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Bioéthanol - Agronomie

Bioéthanol - Agronomie

Chaetomella raphigera β-glucosidase D2-BGL has intriguing structural features and a high substrate affinity that renders it an efficient cellulase supplement for lignocellulosic biomass hydrolysis, Biotechnology for Biofuels and Bioproducts

ACS Symposium Series (ACS Publications)

Frontiers QTL for induced resistance against leaf rust in barley

Improved lignocellulose saccharification of a Miscanthus reddish stem mutant induced by heavy‐ion irradiation - Wang - 2020 - GCB Bioenergy - Wiley Online Library

Contribution of above‐ and belowground bioenergy crop residues to soil carbon - Carvalho - 2017 - GCB Bioenergy - Wiley Online Library

Review of the Impacts on Nonrenewable Resources of Land-Use Changes Induced by Non-food Biomass Production

Montardon : des lycéens découvrent la transformation du maïs en bioéthanol - La République des Pyrénées.fr

Chaetomella raphigera β-glucosidase D2-BGL has intriguing structural features and a high substrate affinity that renders it an efficient cellulase supplement for lignocellulosic biomass hydrolysis, Biotechnology for Biofuels and Bioproducts

Bioenergy Underground: Challenges and opportunities for phenotyping roots and the microbiome for sustainable bioenergy crop production - York - 2022 - The Plant Phenome Journal - Wiley Online Library

Agronomie - Tereos - Tereos

Chaetomella raphigera β-glucosidase D2-BGL has intriguing structural features and a high substrate affinity that renders it an efficient cellulase supplement for lignocellulosic biomass hydrolysis, Biotechnology for Biofuels and Bioproducts