Cellulosic feedstock plays a pivotal role in the production of biofuels, representing a sustainable and abundant resource for renewable energy. Unlike traditional biofuel feedstocks derived from edible crops, cellulosic feedstock comes from non-edible sources such as agricultural residues, grasses, and forestry byproducts. This includes materials like corn stover, wheat straw, switchgrass, and wood chips.
The utilization of cellulosic feedstock offers several advantages for biofuel production. It reduces competition with food crops, mitigates concerns about land use change, and provides a way to repurpose agricultural and forestry waste. Moreover, cellulosic feedstock has the potential to significantly lower greenhouse gas emissions compared to fossil fuels, contributing to efforts to combat climate change. As research and technological advancements continue to improve the efficiency and scalability of cellulosic biofuel production, it holds great promise in driving the transition towards a more sustainable energy future.
Title : A strategic technological roadmap for the future of biodiesel: Catalytic innovation and process intensification.
Suzana Borschiver, Federal University of Rio de Janeiro, UFRJ, Brazil
Title : Hydrogen production from contaminated residual biomass: An integrated gasification and SEWGS process study
Enrico Paris, CREA-IT, Italy
Title : Application of vanadium and tantalum single-site zeolite catalysts in heterogeneous catalysis
Stanislaw Dzwigaj, Sorbonne University, France
Title : Robust MPPT-based design and simulation of integrated solar PV–hydrogen production systems
Elkhatib Kamal, Ecole Centrale de Nantes, France
Title : Green management of enterprises as a response to climate change
Dai Yeun Jeong, Asia Climate Change Education Center, Korea, Republic of
Title : Modeling of anaerobic biodegradation of organic waste
Ivan Simeonov, Institute of Microbiology St. Angeov Bulgarian Academy of Science, Bulgaria