Special notice
Transforming Biomass Preprocessing for Advanced Gasification
BA-1577
Department of Energy, Battelle Energy Alliance–doe CNTR. Research and Development in Biotechnology (except Nanobiotechnology).
Response deadline
January 13, 2026 at 11:00 AM EST
Closed 248 days ago. Posted January 13, 2025. Scheduled to archive January 28, 2026.
Description
As published on SAM.gov.
Transforming Biomass Preprocessing for Advanced Gasification Efficient and Scalable Biomass Feedstock Preparation for High-Performance Gasifiers The Challenge Biomass presents unique challenges as a feedstock for gasification due to its fibrous nature and hydrophilic properties. Conventional methods struggle to achieve the fine particle size and uniform characteristics required for advanced gasification systems.
Problems such as high energy demands, inconsistent particle morphology, and poor flow characteristics often lead to reduced throughput and operational inefficiencies. Current solutions—like ball milling—fall short in handling the tensile and structural resilience of biomass, making it a barrier to the efficient adoption of biomass-based gasification. How It Works This process combines densification and torrefaction to prepare biomass for advanced gasifiers:
Densification: Compresses the biomass into dense pellets, rearranging particles and creating a more uniform structure. During compression, natural lignin migrates to fill gaps, smoothing particle boundaries and improving flow characteristics.
Torrefaction: Applies thermal energy in an oxygen-free environment to partially devolatilize the biomass, reducing its fibrous strength and making it hydrophobic. This embrittles the material, simplifying size reduction and reducing energy demands.
Enhanced Pulverization: The pretreated biomass is pulverized using high-throughput hammer mills, achieving fine particle sizes with a 10x reduction in size reduction energy. This ensures particles with an ideal aspect ratio, smooth surfaces, and uniform density, which are essential for efficient gasifier feed. This streamlined preprocessing method ensures consistent particle size and flow properties, optimizing biomass compatibility with entrained flow gasification systems.
Key Advantages Energy Efficiency: Reduces size reduction energy by a factor of 10 compared to conventional methods.
Improved Flow Properties: Creates smooth, dense particles with enhanced flow characteristics, minimizing feedline blockages and downtime.
Scalable Design: Achieves fine particle sizes at high throughput, meeting the demands of industrial-scale gasifiers.
Adaptability: Supports diverse feedstocks, including corn stover, woody biomass, and municipal solid waste, expanding the range of usable materials.
Hydrophobic Conversion: Torrefaction reduces moisture content and enhances storage stability by making biomass hydrophobic.
Market Applications Gasification Systems: Improves the performance of advanced gasifiers by enabling efficient handling of biomass feedstocks.
Renewable Energy Projects: Supports the growing need for sustainable energy solutions by enhancing biomass utilization.
Oil and Gas Alternatives: Aligns with the strategic goals of oil and gas companies transitioning to renewable energy.
Research and Development: Facilitates advancements in biomass preprocessing for academic and industrial research. INL’s Technology Deployment department focuses solely on licensing intellectual property and collaborating with industry partners who can commercialize our innovations. We do not engage in purchasing, procurement, or hiring external services for technology development. Our objective is to connect with companies interested in licensing and bringing our technologies to market.
Publications
Every notice SAM.gov issued under this solicitation number, oldest first. Each is a separate record on SAM.
January 13, 2025
Special notice
Due January 13, 2026 at 11:00 AM EST. SAM.gov, notice e3564b4d02724b2aacd94bb0bf360f44
Points of contact
- Technology Deploymenttd@inl.gov
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