Wet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixtures
Solvent extraction is an efficient, economical and widely-used technology for the purification of wet process phosphoric acid (WPA). This present work focused on the development of a solvent extraction system, TC, representing tri-n-butyl phosphate (TBP) and cyclohexanol mixtures. The equilibrium ph...
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Serbian Chemical Society
2017-01-01
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doaj-c63ab34c01ce408bb73c1a798099dd292020-11-25T01:06:13ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51391820-74212017-01-0182557959210.2298/JSC161028019L0352-51391700019LWet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixturesLi Xing0Li Jun1Jin Yang2Chen Ming3Feng Dongya4Guo Yunhai5Sichuan University, Department of Chemical Engineering, Chengdu, ChinaSichuan University, Department of Chemical Engineering, Chengdu, ChinaSichuan University, Department of Chemical Engineering, Chengdu, ChinaSichuan University, Department of Chemical Engineering, Chengdu, ChinaSichuan University, Department of Chemical Engineering, Chengdu, ChinaSichuan University, Department of Chemical Engineering, Chengdu, ChinaSolvent extraction is an efficient, economical and widely-used technology for the purification of wet process phosphoric acid (WPA). This present work focused on the development of a solvent extraction system, TC, representing tri-n-butyl phosphate (TBP) and cyclohexanol mixtures. The equilibrium phase diagram of the system H3PO4−H2O−TC at 298.2 K and atmospheric pressure was obtained. The effects of extraction time, phosphoric acid concentration, extractant concentration, temperature and phase volume ratio on extraction efficiency were studied. The extracted complexes were estimated to be 1.8H3PO4 2TC. The extraction process of H3PO4 was exothermic and the enthalpy change, ΔH, was obtained. The solvent mixtures had a high efficiency for phosphoric acid purification via multi-stage counter-current extraction from the industrial WPA in a reciprocating plate extraction column with an H3PO4 extraction yield of 85.08 % at 313.2 K. The stability, extraction efficiency and recycling capability of TC for H3PO4 extraction were also estimated.http://www.doiserbia.nb.rs/img/doi/0352-5139/2017/0352-51391700019L.pdfmixing extractantequilibrium phase diagramextracting mechanismreciprocating plate column |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Li Xing Li Jun Jin Yang Chen Ming Feng Dongya Guo Yunhai |
spellingShingle |
Li Xing Li Jun Jin Yang Chen Ming Feng Dongya Guo Yunhai Wet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixtures Journal of the Serbian Chemical Society mixing extractant equilibrium phase diagram extracting mechanism reciprocating plate column |
author_facet |
Li Xing Li Jun Jin Yang Chen Ming Feng Dongya Guo Yunhai |
author_sort |
Li Xing |
title |
Wet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixtures |
title_short |
Wet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixtures |
title_full |
Wet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixtures |
title_fullStr |
Wet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixtures |
title_full_unstemmed |
Wet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixtures |
title_sort |
wet process of phosphoric acid purification by solvent extraction using tri-n-butyl phosphate and cyclohexanol mixtures |
publisher |
Serbian Chemical Society |
series |
Journal of the Serbian Chemical Society |
issn |
0352-5139 1820-7421 |
publishDate |
2017-01-01 |
description |
Solvent extraction is an efficient, economical and widely-used technology for the purification of wet process phosphoric acid (WPA). This present work focused on the development of a solvent extraction system, TC, representing tri-n-butyl phosphate (TBP) and cyclohexanol mixtures. The equilibrium phase diagram of the system H3PO4−H2O−TC at 298.2 K and atmospheric pressure was obtained. The effects of extraction time, phosphoric acid concentration, extractant concentration, temperature and phase volume ratio on extraction efficiency were studied. The extracted complexes were estimated to be 1.8H3PO4 2TC. The extraction process of H3PO4 was exothermic and the enthalpy change, ΔH, was obtained. The solvent mixtures had a high efficiency for phosphoric acid purification via multi-stage counter-current extraction from the industrial WPA in a reciprocating plate extraction column with an H3PO4 extraction yield of 85.08 % at 313.2 K. The stability, extraction efficiency and recycling capability of TC for H3PO4 extraction were also estimated. |
topic |
mixing extractant equilibrium phase diagram extracting mechanism reciprocating plate column |
url |
http://www.doiserbia.nb.rs/img/doi/0352-5139/2017/0352-51391700019L.pdf |
work_keys_str_mv |
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