Advances in Microbial Biotechnology for Sustainable Alternatives to Petroleum-Based Plastics: A Comprehensive Review of Polyhydroxyalkanoate Production

Author:

González-Rojo Silvia1ORCID,Paniagua-García Ana Isabel2ORCID,Díez-Antolínez Rebeca2ORCID

Affiliation:

1. Department of Chemistry and Applied Physics, Chemical Engineering Area, Campus de Vegazana s/n, University of León, 24071 León, Spain

2. Centro de Biocombustibles y Bioproductos, Instituto Tecnológico Agrario de Castilla y León (ITACyL), Polígono Agroindustrial del Órbigo p. 2-6, Villarejo de Órbigo, 24358 León, Spain

Abstract

The industrial production of polyhydroxyalkanoates (PHAs) faces several limitations that hinder their competitiveness against traditional plastics, mainly due to high production costs and complex recovery processes. Innovations in microbial biotechnology offer promising solutions to overcome these challenges. The modification of the biosynthetic pathways is one of the main tactics; allowing for direct carbon flux toward PHA formation, increasing polymer accumulation and improving polymer properties. Additionally, techniques have been implemented to expand the range of renewable substrates used in PHA production. These feedstocks are inexpensive and plentiful but require costly and energy-intensive pretreatment. By removing the need for pretreatment and enabling the direct use of these raw materials, microbial biotechnology aims to reduce production costs. Furthermore, improving downstream processes to facilitate the separation of biomass from culture broth and the recovery of PHAs is critical. Genetic modifications that alter cell morphology and allow PHA secretion directly into the culture medium simplify the extraction and purification process, significantly reducing operating costs. These advances in microbial biotechnology not only enhance the efficient and sustainable production of PHAs, but also position these biopolymers as a viable and competitive alternative to petroleum-based plastics, contributing to a circular economy and reducing the dependence on fossil resources.

Publisher

MDPI AG

Reference89 articles.

1. Plastics in biosolids from 1950 to 2016: A function of global plastic production and consumption;Okoffo;Water Res.,2021

2. (2023). European Bioplastics Plastics—The Fast Facts 2023, European Bioplastics.

3. Ritchie, H., and Roser, M. (2024, July 01). How Much Plastic Waste Ends Up in the Ocean? Our World in Data. Available online: https://ourworldindata.org/how-much-plastic-waste-ends-up-in-the-ocean.

4. Micro- and nanoplastics: Contamination routes of food products and critical interpretation of detection strategies;Sohail;Sci. Total Environ.,2023

5. Transgenerational impacts of micro(nano)plastics in the aquatic and terrestrial environment;Junaid;J. Hazard. Mater.,2023

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