Stripping‐based approach for the recovery of volatile fatty acids from anaerobic digestion digestate: preliminary experimental investigations and modelling

Abstract BACKGROUND Volatile fatty acids (VFAs) are widely used across industries: as intermediates in chemical production (e.g . , solvents and polymers), in pharmaceuticals and cosmetics, and as preservatives and health‐promoting additives in food and animal feed. Emerging applications also include bioplastics, bioenergy, and biotechnology. Recovering VFAs from digestate requires downstream processing. Gas stripping has emerged as a promising technique. It transfers VFAs from liquid to gas using air or nitrogen and then recovers them through absorption or condensation. This method is simpler, scalable, and effective even at low concentrations, highlighting its potential for sustainable VFA recovery. RESULTS Using a real digestate at 95 °C and a space velocity of 6 min −1 , the stripping efficiency ranged from 23% for acetic acid to 73% for hexanoic acid. The stripping coefficient varied from 3.4 × 10 −4 min −1 for acetic acid to 1.0 × 10 −2 min −1 for hexanoic acid; the mass transfer coefficient varied from 2.2 × 10 −3 min −1 for acetic acid to 1.0 × 10 −2 min −1 for hexanoic acid. The model showed R 2 between 0.62 and 0.997, with 90% of parity‐plot data on the real digestate within ±30%. CONCLUSIONS Air stripping under alkaline conditions is confirmed as a viable and efficient method for recovering VFAs from a real digestate. Increasing the stripping temperature and the stripping carrier space velocity enhanced VFA recovery performance, with the same trend confirmed for the stripping coefficient and the mass transfer coefficient. Higher molecular weight VFAs exhibited higher recovery efficiencies, notably given the higher market value of hexanoic (caproic) acid compared to the other acids. © 2026 The Author(s). Journal of Chemical Technology and Biotechnology published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry (SCI).

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Journal
Journal of Chemical Technology & Biotechnology
Published
2026-09-16
DOI
https://doi.org/10.1002/jctb.70274
Primary Topic
Anaerobic Digestion and Biogas Production
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article
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article

Stripping‐based approach for the recovery of volatile fatty acids from anaerobic digestion digestate: preliminary experimental investigations and modelling

Valentina Innocenzi, Simeone Chianese, Angelo Fenti, Pasquale Iovino et al.
Journal of Chemical Technology & Biotechnology
Anaerobic Digestion and Biogas Production
article

Stripping‐based approach for the recovery of volatile fatty acids from anaerobic digestion digestate: preliminary experimental investigations and modelling

Valentina Innocenzi, Simeone Chianese, Angelo Fenti, Pasquale Iovino, Dino Musmarra, Marina Prisciandaro, Giovanni Falco
article en

Abstract

Abstract BACKGROUND Volatile fatty acids (VFAs) are widely used across industries: as intermediates in chemical production (e.g . , solvents and polymers), in pharmaceuticals and cosmetics, and as preservatives and health‐promoting additives in food and animal feed. Emerging applications also include bioplastics, bioenergy, and biotechnology. Recovering VFAs from digestate requires downstream processing. Gas stripping has emerged as a promising technique. It transfers VFAs from liquid to gas using air or nitrogen and then recovers them through absorption or condensation. This method is simpler, scalable, and effective even at low concentrations, highlighting its potential for sustainable VFA recovery. RESULTS Using a real digestate at 95 °C and a space velocity of 6 min −1 , the stripping efficiency ranged from 23% for acetic acid to 73% for hexanoic acid. The stripping coefficient varied from 3.4 × 10 −4 min −1 for acetic acid to 1.0 × 10 −2 min −1 for hexanoic acid; the mass transfer coefficient varied from 2.2 × 10 −3 min −1 for acetic acid to 1.0 × 10 −2 min −1 for hexanoic acid. The model showed R 2 between 0.62 and 0.997, with 90% of parity‐plot data on the real digestate within ±30%. CONCLUSIONS Air stripping under alkaline conditions is confirmed as a viable and efficient method for recovering VFAs from a real digestate. Increasing the stripping temperature and the stripping carrier space velocity enhanced VFA recovery performance, with the same trend confirmed for the stripping coefficient and the mass transfer coefficient. Higher molecular weight VFAs exhibited higher recovery efficiencies, notably given the higher market value of hexanoic (caproic) acid compared to the other acids. © 2026 The Author(s). Journal of Chemical Technology and Biotechnology published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry (SCI).

Journal of Chemical Technology & Biotechnology
University of L'Aquila (IT), University of Campania "Luigi Vanvitelli" (IT)
Industry, innovation and infrastructure
Openalex Percentile: Top 15%
Anaerobic Digestion and Biogas Production
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