Acid Extraction from Liquid Phase Pyrolysis Oil Using Cyanex®923 and Subsequent Solvent Regeneration

Liquid phase pyrolysis (LPP) oil, an intermediate from biofuel production using second‐generation biomass, is a promising source of biobased platform chemicals like acetic acid, however, displaying a complex, multicomponent mixture. Reactive extraction with Cyanex®923 was investigated for selective...

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Veröffentlicht in:Chemie ingenieur technik 2019-11, Vol.91 (11), p.1582-1588
Hauptverfasser: Painer, Daniela, Treusch, Klara, Schwaiger, Nikolaus, Weiß, Tanja, Pucher, Peter, Siebenhofer, Matthäus
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container_end_page 1588
container_issue 11
container_start_page 1582
container_title Chemie ingenieur technik
container_volume 91
creator Painer, Daniela
Treusch, Klara
Schwaiger, Nikolaus
Weiß, Tanja
Pucher, Peter
Siebenhofer, Matthäus
description Liquid phase pyrolysis (LPP) oil, an intermediate from biofuel production using second‐generation biomass, is a promising source of biobased platform chemicals like acetic acid, however, displaying a complex, multicomponent mixture. Reactive extraction with Cyanex®923 was investigated for selective recovery of acids and subsequent solvent regeneration in distillation at 200 mbar. In a three‐stage extraction 81 % of acids were removed from the LPP oil without loss of Cyanex®923 to the raffinate. Solvent regeneration efficiency of acids was up to 99.7 % with mainly acids and water in the distillate. Liquid phase pyrolysis oil is a renewable source for platform chemicals like acetic acid, using second‐generation biomass. Reactive extraction is a promising technology for selective recovery of acids from multicomponent mixture. This project deals with acid extraction from liquid phase pyrolysis oil and solvent regeneration via distillation.
doi_str_mv 10.1002/cite.201900008
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subjects Biobased acid isolation
Liquid phase pyrolysis oil
Reactive extraction
Solvent regeneration
title Acid Extraction from Liquid Phase Pyrolysis Oil Using Cyanex®923 and Subsequent Solvent Regeneration
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