Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre structure is one key determinant for a highly reactive pulp. Mechanical and enzymatic treatments are known to improve fibre reactivity and more recently, the combination of mechano-enzymatic treatment has been shown to synergistically enhance the beneficial effect. The aim of this work was to do a systematic study on the effect of dry matter content during enzymatic modification of fibres and define the conditions that optimally improve fibre porosity. The combined mechano-enzymatic treatments at 15–25 w% consistency had the most pronounced effect on fibre porosity and morphology analysed by solute exclusion technique, nitrogen sorption and scannin...
Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was studied a...
Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was studied a...
The properties of fibre products are determined by the physical and chemical properties of the fibre...
Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre struct...
Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre struct...
Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre struct...
Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre struct...
The use of paper grade pulp is an intriguing possibility for broadening the raw material base for re...
Dissolving grade pulps are used as raw material for manufacture of regenerated cellulose fibres and ...
Dissolving grade pulps are used as raw material for manufacture of regenerated cellulose fibres and ...
An enzymatic preparation consisting of cellulases and hemicellulases significantly affected the drai...
Abstract: Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was...
Abstract: Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was...
Dissolving pulps are used to manufacture various cellulose derived products through cellulose dissol...
Dissolving pulps are used to manufacture various cellulose derived products through cellulose dissol...
Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was studied a...
Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was studied a...
The properties of fibre products are determined by the physical and chemical properties of the fibre...
Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre struct...
Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre struct...
Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre struct...
Fibre reactivity is essential for cellulose dissolution and derivatisation and a porous fibre struct...
The use of paper grade pulp is an intriguing possibility for broadening the raw material base for re...
Dissolving grade pulps are used as raw material for manufacture of regenerated cellulose fibres and ...
Dissolving grade pulps are used as raw material for manufacture of regenerated cellulose fibres and ...
An enzymatic preparation consisting of cellulases and hemicellulases significantly affected the drai...
Abstract: Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was...
Abstract: Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was...
Dissolving pulps are used to manufacture various cellulose derived products through cellulose dissol...
Dissolving pulps are used to manufacture various cellulose derived products through cellulose dissol...
Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was studied a...
Enzymatic modification of bleached softwood kraft fibres for improved fibre reactivity was studied a...
The properties of fibre products are determined by the physical and chemical properties of the fibre...