Abstract Wood fibers with high lignin content show promise to function in numerous applications with advantageous properties if the fiber features are appropriately exploited. The present study introduces a new approach to disintegrate and disperse wood fibers from groundwood pulp (GWP) directly to polyol without additional solvent exchanges or chemical modifications. In comparison bleached chemical pulp with low lignin content was ground in the polyol, but only low consistency (1 wt%) operation was possible, whereas up to 5 wt% consistency with GWP was carried out with ease. The micron sized fibers in polyol were reacted with polymeric diphenylmethane diisocyanate to produce fiber reinforced biopolyurethane (bioPU) composites. The mechanic...
Biopolyesters are a way to improve natural fibre composite sustainability. This study explores, for ...
The scope of this work is to introduce the by-product material lignin of the industrial pulping proc...
Poly(lactic acid) (PLA) is one of the most well-known biopolymers. PLA is bio-based, biocompatible, ...
AbstractEcological concerns have resulted in a renewed interest in natural, renewable resources-base...
This work was focused on the production and characterization of microcellular polyurethane (PU) comp...
The purpose of this research work was to develop novel continuous bio-composite fibres with a combin...
Castor oil and microcrystalline cellulose were employed as biomass feedstock to produce bio-based po...
The development of new materials is currently focused on replacing fossil-based plastics with sustai...
Cellulose and lignin are abundant renewable biopolymers that can be used for the manufacture of new,...
ABSTRACT: A natural polyol was prepared from castor oil by alcoholysis with triethanolamine. The oil...
Many materials, man-made and natural, have a composite structure, i.e. they comprise two or more con...
Green composites, composed of bio-based matrices and natural fibers, are a sustainable alternative f...
The utilization of forestry waste resources in the production of polyurethane resins is a promising ...
Fully renewable thermoplastic lignin composites were fabricated. Wood fibre reinforced soft-wood kra...
Abstract (1) Sphagnum mosses are an abundant source of structural molecules, similar to lignocellul...
Biopolyesters are a way to improve natural fibre composite sustainability. This study explores, for ...
The scope of this work is to introduce the by-product material lignin of the industrial pulping proc...
Poly(lactic acid) (PLA) is one of the most well-known biopolymers. PLA is bio-based, biocompatible, ...
AbstractEcological concerns have resulted in a renewed interest in natural, renewable resources-base...
This work was focused on the production and characterization of microcellular polyurethane (PU) comp...
The purpose of this research work was to develop novel continuous bio-composite fibres with a combin...
Castor oil and microcrystalline cellulose were employed as biomass feedstock to produce bio-based po...
The development of new materials is currently focused on replacing fossil-based plastics with sustai...
Cellulose and lignin are abundant renewable biopolymers that can be used for the manufacture of new,...
ABSTRACT: A natural polyol was prepared from castor oil by alcoholysis with triethanolamine. The oil...
Many materials, man-made and natural, have a composite structure, i.e. they comprise two or more con...
Green composites, composed of bio-based matrices and natural fibers, are a sustainable alternative f...
The utilization of forestry waste resources in the production of polyurethane resins is a promising ...
Fully renewable thermoplastic lignin composites were fabricated. Wood fibre reinforced soft-wood kra...
Abstract (1) Sphagnum mosses are an abundant source of structural molecules, similar to lignocellul...
Biopolyesters are a way to improve natural fibre composite sustainability. This study explores, for ...
The scope of this work is to introduce the by-product material lignin of the industrial pulping proc...
Poly(lactic acid) (PLA) is one of the most well-known biopolymers. PLA is bio-based, biocompatible, ...