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Gallery:
U.S. DOE. 2006. "Breaking the Biological Barriers to Cellulosic
Ethanol: A Joint Research Agenda," DOE/SC/EE-0095, U.S. Department
of Energy Office of Science and Office of Energy Efficiency and
Renewable Energy,
http://genomicsgtl.energy.gov/biofuels/.
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Scanning Electron Microscopy: Enzyme Hydrolysis Only (a)
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Scanning Electron Microscopy: Enzyme Hydrolysis Following Pretreatment (b)
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Contemporary View of Lignin Substructures
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New Cellulase Enzymes Dramatically Reduce Costs of Plant Biomass Breakdown: R&D 100 Award
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The Goal of Biomass Conversion (a) Microbial Cultures at Oak Ridge National Laboratory
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The Goal of Biomass Conversion (b) National Renewable Energy Laboratory’s Process Development Unit
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The Goal of Biomass Conversion (c) Industrial Biorefinery in York County, Nebraska (Abengoa Bioenergy Corporation)
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Examples of Possible Pathways to Convert Biomass to Biofuels
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Some Metabolic Pathways that Impact Glucose Fermentation to Ethanol
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Microbial Models for Providing New Insights
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Probing Microbial Communities
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Laboratory Cultivation Techniques to Simulate Natural Community Structure
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GTL Integrated Computational Environment for Biology: Using and Experimentally Annotating GTL’s Dynamic Knowledgebase
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From Genome Data to Full Cell Simulation
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Visualizing Interaction Networks
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Collage of Scanning Electron Microscopy Images Showing a Rind and Adjacent Pith Section Cut from a Field-Dried Corn-Stem Cross Section
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Attributes of an “Ideal” Biomass Crop
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Vision for the Future: Desired Traits of the Domesticated Energy Poplar
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Comparison of Energy Yields with Energy Expenditures
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Image Use and Credits
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