Current perspectives on acidogenic fermentation to produce volatile fatty acids from waste

Современные подходы к ацидогенной ферментации для получения летучих жирных кислот из отходов
Maria Ramos-Suarez, Yue Zhang, Victoria Outram
2021-02-13

acidogenic fermentationin situ product recoverylignocellulosic feedstocksvolatile fatty acidswaste valorization
Abstract Volatile fatty acids (VFAs) are key platform chemicals used in a multitude of industries including chemicals, pharmaceuticals, food and agriculture. The current route for VFA production is petrochemical based. VFAs can be biologically produced using organic wastes as substrate, therefore directly contributing to a sustainable economy. This process is commonly known as acidogenic fermentation (AF). This review explores the current research on the development of AF processes optimized for VFA production. Three process steps are considered: feedstock pretreatment, fermentation, and primary product recovery with a focus on in situ recovery. Pretreatment is required for recalcitrant feedstocks, especially lignocellulosic substrates. Different pretreatment techniques for AF application have not been studied in depth. The operational parameters of AF (temperature, pH, hydraulic retention time, substrate concentration, etc.) highly influence microbial activity, VFA yields and product distribution. Optimum conditions are ultimately dependent on substrate composition, however, there is indication that certain operational ranges are beneficial for most feedstocks. VFA recovery and purification are necessary for chemical applications. When recovery is performed in situ, it can help relieve product-induced inhibition and keep alkalinity levels stable enabling further waste degradation. Many techniques have been tested, but none are directly compatible with the fermentation conditions tested. Bio-VFAs have the potential to aid in developing a circular economy, but further development is required. Processes need to be developed with the product market in mind, considering both process integration and systematic process optimization.
1
Acidogenic fermentation can biologically produce volatile fatty acids from organic wastes, offering a sustainable alternative to petrochemical production.
2
Commercially viable bio-VFA production requires further process integration and systematic optimization aligned with target product markets.
3
Fermentation temperature, pH, hydraulic retention time, and substrate concentration strongly affect microbial activity, VFA yields, and product distribution.
4
In situ VFA recovery may reduce product inhibition, stabilize alkalinity, and enable further waste degradation, but existing recovery methods are not directly compatible with fermentation conditions.
5
Optimal operating conditions depend on feedstock composition, although some beneficial parameter ranges may apply broadly across substrates.
6
The process comprises feedstock pretreatment, fermentation, and primary VFA recovery, with pretreatment particularly important for recalcitrant lignocellulosic substrates.

acidogenic fermentation of organic wastes to produce volatile fatty acids

optimization of feedstock pretreatment, fermentation operating conditions, and in situ VFA recovery to improve yields, product distribution, and process integration

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2021-02-13
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Maria Ramos-Suarez
Yue Zhang
Victoria Outram
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