A techno-economic analysis of mild catalytic pyrolysis (CP) of woody biomass followed by upgrading of the partially deoxygenated pyrolysis liquid is performed to assess this pathway’s economic feasibility for the production of hydrocarbon-based biofuels. The process achieves a fuel yield of 17.7 wt% and an energy conversion of 39%. Deoxygenation of the pyrolysis liquid requires 2.7 wt% hydrogen while saturation of aromatic rings in the pyrolysis liquid increases total hydrogen consumption to 6.4 wt%. Total project investment is $457 million with annual operating costs of $142 million for a 2000 metric ton per day facility. A minimum fuel selling price (MFSP) of $3.69/gal is estimated assuming 10% internal rate of return. Twenty-nine percent...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
© 2017 American Chemical Society. As part I of two companion papers, the present paper evaluates the...
AbstractBio-oil from fast pyrolysis of biomass has great potential to be one of the main renewable e...
A previous Iowa State University (ISU) analysis published in 2010 investigated the technical and eco...
We evaluate the economic feasibility of fast pyrolysis and upgrading facilities 11 employing either ...
Woody biomass conversion to transportation fuels have been developed as alternatives to fossil fuel ...
This study develops techno-economic models for assessment of the conversion of biomass to valuable f...
The techno-economics for producing liquid fuels from forest biomass were determined from a combinati...
The purpose of this study is to evaluate a processing pathway for converting biomass into infrastruc...
We evaluate the economic feasibility of a fast pyrolysis facility producing biobased commodity chemi...
Meeting the transport needs of a growing world population makes it imperative to develop renewable a...
Biomass represents a large potential feedstock resource for environmentally clean processes that pro...
Biomass pyrolysis is a promising path toward renewable liquid fuels. However, the calorific value of...
This paper evaluates the economic feasibility of a hybrid production pathway combining fast pyrolysi...
The purpose of this study is to determine the capital and operating cost for producing liquid fuel f...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
© 2017 American Chemical Society. As part I of two companion papers, the present paper evaluates the...
AbstractBio-oil from fast pyrolysis of biomass has great potential to be one of the main renewable e...
A previous Iowa State University (ISU) analysis published in 2010 investigated the technical and eco...
We evaluate the economic feasibility of fast pyrolysis and upgrading facilities 11 employing either ...
Woody biomass conversion to transportation fuels have been developed as alternatives to fossil fuel ...
This study develops techno-economic models for assessment of the conversion of biomass to valuable f...
The techno-economics for producing liquid fuels from forest biomass were determined from a combinati...
The purpose of this study is to evaluate a processing pathway for converting biomass into infrastruc...
We evaluate the economic feasibility of a fast pyrolysis facility producing biobased commodity chemi...
Meeting the transport needs of a growing world population makes it imperative to develop renewable a...
Biomass represents a large potential feedstock resource for environmentally clean processes that pro...
Biomass pyrolysis is a promising path toward renewable liquid fuels. However, the calorific value of...
This paper evaluates the economic feasibility of a hybrid production pathway combining fast pyrolysi...
The purpose of this study is to determine the capital and operating cost for producing liquid fuel f...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
© 2017 American Chemical Society. As part I of two companion papers, the present paper evaluates the...
AbstractBio-oil from fast pyrolysis of biomass has great potential to be one of the main renewable e...