Additional file 1: Table S1. Modelling details. Fitted optimum parameters and the parameter standard deviations of the best fitting parameter sets. Figure S1. Non-linear hydrolysis standard. Figure S2. BET-isotherms of Congo Red adsorption and Langmuir-isotherms of Azure B adsorption
Additional file 1: Table S1. Glucose and xylose release after hydrolysis of lignin-rich residues usi...
Additional file 2. Schematic of algorithm for EG action for cellulose hydrolysis
The supramolecular structures of a substrate, such as crystallinity, specific surface area, average ...
Additional file 1: Table S1. Hexose yields (% cellulose) released from enzymatic hydrolysis after pr...
Background: Explaining the reduction of hydrolysis rate during lignocellulose hydrolysis is a challe...
Additional file 1: Fig. S1. Effects of severity factors (SFs, logR0) on the (A) average size and (B)...
Maximizing enzymatic hydrolysis performance can be achieved through the combination of experimental ...
Additional file 1: Figure S1. Saccharification of pretreated Norway spruce in the absence (a, b) or ...
Additional file 1: Figure S1. Effects of the individual pretreatment variables on the saccharificati...
Fractionation of lignocellulose materials to sugars is a major strategy for the production of renewa...
Additional file 1: Table S1. LF-NMR relaxometry data for pretreated materials, modified materials, a...
Pretreatment of cellulose with an industrial cellulosic solvent, N-methylmorpholine-N-oxide, showed ...
Additional file 2: Figure S2. Effects of temperature on relative conversion to sugars (Conditions: v...
Additional file 1: Table S1. Contains experimental results from enzymatic hydrolysis experiment
Simultaneous saccharification and fermentation (SSF) and simultaneous saccharification and coferment...
Additional file 1: Table S1. Glucose and xylose release after hydrolysis of lignin-rich residues usi...
Additional file 2. Schematic of algorithm for EG action for cellulose hydrolysis
The supramolecular structures of a substrate, such as crystallinity, specific surface area, average ...
Additional file 1: Table S1. Hexose yields (% cellulose) released from enzymatic hydrolysis after pr...
Background: Explaining the reduction of hydrolysis rate during lignocellulose hydrolysis is a challe...
Additional file 1: Fig. S1. Effects of severity factors (SFs, logR0) on the (A) average size and (B)...
Maximizing enzymatic hydrolysis performance can be achieved through the combination of experimental ...
Additional file 1: Figure S1. Saccharification of pretreated Norway spruce in the absence (a, b) or ...
Additional file 1: Figure S1. Effects of the individual pretreatment variables on the saccharificati...
Fractionation of lignocellulose materials to sugars is a major strategy for the production of renewa...
Additional file 1: Table S1. LF-NMR relaxometry data for pretreated materials, modified materials, a...
Pretreatment of cellulose with an industrial cellulosic solvent, N-methylmorpholine-N-oxide, showed ...
Additional file 2: Figure S2. Effects of temperature on relative conversion to sugars (Conditions: v...
Additional file 1: Table S1. Contains experimental results from enzymatic hydrolysis experiment
Simultaneous saccharification and fermentation (SSF) and simultaneous saccharification and coferment...
Additional file 1: Table S1. Glucose and xylose release after hydrolysis of lignin-rich residues usi...
Additional file 2. Schematic of algorithm for EG action for cellulose hydrolysis
The supramolecular structures of a substrate, such as crystallinity, specific surface area, average ...