AbstractCatalytic upgrading of paddy husk was performed over 10-MR zeolites (MCM-22, ITQ-2 and ZSM-5) in a drop type fixed-bed reactor. This work investigated the role of structure and acidity of zeolites on pyrolysis-oil yield and degree of deoxygenation. Catalytic pyrolysis experiments were carried out at the catalyst/biomass ratio (0.05 -0.5) at temperature of 450°C. The oil yield decreased by using catalyst and this decrease oil yield is attributed to catalytic cracking of bio-oil vapor on the catalyst. The route for deoxygenation of pyrolysis vapors was identified to be dehydration, decarboxylation and decarboxylation. ITQ-2 showed high degree of deoxygenation as compare to MCM-22 which is due to more accessible external active sites o...
The conversion of lignocellulosic biomass by catalytic fast pyrolysis (CFP) is a promising route to ...
The behaviour of HZSM-5 zeolite in the upgrading of a wood pyrolysis oil produced in the ENEL fast-p...
The presence of oxygenated compounds in pyrolytic oil makes it highly acidic and unsuitable energy s...
AbstractCatalytic upgrading of paddy husk was performed over 10-MR zeolites (MCM-22, ITQ-2 and ZSM-5...
Bio-oil produced from conventional flash pyrolysis has poor quality and requires expensive upgrading...
In-situ catalytic pyrolysis of biomass has been extensively studied in recent years for cost-competi...
Pine wood pyrolysis vapors were catalytically treated using Zeolite catalysts. An auger fed reactor ...
This research has used catalytic pyrolysis and catalytic co-pyrolysis of biomass and plastics with u...
The rising fuel prices, environmental concerns over the emission of greenhouse gases, and the limite...
The accurate determination of the biomass thermal properties is particularly important while studyin...
Bio-oil produced via fast pyrolysis of biomass has the potential to be processed in a FCC (fluid cat...
Continuous pyrolysis of corncob hydrolysis residue, coupled with ex situ catalytic upgrading of the ...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
The environmental impact from the use of fossil fuel cum depletion of the known fossil oil reserves ...
Bio-oil from the pyrolysis of biomass is an important renewable source for liquid fuel. However, the...
The conversion of lignocellulosic biomass by catalytic fast pyrolysis (CFP) is a promising route to ...
The behaviour of HZSM-5 zeolite in the upgrading of a wood pyrolysis oil produced in the ENEL fast-p...
The presence of oxygenated compounds in pyrolytic oil makes it highly acidic and unsuitable energy s...
AbstractCatalytic upgrading of paddy husk was performed over 10-MR zeolites (MCM-22, ITQ-2 and ZSM-5...
Bio-oil produced from conventional flash pyrolysis has poor quality and requires expensive upgrading...
In-situ catalytic pyrolysis of biomass has been extensively studied in recent years for cost-competi...
Pine wood pyrolysis vapors were catalytically treated using Zeolite catalysts. An auger fed reactor ...
This research has used catalytic pyrolysis and catalytic co-pyrolysis of biomass and plastics with u...
The rising fuel prices, environmental concerns over the emission of greenhouse gases, and the limite...
The accurate determination of the biomass thermal properties is particularly important while studyin...
Bio-oil produced via fast pyrolysis of biomass has the potential to be processed in a FCC (fluid cat...
Continuous pyrolysis of corncob hydrolysis residue, coupled with ex situ catalytic upgrading of the ...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
The environmental impact from the use of fossil fuel cum depletion of the known fossil oil reserves ...
Bio-oil from the pyrolysis of biomass is an important renewable source for liquid fuel. However, the...
The conversion of lignocellulosic biomass by catalytic fast pyrolysis (CFP) is a promising route to ...
The behaviour of HZSM-5 zeolite in the upgrading of a wood pyrolysis oil produced in the ENEL fast-p...
The presence of oxygenated compounds in pyrolytic oil makes it highly acidic and unsuitable energy s...