Nanofiltration of Succinic Acid in Strong Alkaline Conditions

Klaus Schlackl, Wolfgang Samhaber, Richard Herchl

Research output: Contribution to journalArticlepeer-review

Abstract

Nanofiltration is considered to be an appropriate separation technique in the production of bio-based materials. For the utilization of process streams from the viscose-fiber production, understanding the separation behavior of organic compounds in highly alkaline solutions is necessary. Experiments with succinic acid in sodium hydroxide (NaOH) solutions with varying concentrations up to 5 mol L−1 were performed with the NP030 membrane from Microdyn Nadir. Furthermore, experiments with aqueous disodium succinate and solutions of sodium sulfate in sodium hydroxide were carried out. The influence of concentration ratios and temperature was studied. The Spiegler and Kedem model as well as the Pusch model were applied to fit the experimental data. Additionally, scanning electron microscopy (SEM) and infrared (ATR–IR) measurements were performed to validate the chemical and thermomechanical stability of the membrane. The succinic acid retention varies with its degree of dissociation. In a fully dissociated form, the NaOH concentration shows no impact on the retention. In contrast, the retention of sulfate decreases with increasing NaOH concentration.
Original languageEnglish
Article number147
Number of pages13
JournalMembranes
Volume9
Issue number11
DOIs
Publication statusPublished - Nov 2019

Fields of science

  • 202029 Microwave engineering
  • 203024 Thermodynamics
  • 204 Chemical Process Engineering
  • 204002 Chemical reaction engineering
  • 207106 Renewable energy
  • 207111 Environmental engineering
  • 210006 Nanotechnology
  • 211203 Food processing engineering
  • 211908 Energy research
  • 105109 Geothermics
  • 202034 Control engineering
  • 203016 Measurement engineering
  • 204003 Chemical process engineering
  • 209006 Industrial biotechnology

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