Advances in polyhydroxyalkanoate (PHA) production from renewable waste materials using halophilic microorganisms: A comprehensive review
Author | Ben Abdallah, Manel |
Author | Saadaoui, Imen |
Author | Al-Ghouti, Mohammad A. |
Author | Zouari, Nabil |
Author | Hahladakis, John N. |
Author | Chamkha, Mohamed |
Author | Sayadi, Sami |
Available date | 2025-10-07T09:41:07Z |
Publication Date | 2025-02-01 |
Publication Name | Science of The Total Environment |
Identifier | http://dx.doi.org/10.1016/j.scitotenv.2025.178452 |
Citation | Abdallah, Manel Ben, Imen Saadaoui, Mohammad A. Al-Ghouti, Nabil Zouari, John N. Hahladakis, Mohamed Chamkha, and Sami Sayadi. "Advances in polyhydroxyalkanoate (PHA) production from renewable waste materials using halophilic microorganisms: A comprehensive review." Science of The Total Environment 963 (2025): 178452. |
ISSN | 00489697 |
Abstract | Polyhydroxyalkanoates (PHAs) are biodegradable and biocompatible polymers that can replace conventional plastics in different sectors. However, PHA commercialization is hampered due to their high production cost resulting from the use of high purity substrates, their low conversion into PHAs by using conventional microbial chassis and the high downstream processing cost. Taking these challenges into account, researchers are focusing on the use of waste by-products as alternative low-cost feedstocks for fast-growing and contamination-resistant halophilic microorganisms (Bacteria, Archaea…). This is of great importance since these extremophiles can use low-cost substrates, produce high PHA content of copolymers or different PHA monomer compositions. They can present high potential for reducing the costs of PHA fermentation and recovery processes, making their use in commercial applications easier. However, little is known about the potential of halophiles in advancing the PHA production from renewable waste materials at lab-scale and their successful implementation at industrial-scale. This review presents actual advances in PHA production by halophilic pure/engineered species (e.g. Haloferax mediterranei, Halomonas spp.) and mixed microbial consortia (MMC) using organic waste streams. The development of optimal PHA production process involves robust genetic engineering strategies, advanced fermentation processes using mixed microbial consortia versus pure/engineered strains as well as algal biomass as feedstocks. |
Sponsor | This paper was supported by Qatar University Internal Grants (No. QUCG-CAS-24/25-484). We also thank the reviewers for their helpful comments on this manuscript. |
Language | en |
Publisher | Elsevier |
Subject | Polyhydroxyalkanoates Halophiles Renewable waste materials Advances Cost-effective processes Challenges Potential applications |
Type | Article |
Volume Number | 963 |
ESSN | 1879-1026 |
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Center for Sustainable Development Research [359 items ]