ZERO WORLD RESEARCHLiterature database on amino acids & organic acids

Understanding the Role of pH Regulation and Neutralizing Agents in Organic Acid Production and Growth of Aspergillus oryzae.

Biotechnology and bioengineering2026Hartmann L, Martin MC, Neumann A, et al.
Study designOther primary literature
SubjectUnknown

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Study design
Other primary literature
Subject
Unknown
Publication year
2026
Source
doi.org
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Shown here
Publication status
Corrected
Status checked
17 Aug 2026
Collected
3 Aug 2026
Freshness
Current
Review stage
Automated
Record status
Published

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Publication status: Corrected

Europe PMC relationship metadata: corrected_by.

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Abstract

With growing interest in the valorization of renewable resources, the microbial production of organic acids using Aspergillus oryzae has gained attention. However, process parameters such as pH and neutralizing agents remain insufficiently understood. We investigated the effect of pH and different neutralizers on the production of malic, succinic, fumaric, pyruvic and citric acid and fungal growth using offline sampling and online monitoring of respiratory activity. Neutralizers included NaOH, Na2CO3, KOH, Mg(OH)2, Ca(OH)2, and CaCO3 and were compared to the conventional use of excess CaCO3. Using Na2CO3, malic acid reached 33.18 g L-1 with a yield of 0.54 g g-1 from glucose and a productivity of 0.14 g L-1 h-1. KOH enabled the highest citric acid concentration of 9.12 g L-1 with 0.18 g g-1 and 0.04 g L-1 h-1. At controlled pH with NaOH, pH 7.00 resulted in 39.14 g L-1 malic acid with 0.60 g g-1 and 0.17 g L-1 h-1. Citric acid peaked at pH 5.50 with 20.18 g L-1, 0.36 g g-1 and 0.09 g L-1 h-1. Under dynamic pH conditions, acidification suppressed the production of most acids, while citric acid was produced exclusively at low pH. Off-gas analysis at controlled pH revealed increased respiratory activity under acidic conditions, indicating active pH homeostasis. Furthermore, we detected a nutrient limitation via respiration monitoring in a medium widely used for decades, uncovering untapped optimization potential in previously published studies. These findings highlight the importance of pH and neutralizer selection for improving microbial organic acid production.

MeSH

Aspergillus oryzaeCarboxylic AcidsHydrogen-Ion ConcentrationMalates

DOI 10.1002/bit.70091

PMID 41171092

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