Macromolecular chemistry and physics
Macromolecular chemistry and physics
- 1999-
Dwindling fossil resources, surging energy demand, and global warming account for paradigm change and growing demand for renewable polymer products with low carbon footprint. “Green monomers” from biorefineries, carbon dioxide conversion, and “renewable oil”, gained from plastics' and bio wastes, render synthetic polymers renewable without impairing their property profiles and recycling.
Modalidad de acceso: en línea
1022-1352 (edición impresa) 1521-3935 (edición electrónica) = Macromolecular chemistry and physics
Polímeros--Publicaciones periódicas
Moléculas--Publicaciones periódicas
QD380 / ES
Dwindling fossil resources, surging energy demand, and global warming account for paradigm change and growing demand for renewable polymer products with low carbon footprint. “Green monomers” from biorefineries, carbon dioxide conversion, and “renewable oil”, gained from plastics' and bio wastes, render synthetic polymers renewable without impairing their property profiles and recycling.
Modalidad de acceso: en línea
1022-1352 (edición impresa) 1521-3935 (edición electrónica) = Macromolecular chemistry and physics
Polímeros--Publicaciones periódicas
Moléculas--Publicaciones periódicas
QD380 / ES