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Review

Agro-Industrial Wastewaters as Feedstocks for Microbial Lipase Production: Integrating Enzyme Bioprocessing, Effluent Valorization and Wastewater Management

by
Amina Laribi
1,
Doria Naila Bouchedja
1 and
Bartłomiej Zieniuk
2,*
1
Laboratory of Food Sciences, Formulation, Innovation, Valorization & Artificial Intelligence (SAFIVIA), Biomass Production Modeling & Enzyme Valorization Team, Institute of Nutrition and Agri-Food Technologies (INATAA), University of Constantine 1—Frères Mentouri (UFMC1), Route de Aïn El Bey, Constantine 25000, Algeria
2
Department of Chemistry, Institute of Food Sciences, Warsaw University of Life Sciences-SGGW, 159C Nowoursynowska Str., 02-776 Warsaw, Poland
*
Author to whom correspondence should be addressed.
Processes 2026, 14(18), 2989; https://doi.org/10.3390/pr14182989 (registering DOI)
Submission received: 10 August 2026 / Revised: 12 September 2026 / Accepted: 17 September 2026 / Published: 19 September 2026
(This article belongs to the Special Issue Applications of Microorganisms in Wastewater Treatment)

Abstract

Agro-industrial wastewaters contain substantial organic and lipid loads that pose environmental challenges but may also provide potentially low-cost substrates for microbial bioprocessing. This scoping review evaluated the use of agro-industrial wastewaters as fermentation feedstocks for microbial lipase production and their potential integration with wastewater treatment and resource recovery. Previous reviews have largely treated microbial lipase production, waste-derived fermentation substrates, and lipase-based wastewater treatment as separate topics. This review bridges these areas by focusing on liquid agro-industrial wastewaters as fermentation feedstocks and jointly evaluating lipase production, changes in wastewater quality, process conditions, analytical comparability, and technological readiness. Following PRISMA-ScR guidance, Scopus and the Web of Science were searched for studies published from 2016 to 2026, yielding 20 eligible articles. The evidence was heavily concentrated on olive mill wastewater and palm oil mill effluent, whereas other agro-industrial effluents were scarcely investigated. Yeasts, bacteria, filamentous fungi, mixed cultures, and recombinant whole-cell systems were employed, although cultivation strategies, wastewater conditioning, supplementation, and lipase assays varied substantially. Several studies combined lipase production with reductions in chemical oxygen demand, oil and grease, phenolic compounds, or other wastewater constituents. However, most processes remained at the shake-flask scale, while downstream recovery, detailed enzyme characterization, storage stability, catalyst reuse, and controlled scale-up were infrequently investigated. Wastewater-based lipase production therefore represents a promising circular-bioeconomy strategy, but further development requires standardized performance reporting, minimal-input cultivation, integrated final-effluent assessment, scale-up, and formal techno-economic and life-cycle assessment.
Keywords: microbial lipases; olive mill wastewater; palm oil mill effluent; wastewater valorization; submerged fermentation; bioremediation; whole-cell biocatalysts; circular bioeconomy microbial lipases; olive mill wastewater; palm oil mill effluent; wastewater valorization; submerged fermentation; bioremediation; whole-cell biocatalysts; circular bioeconomy

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MDPI and ACS Style

Laribi, A.; Bouchedja, D.N.; Zieniuk, B. Agro-Industrial Wastewaters as Feedstocks for Microbial Lipase Production: Integrating Enzyme Bioprocessing, Effluent Valorization and Wastewater Management. Processes 2026, 14, 2989. https://doi.org/10.3390/pr14182989

AMA Style

Laribi A, Bouchedja DN, Zieniuk B. Agro-Industrial Wastewaters as Feedstocks for Microbial Lipase Production: Integrating Enzyme Bioprocessing, Effluent Valorization and Wastewater Management. Processes. 2026; 14(18):2989. https://doi.org/10.3390/pr14182989

Chicago/Turabian Style

Laribi, Amina, Doria Naila Bouchedja, and Bartłomiej Zieniuk. 2026. "Agro-Industrial Wastewaters as Feedstocks for Microbial Lipase Production: Integrating Enzyme Bioprocessing, Effluent Valorization and Wastewater Management" Processes 14, no. 18: 2989. https://doi.org/10.3390/pr14182989

APA Style

Laribi, A., Bouchedja, D. N., & Zieniuk, B. (2026). Agro-Industrial Wastewaters as Feedstocks for Microbial Lipase Production: Integrating Enzyme Bioprocessing, Effluent Valorization and Wastewater Management. Processes, 14(18), 2989. https://doi.org/10.3390/pr14182989

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