In this research, the production of levoglucosan (LG) and levoglucosenone (LGO) was improved from acid-impregnated cellulose via fast pyrolysis. Thermogravimetric and kinetic analysis disclosed the production formation mechanism. The impregnation of acid could reduce the activation energy and lower the reaction temperature. Furthermore, the yield of LG from H3PO4- and H2SO4-impregnated cellulose increased significantly (26.4-35.8 wt%) compared with that of pure cellulose (7.5 wt%) pyrolysis at 300 degrees C. At 350 degrees C, 0.1 wt% H3PO4-impregnated cellulose gave a maximum LGO yield (18.3 wt%) via pyrolysis, which increased 36 times concerning that of cellulose without acid impregnation (0.5 wt%). This study exhibited great potential for...
In this study, ball milling and ionic liquid pretreatments were utilized to alter cellulose structur...
The industrial sectors that produce synthetic chemicals and and polymers rely heavily on fossil reso...
This paper presents a novel method for continuous production of a biomass-derived platform chemical,...
In this research, the production of levoglucosan (LG) and levoglucosenone (LGO) was improved from ac...
Fast pyrolysis is a thermochemical process to fragment large biopolymers such as cellulose to chemic...
Fast pyrolysis, which is comparable with the enzyme or acid hydrolysis, should be considered for fur...
Fast pyrolysis, which is comparable with the enzyme or acid hydrolysis, should be considered for fur...
Production of high value biochemicals from lignocellulose biomass via pyrolysis, particularly levogl...
Pyrolytic sugars are fascinating feedstocks for bio-refinery, and it is of high interest to develop ...
Pyrolytic sugars are fascinating feedstocks for bio-refinery, and it is of high interest to develop ...
Attempts to understand and control the formation of levoglucosan, as a key bio-oil compound and an i...
Levoglucosenone (LGO) (6,8-dioxabicyclo[3.2.1]oct-2-en-4-one) is commonly produced by synthetic prep...
The wide availability of biomass resources could present a sustainable and alternative feedstock to ...
The industrial sectors that produce synthetic chemicals and and polymers rely heavily on fossil reso...
The industrial sectors that produce synthetic chemicals and and polymers rely heavily on fossil reso...
In this study, ball milling and ionic liquid pretreatments were utilized to alter cellulose structur...
The industrial sectors that produce synthetic chemicals and and polymers rely heavily on fossil reso...
This paper presents a novel method for continuous production of a biomass-derived platform chemical,...
In this research, the production of levoglucosan (LG) and levoglucosenone (LGO) was improved from ac...
Fast pyrolysis is a thermochemical process to fragment large biopolymers such as cellulose to chemic...
Fast pyrolysis, which is comparable with the enzyme or acid hydrolysis, should be considered for fur...
Fast pyrolysis, which is comparable with the enzyme or acid hydrolysis, should be considered for fur...
Production of high value biochemicals from lignocellulose biomass via pyrolysis, particularly levogl...
Pyrolytic sugars are fascinating feedstocks for bio-refinery, and it is of high interest to develop ...
Pyrolytic sugars are fascinating feedstocks for bio-refinery, and it is of high interest to develop ...
Attempts to understand and control the formation of levoglucosan, as a key bio-oil compound and an i...
Levoglucosenone (LGO) (6,8-dioxabicyclo[3.2.1]oct-2-en-4-one) is commonly produced by synthetic prep...
The wide availability of biomass resources could present a sustainable and alternative feedstock to ...
The industrial sectors that produce synthetic chemicals and and polymers rely heavily on fossil reso...
The industrial sectors that produce synthetic chemicals and and polymers rely heavily on fossil reso...
In this study, ball milling and ionic liquid pretreatments were utilized to alter cellulose structur...
The industrial sectors that produce synthetic chemicals and and polymers rely heavily on fossil reso...
This paper presents a novel method for continuous production of a biomass-derived platform chemical,...