Enzymatic approaches for diversifying bioproducts from cellulosic biomass

Abstract

Cellulosic biomass is the most abundantly available natural carbon-based renewable resource on Earth. Its widespread availability, combined with rising awareness, evolving policies, and changing regulations supporting sustainable practices, has propelled its role as a crucial renewable feedstock to meet the escalating demand for eco-friendly and renewable materials, chemicals, and fuels. Initially, biorefinery models using cellulosic biomass focused on single-product platform, primarily monomeric sugars for biofuel. However, since the launch of the first pioneering cellulosic plants in 2014, these models have undergone significant revisions to adapt their biomass upgrading strategy. These changes aim to diversify the bioproduct portfolio and improve the revenue streams of cellulosic biomass biorefineries. Within this area of research and development, enzyme-based technologies can play a significant role by contributing to eco-design in producing and creating innovative bioproducts. This Feature Article highlights our recent progress in harnessing enzymes' biological diversity and inherent selectivity. Our strategy focuses on developing and continuously optimizing sustainable enzyme-based technologies with distinct application approaches. We have advanced technologies for standalone platforms, which produce various forms of cellulose nanomaterials engineered with customized and enhanced properties and high yields. Additionally, we have tailored technologies for integration within a biorefinery concept. This biorefinery approach prioritizes designing tailored processes to establish nanomaterials, such as cellulose and lignin nanoparticles, and bioactive molecules as part of a new multi-bioproduct platform for cellulosic biomass biorefineries. These innovations expand the range of bioproducts that can be produced from cellulosic biomass, transcending the conventional focus on monomeric sugars for biofuel production to include biomaterials biorefinery. This shift thereby contributes to strengthening the Bioeconomy strategy and supporting the achievement of several Sustainable Development Goals (SDGs) of the 2030 Agenda for Sustainable Development.

Article information

Article type
Feature Article
Submitted
01 May 2024
Accepted
25 Jul 2024
First published
26 Jul 2024

Chem. Commun., 2024, Accepted Manuscript

Enzymatic approaches for diversifying bioproducts from cellulosic biomass

V. Arantes, B. Las-Casas, I. Dias, S. L. Yupanqui Mendoza, C. Nogueira and W. F. Marcondes, Chem. Commun., 2024, Accepted Manuscript , DOI: 10.1039/D4CC02114B

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