A review of volatile fatty acids production from organic wastes: Intensification techniques and separation methods

High value-added products from organic waste fermentation have garnered increasing concern in modern society. VFAs are short-chain fatty acids, produced as intermediate products during the anaerobic fermentation of organic matter. VFAs can serve as an essential organic carbon source to produce subst...

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Veröffentlicht in:Journal of environmental management 2024-06, Vol.360, p.121062, Article 121062
Hauptverfasser: Sun, Shushuang, Wang, Xuemei, Cheng, Shikun, Lei, Yuxin, Sun, Wenjin, Wang, Kexin, Li, Zifu
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Sprache:eng
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Zusammenfassung:High value-added products from organic waste fermentation have garnered increasing concern in modern society. VFAs are short-chain fatty acids, produced as intermediate products during the anaerobic fermentation of organic matter. VFAs can serve as an essential organic carbon source to produce substitutable fuels, microbial fats and oils, and synthetic biodegradable plastics et al. Extracting VFAs from the fermentation broths is a challenging task as the composition of suspensions is rather complex. In this paper, a comprehensive review of methods for VFAs production, extraction and separation are provided. Firstly, the methods to enhance VFAs production and significant operating parameters are briefly reviewed. Secondly, the evaluation and detailed discussion of various VFAs extraction and separation technologies, including membrane separation, complex extraction, and adsorption methods, are presented, highlighting their specific advantages and limitations. Finally, the challenges encountered by different separation technologies and novel approaches to enhance process performance are highlighted, providing theoretical guidance for recycling VFAs from organic wastes efficiently. [Display omitted] •The current status of research on VFAs produced from organic wastes was described.•Key factors have been discussed to enhance the performance of fermentation systems.•Key methods for intensifying the fermentation process have been explored and compared.•Feasible methods for VFA extraction are provided, focusing on integrated membrane technology.•Challenges and perspectives for the extraction and purification of VFAs are presented.
ISSN:0301-4797
1095-8630
1095-8630
DOI:10.1016/j.jenvman.2024.121062