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Syngas upgrading to hydrocarbon fuels technology pathway

Author: Michael Talmadge; United States. Department of Energy. Bioenergy Technologies Office,; National Renewable Energy Laboratory (U.S.),; Pacific Northwest National Laboratory (U.S.),
Publisher: Golden, Colorado : National Renewable Energy Laboratory ; Richland, WA : Pacific Northwest National Laboratory, 2013.
Series: NREL/TP, 5100-58052.
Edition/Format:   eBook : Document : National government publication : English
Summary:
This technology pathway case investigates the upgrading of woody biomass derived synthesis gas (syngas) to hydrocarbon biofuels. While this specific discussion focuses on the conversion of syngas via a methanol intermediate to hydrocarbon blendstocks, there are a number of alternative conversion routes for production of hydrocarbons through a wide array of intermediates from syngas. Future work will also consider  Read more...
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Material Type: Document, Government publication, National government publication, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Michael Talmadge; United States. Department of Energy. Bioenergy Technologies Office,; National Renewable Energy Laboratory (U.S.),; Pacific Northwest National Laboratory (U.S.),
OCLC Number: 862943862
Notes: Title from PDF title screen (viewed on Nov. 13, 2013).
"March 2013."
"PNNL-22323."
Description: 1 online resource (7 pages) : color illustrations.
Series Title: NREL/TP, 5100-58052.
Responsibility: Michael Talmadge [and four others] ; prepared for the U.S. Department of Energy Bioenergy Technologies Office.

Abstract:

This technology pathway case investigates the upgrading of woody biomass derived synthesis gas (syngas) to hydrocarbon biofuels. While this specific discussion focuses on the conversion of syngas via a methanol intermediate to hydrocarbon blendstocks, there are a number of alternative conversion routes for production of hydrocarbons through a wide array of intermediates from syngas. Future work will also consider the variations to this pathway to determine the most economically viable and lowest risk conversion route. Technical barriers and key research needs have been identified that should be pursued for the syngas-to-hydrocarbon pathway to be competitive with petroleum-derived gasoline-, diesel- and jet-range hydrocarbon blendstocks.

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