Heterogeneity and rigidity of lignocellulose causing resistance to its deconstruction have provided technical and economic challenges in the current biomass conversion processes …
Y Yuan, B Jiang, H Chen, W Wu, S Wu, Y Jin… - Biotechnology for …, 2021 - Springer
Enzymatic hydrolysis of lignocellulose for bioethanol production shows a great potential to remit the rapid consumption of fossil fuels, given the fact that lignocellulose feedstocks are …
B Jiang, H Jiao, X Guo, G Chen, J Guo, W Wu… - Advanced …, 2023 - Wiley Online Library
The utilization of lignin, the most abundant aromatic biomass component, is at the forefront of sustainable engineering, energy, and environment research, where its abundance and …
H Xu, J Peng, Y Kong, Y Liu, Z Su, B Li, X Song… - Bioresource …, 2020 - Elsevier
Deep eutectic solvent (DES) has been considered as a novel green solvent for lignocellulosic biomass pretreatment. The efficiency of DES pretreatment is affected by the …
F Shu, B Jiang, Y Yuan, M Li, W Wu, Y Jin… - …, 2021 - ACS Publications
Bioactive substances, displaying excellent biocompatibility, chemical stability, and processability, could be extensively applied in biomedicine and tissue engineering. In recent …
JY Zhu, X Pan - Renewable and Sustainable Energy Reviews, 2022 - Elsevier
Lignocellulosic plant biomass is recognized as an alternative resource for sustainable production of liquid fuels, chemicals, and polymeric materials through the biorefining …
Lignin, a complex aromatic polymer in terrestrial plants, contributes significantly to biomass recalcitrance to microbial and/or enzymatic deconstruction. To reduce biomass …
Hydrolyzing lignocellulose, the most abundant biomass raw material in nature, into monosaccharides by enzymes and then transforming the sugars into chemicals and fuels by …
Increasing environmental and sustainability concerns, caused by current population growth, has promoted a raising utilization of renewable bio-resources for the production of materials …