The polydispersity of commercially available kraft lignins (KLs) is one of the factors limiting their applications in polymer-based materials. A prerequisite is thus to develop lignin fractionation strategies compatible with industrial requirements and restrictions. For this purpose, a solvent-based lignin fractionation technique has been addressed. The partial solubility of KL in common industrial solvents compliant with the requirements of sustainable chemistry was studied, and the results were discussed in relation to Hansen solubility parameters. Based on this screening, a solvent sequence is proposed, which is able to separate well-defined KL fractions with low polydispersity
An alkali lignin (OL) with a weight-average molecular weight (Mw) of 11646 g/mol was used to prepare...
Softwood kraft lignin SKL was fractionated using aprotic acetone and protic methanol to yield both p...
Technical lignins, typically obtained from the biorefining of lignocellulosic raw materials, represe...
The polydispersity of commercially available kraft lignins (KLs) is one of the factors limiting thei...
A simple approach for the fractionation of industrial softwood kraft lignin is presented in this wor...
This work summarizes the impact of solvent fractionation on the chemical structure, antioxidant acti...
Abstract Lignin solubility is a varying property, as depending on the type of lignin and its origin...
This work summarizes the impact of solvent fractionation on the chemical structure, antioxidant acti...
Technical lignins are complex mixtures of polymers with molecules of different molar masses, number ...
Refining of industrial lignin to produce homogeneous fractions is essential for high-value applicati...
Sequential extraction method was applied to lignins from hardwood and softwood isolated by kraft and...
The aim of this work is to develop a novel green solvent based sustainable process to refine lignin ...
There is growing demand for a more efficient use of polymers that originate from renewable feedstock...
An alkali lignin (OL) with a weight-average molecular weight (Mw) of 11646 g/mol was used to prepare...
An alkali lignin (OL) with a weight-average molecular weight (Mw) of 11646 g/mol was used to prepare...
Softwood kraft lignin SKL was fractionated using aprotic acetone and protic methanol to yield both p...
Technical lignins, typically obtained from the biorefining of lignocellulosic raw materials, represe...
The polydispersity of commercially available kraft lignins (KLs) is one of the factors limiting thei...
A simple approach for the fractionation of industrial softwood kraft lignin is presented in this wor...
This work summarizes the impact of solvent fractionation on the chemical structure, antioxidant acti...
Abstract Lignin solubility is a varying property, as depending on the type of lignin and its origin...
This work summarizes the impact of solvent fractionation on the chemical structure, antioxidant acti...
Technical lignins are complex mixtures of polymers with molecules of different molar masses, number ...
Refining of industrial lignin to produce homogeneous fractions is essential for high-value applicati...
Sequential extraction method was applied to lignins from hardwood and softwood isolated by kraft and...
The aim of this work is to develop a novel green solvent based sustainable process to refine lignin ...
There is growing demand for a more efficient use of polymers that originate from renewable feedstock...
An alkali lignin (OL) with a weight-average molecular weight (Mw) of 11646 g/mol was used to prepare...
An alkali lignin (OL) with a weight-average molecular weight (Mw) of 11646 g/mol was used to prepare...
Softwood kraft lignin SKL was fractionated using aprotic acetone and protic methanol to yield both p...
Technical lignins, typically obtained from the biorefining of lignocellulosic raw materials, represe...