Recent Advances in Food Waste Transformations into Essential Bioplastic Materials

Author:

Giwa Abdulmoseen Segun1,Shafique Ehtisham2ORCID,Ali Nasir2,Vakili Mohammadtaghi3ORCID

Affiliation:

1. School of Civil and Environmental Engineering, Nanchang Institute of Science and Technology, Nanchang 330108, China

2. Department of Biological and Health Sciences, Pak-Austria Fachhochschule: Institute of Applied Sciences and Technology, Khanpur Road Haripur 22621, Pakistan

3. Orlen Unicre a.s., Revolǔcní 1521/84, 400 01 Ústí nad Labem, Czech Republic

Abstract

Lignocellulose is a major biopolymer in plant biomass with a complex structure and composition. It consists of a significant amount of high molecular aromatic compounds, particularly vanillin, syringeal, ferulic acid, and muconic acid, that could be converted into intracellular metabolites such as polyhydroxyalkanoates (PHA) and hydroxybutyrate (PHB), a key component of bioplastic production. Several pre-treatment methods were utilized to release monosaccharides, which are the precursors of the relevant pathway. The consolidated bioprocessing of lignocellulose-capable microbes for biomass depolymerization was discussed in this study. Carbon can be stored in a variety of forms, including PHAs, PHBs, wax esters, and triacylglycerides. From a biotechnology standpoint, these compounds are quite adaptable due to their precursors’ utilization of hydrogen energy. This study lays the groundwork for the idea of lignocellulose valorization into value-added products through several significant dominant pathways.

Funder

Start up funding

Publisher

MDPI AG

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