Ecofriendly fully bio-composites based on polyamide 11 (PA11) and lignin have been prepared on the entire concentration range using a twin-screw extruder. In this work, PA11 was blended with lignin by direct extrusion technology without any chemical pre- or in-situ- modifications or physical pretreatments. The presence of various organic and inorganic impurities in the selected technical lignin have been maintained. The incorporation of this cheap renewable material from biomass in bio-based PA11 was inspected by an array of characterization tools. Also, the effect of the presence of lignin on the morphology and on the mechanical properties of the resulting materials was examined. Finally, in-situ investigation of structural evolution in PA...
The main objective was to develop technologies and competences enabling the production of novel com-...
La fibre de carbone (FC) est un matériau incontournable de l’industrie composite haute performance. ...
The development of high value technologies from waste resources is critical to tackle the depletion...
Environmentally friendly bio-filled composites of various proportions of polyamide 6 (PA6) and techn...
Carbon fibers (CF) are the essential reinforcing material in high performance composite industry. Th...
Hydroxypropyl modified lignin (TcC) and organosolv lignin (TcA) were melt blended with two types of ...
The compatability of hardwood lignin (TcA)/bio-polyamide (PA) blends, prepared by melt compounding ...
Replacement of polymers from petrochemicals by bio-based polymers for the manufacture of textile fib...
This study investigates the influence of various lignins and their content on the thermal stability ...
Nylon/polyamide (PA6) is a major cause of ocean plastic pollution because of its extended use in com...
Lignin is a polyol and also polyphenol in plant stem and the second most abundant natural polymer co...
Due to depleting resources for fuel and chemical production, new sustainable and renewable materials...
A greater proportion of polymer-based three-dimensional (3D) printing materials are synthetic petro...
Lignin is a polymeric constituent of vascular plants’ pectocellulosic walls. It is a by-product, poo...
Fully renewable thermoplastic lignin composites were fabricated. Wood fibre reinforced soft-wood kra...
The main objective was to develop technologies and competences enabling the production of novel com-...
La fibre de carbone (FC) est un matériau incontournable de l’industrie composite haute performance. ...
The development of high value technologies from waste resources is critical to tackle the depletion...
Environmentally friendly bio-filled composites of various proportions of polyamide 6 (PA6) and techn...
Carbon fibers (CF) are the essential reinforcing material in high performance composite industry. Th...
Hydroxypropyl modified lignin (TcC) and organosolv lignin (TcA) were melt blended with two types of ...
The compatability of hardwood lignin (TcA)/bio-polyamide (PA) blends, prepared by melt compounding ...
Replacement of polymers from petrochemicals by bio-based polymers for the manufacture of textile fib...
This study investigates the influence of various lignins and their content on the thermal stability ...
Nylon/polyamide (PA6) is a major cause of ocean plastic pollution because of its extended use in com...
Lignin is a polyol and also polyphenol in plant stem and the second most abundant natural polymer co...
Due to depleting resources for fuel and chemical production, new sustainable and renewable materials...
A greater proportion of polymer-based three-dimensional (3D) printing materials are synthetic petro...
Lignin is a polymeric constituent of vascular plants’ pectocellulosic walls. It is a by-product, poo...
Fully renewable thermoplastic lignin composites were fabricated. Wood fibre reinforced soft-wood kra...
The main objective was to develop technologies and competences enabling the production of novel com-...
La fibre de carbone (FC) est un matériau incontournable de l’industrie composite haute performance. ...
The development of high value technologies from waste resources is critical to tackle the depletion...