric or tartaric acid is essential for the enhancement of the sorption capacity above that observed for the untreated resins. Sorption data show that citric acid is a more effective impregnant than tartaric acid.
PB  - Taylor & Francis Inc, Philadelphia
T2  - Separation Science and Technology
T1  - Boron removal by anion exchangers impregnated with citric and tartaric acids
EP  - 2814
IS  - 20
SP  - 2805
VL  - 31
DO  - 10.1080/01496399608000828
UR  - conv_6306
ER  - 
@article{
author = "Ristić, Mirjana and Rajaković, Ljubinka V.",
year = "1996",
abstract = "The separation of boron compounds, boric acid and borax, with anion-exchange resins, before and after impregnation with citric and tartaric acids, has been studied. Three different commercially available anion exchangers were selected for this study. The results indicate that ion-exchanging on the examined resins is not quite effective for the removal of boron from boric acid and borax water solution. The presence of citric or tartaric acid is essential for the enhancement of the sorption capacity above that observed for the untreated resins. Sorption data show that citric acid is a more effective impregnant than tartaric acid.",
publisher = "Taylor & Francis Inc, Philadelphia",
journal = "Separation Science and Technology",
title = "Boron removal by anion exchangers impregnated with citric and tartaric acids",
pages = "2814-2805",
number = "20",
volume = "31",
doi = "10.1080/01496399608000828",
url = "conv_6306"
}
Ristić, M.,& Rajaković, L. V.. (1996). Boron removal by anion exchangers impregnated with citric and tartaric acids. in Separation Science and Technology
Taylor & Francis Inc, Philadelphia., 31(20), 2805-2814.
https://doi.org/10.1080/01496399608000828
conv_6306
Ristić M, Rajaković LV. Boron removal by anion exchangers impregnated with citric and tartaric acids. in Separation Science and Technology. 1996;31(20):2805-2814.
doi:10.1080/01496399608000828
conv_6306 .
Ristić, Mirjana, Rajaković, Ljubinka V., "Boron removal by anion exchangers impregnated with citric and tartaric acids" in Separation Science and Technology, 31, no. 20 (1996):2805-2814,
https://doi.org/10.1080/01496399608000828 .,
conv_6306 .

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