From an environmental and economic viewpoint, it is a win–win strategy to use materials obtained from renewable resources for the production of high-performance elastomer composites. Lignin, being a renewable biomass, was employed as a functional filler material to obtain an elastomer composite with a higher degree of mechanical performance. In the presence of a suitable coupling agent, an elevated temperature was preferred for the reactive mixing of lignin with polybutadiene rubber (BR). It is quite fascinating that the mechanical performance of this composite was comparable with carbon black-filled composites. The extraordinary reinforcing behavior of lignin in the BR matrix was understood by an available model of rubber reinforcement. In...
Lignin is the second most abundant natural polymer after cellulose. It has high molecular weight and...
Lignin is a remarkable natural polyphenol that provides trees with physical and (bio-)chemical resis...
Creating innovative products requires sustainable processes and eco-innovation in material developme...
From an environmental and economic viewpoint, it is a win-win strategy to use materials obtained fro...
Bio-based plastics and composites have seen increased industry adoption in recent years due to growi...
Ending the fossil fuel era towards a sustainable future will require high-performing renewable mater...
Demand for plant-derived materials has increased in recent years not only to boost the economics in ...
The pursuit of high volume and high value-added applications for lignin has been a long-term challen...
Lignin is a cheap material available in large quantities, thus the interest in its valorization is i...
Lignocellulosic waste materials are the most promising feedstock for generation of a renewable, carb...
Lignin is one of the most abundant biopolymers on earth, constituting approximately 30% of the dry w...
peer-reviewedBiobased poly(ethylene terephthalate) has been successfully blended with isopropyl alco...
Lignins from a steam explosion process in crude and purified forms and modified sulphur-free commerc...
Lignin, one of the most abundant biopolymers, is a renewable, cheap source with great possibilities ...
Two important aspects that should be considered when designing new, sustainable rubber products are ...
Lignin is the second most abundant natural polymer after cellulose. It has high molecular weight and...
Lignin is a remarkable natural polyphenol that provides trees with physical and (bio-)chemical resis...
Creating innovative products requires sustainable processes and eco-innovation in material developme...
From an environmental and economic viewpoint, it is a win-win strategy to use materials obtained fro...
Bio-based plastics and composites have seen increased industry adoption in recent years due to growi...
Ending the fossil fuel era towards a sustainable future will require high-performing renewable mater...
Demand for plant-derived materials has increased in recent years not only to boost the economics in ...
The pursuit of high volume and high value-added applications for lignin has been a long-term challen...
Lignin is a cheap material available in large quantities, thus the interest in its valorization is i...
Lignocellulosic waste materials are the most promising feedstock for generation of a renewable, carb...
Lignin is one of the most abundant biopolymers on earth, constituting approximately 30% of the dry w...
peer-reviewedBiobased poly(ethylene terephthalate) has been successfully blended with isopropyl alco...
Lignins from a steam explosion process in crude and purified forms and modified sulphur-free commerc...
Lignin, one of the most abundant biopolymers, is a renewable, cheap source with great possibilities ...
Two important aspects that should be considered when designing new, sustainable rubber products are ...
Lignin is the second most abundant natural polymer after cellulose. It has high molecular weight and...
Lignin is a remarkable natural polyphenol that provides trees with physical and (bio-)chemical resis...
Creating innovative products requires sustainable processes and eco-innovation in material developme...