The structural evolution of Panicum virgatum lignin during hydrothermal depolymerization was investigated. Product distribution from various temperatures was studied using gas chromatography-mass spectrometry (GC-MS) and gel permeation chromatography (GPC) analysis. The physical-chemical properties of initial lignin, tetrahydrofuran soluble fraction, and char were also comparatively characterized by elemental analysis, scanning electron microscopy (SEM), thermogravimetry (TG), and Fourier transform infrared (FT-IR) spectroscopy. Results showed that both the depolymerization and repolymerization were significantly temperature-dependent. The undesired char formation becomes obvious when the temperature is greater than 180 degrees C. Further i...
Lignin is a very complex heterogeneous biopolymer present in the secondary cell wall of vascular pla...
In this paper we have investigated the changes in kraft lignin structure and morphology upon hydroth...
open13siThis study was funded by the BioValue SPIR, Strategic Platform for Innovation and Research o...
The structural evolution of Panicum virgatum lignin during hydrothermal depolymerization was investi...
In the present work, enzymatic/mild acidolysis lignin (EMAL) was isolated from the raw material Cunn...
The effects of hydrothermal pretreatment (170–180 °C, 30–60 min) on the structural c...
The effects of hydrothermal pretreatment (170–180 °C, 30–60 min) on the structural c...
Abstract Background Effective enzymatic hydrolysis of lignocellulosic biomass benefits from lignin r...
Background: Effective enzymatic hydrolysis of lignocellulosic biomass benefits from...
Alkaline hydrothermal liquefaction (HTL) of lignin-rich enzymatic hydrolysis residues (EnzHR) from w...
Seven different lignin samples, three from Kraft extraction and four from organosolv extraction, wer...
Alkaline hydrothermal liquefaction (HTL) of lignin-rich enzymatic hydrolysis residues (EnzHR) from w...
In this study, reaction pathway of a woody biomass under hydrothermal conditions is investigated in ...
Lignin when depolymerized by a hydrothermal liquefaction process produces a range of phenolics. Such...
In this study, reaction pathway of a woody biomass under hydrothermal conditions is invest...
Lignin is a very complex heterogeneous biopolymer present in the secondary cell wall of vascular pla...
In this paper we have investigated the changes in kraft lignin structure and morphology upon hydroth...
open13siThis study was funded by the BioValue SPIR, Strategic Platform for Innovation and Research o...
The structural evolution of Panicum virgatum lignin during hydrothermal depolymerization was investi...
In the present work, enzymatic/mild acidolysis lignin (EMAL) was isolated from the raw material Cunn...
The effects of hydrothermal pretreatment (170–180 °C, 30–60 min) on the structural c...
The effects of hydrothermal pretreatment (170–180 °C, 30–60 min) on the structural c...
Abstract Background Effective enzymatic hydrolysis of lignocellulosic biomass benefits from lignin r...
Background: Effective enzymatic hydrolysis of lignocellulosic biomass benefits from...
Alkaline hydrothermal liquefaction (HTL) of lignin-rich enzymatic hydrolysis residues (EnzHR) from w...
Seven different lignin samples, three from Kraft extraction and four from organosolv extraction, wer...
Alkaline hydrothermal liquefaction (HTL) of lignin-rich enzymatic hydrolysis residues (EnzHR) from w...
In this study, reaction pathway of a woody biomass under hydrothermal conditions is investigated in ...
Lignin when depolymerized by a hydrothermal liquefaction process produces a range of phenolics. Such...
In this study, reaction pathway of a woody biomass under hydrothermal conditions is invest...
Lignin is a very complex heterogeneous biopolymer present in the secondary cell wall of vascular pla...
In this paper we have investigated the changes in kraft lignin structure and morphology upon hydroth...
open13siThis study was funded by the BioValue SPIR, Strategic Platform for Innovation and Research o...