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Find similar grantsCarbon Management Funding Opportunity is sponsored by Department of Energy (DOE). Supports the development of technologies that capture CO₂ from industrial and power generation sources or directly from the atmosphere.
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Funding Notice: Carbon Management | Department of Energy Funding Notice: Carbon Management Office: Carbon Management FOA number: DE-FOA-0002614 Download the full funding opportunity: FedConnect Funding Amount : $54. 4 million On August 13, 2024 , U.S. Department of Energy’s (DOE) Office of Fossil Energy and Carbon Management (FECM) announced it will make up to $54.
4 million in additional funding available to advance diverse carbon management approaches that reduce carbon dioxide (CO 2 ) pollution. The funding will support the development of technologies that capture CO 2 from industrial and power generation sources or directly from the atmosphere and transport it either for permanent geologic storage or conversion into valuable products such as fuels and chemicals.
The development of these technologies is crucial to advance the nation’s efforts to address climate change and achieve the Biden-Harris Administration’s goal of net-zero emissions economy-wide by 2050. Eligible applicants include individuals, institutions of higher education, for- and non-profit organizations, state and local governments, and tribal nations.
Round six of this funding opportunity announcement has three areas of interest: AOI-1. Carbon Conversion Technology AOI-1F. Reactive Carbon Capture Approaches for Point Source Capture or Atmospheric Capture with Integrated Conversion to Useful Products AOI-3.
Point Source Carbon Capture Technology AOI-3F. Engineering-Scale Testing of Transformational Carbon Capture Technologies for Natural Gas Combined Cycle (NGCC) Power Plants AOI-3G. Engineering-Scale Testing of Transformational Carbon Capture Technologies in Portable Systems at Industrial Plants AOI-3H-a.
Preliminary Front-End Engineering Design Studies (Pre-FEED) for Carbon Capture Systems at Existing (Retrofit) Domestic NGCC Power Plants AOI-3H-b. Preliminary Front-End Engineering Design Studies (Pre-FEED) for Carbon Capture Systems at Hydrogen Production Facilities Using Coal, Mixed Coal/Biomass, or Natural Gas Feedstock AOI-4. Carbon Transport and Storage AOI-4A.
Enhancing CO2 Transport Infrastructure (ECO2Transport): Pre-FEED Studies for Multimodal CO2 Transfer Facilities DOE expects to make up to 36 awards between $400,000 and $5 million each with a minimum of a 20% cost-sharing from the awardees. *The DOE share listed under the anticipated individual award size is the maximum amount of DOE funding that can be proposed for each Area of Interest.
Applications that propose a DOE share in excess of these limits will not be evaluated. **Applicants may propose cost share in excess of 20% which could result in higher total award values than those stated above.
FOA Issue Date (Round 6): 08/13/2024 Submission Deadline for Full Applications (Round 6): 10/14/2024 at 8:00 PM ET Expected Date for Selection Notifications (Round 6): February 2025 Selectees On October 9, 2024 , the U.S. Department of Energy’s (DOE) Office of Fossil Energy and Carbon Management (FECM) announced $29 million for 12 research and development projects to fund two carbon management priorities—the conversion of carbon dioxide (CO 2 ) into environmentally responsible and economically valuable products and the development of lower-cost, highly efficient technologies to capture CO 2 from industrial sources and power plants for permanent storage or conversion.
Accelerating the development of these technologies will advance the Biden-Harris Administration’s ambitious climate goals of achieving a carbon-neutral power sector by 2035 and net-zero greenhouse gas emissions by 2050 and help establish the foundation for a successful carbon capture, storage, and conversion industry in the United States.
Seven projects selected under this funding opportunity will focus on technologies that utilize CO 2 from sources such as industrial and power generation facilities, as well as from legacy CO 2 emissions captured directly from the atmosphere. Each of these projects will produce value-added products while simultaneously reducing CO 2 emissions: Washington University in St.
Louis Five projects will focus on development and testing of enabling technologies such as engineering and advanced process control approaches to address non-greenhouse gas emissions in the context of carbon capture.
Specifically, these projects will seek to develop technologies that enable scale-up testing and demonstrations of carbon capture systems and assure their responsible deployment: American Air Liquide Inc. University of Kentucky Research Foundation University of Kentucky Research Foundation DATE ROUND SELECTION DETAILS October 9, 2024 Round 5 View detailed list of selected projects April 18, 2024 Round 4 View detailed list of selected projects December 19, 2023 Round 3 View detailed list of selected projects August 9, 2023 Round 2 View detailed list of selected projects August 9, 2023 Round 1 View detailed list of selected projects January 2023 Round 1 View detailed list of selected projects Additional Information Download the full funding opportunity on FedConnect .
All applicants must register and apply on Grants.
gov and submit questions through FedConnect Project Selections for FOA 2614: Carbon Management (Round 5) Learn More about Project Selections for FOA 2614: Carbon Management (Round 5) Project Selections for FOA 2614: Carbon Management (Round 3) Learn More about Project Selections for FOA 2614: Carbon Management (Round 3) DOE Invests Over $13 Million for Projects That Capture Carbon Emissions from Industrial Facilities, Power Plants, Air, and Oceans Learn More about DOE Invests Over $13 Million for Projects That Capture Carbon Emissions from Industrial Facilities, Power Plants, Air, and Oceans Project Selections for FOA 2614: Carbon Management (Round 2) Learn More about Project Selections for FOA 2614: Carbon Management (Round 2) Additional Project Selections for FOA 2614: Carbon Management (Round 1) Learn More about Additional Project Selections for FOA 2614: Carbon Management (Round 1) DOE Invests More Than $130 Million to Lower Nation’s Carbon Pollution Learn More about DOE Invests More Than $130 Million to Lower Nation’s Carbon Pollution Project Selections for FOA 2614: Carbon Management (Round 1) Learn More about Project Selections for FOA 2614: Carbon Management (Round 1) Last Updated: October 9, 2024
According to the current listing, eligibility includes: Universities, research institutions, and industry partners. Confirm the full requirements in the official notice before applying.
Carbon Management Funding Opportunity is funded by Department of Energy (DOE). Verify program details on the funder's official page before applying.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
LIFE-2026-SAP-CLIMA-CCM - Climate Change Mitigation Grant Program is sponsored by European Commission (managed by CINEA). This call funds climate change mitigation projects that support the European Green Deal, aiming to reduce greenhouse gas emissions by at least 55% by 2030 through clean energy, low-carbon transport, carbon capture, and sustainability projects.
Bio-based chemicals and/or materials from woody residues is sponsored by European Commission — Horizon Europe. Expected Outcome: Successful proposals will contribute to the EU Forest Strategy for 2030, the EU Biodiversity Strategy 2030, the Carbon Removal Certification Framework Regulation, the updated EU Bioeconomy Strategy and the upcoming Circular Economy Act. Projects’ results are expected to contribute to the following expected outcomes: Increased availability of bio-based chemicals and/or bio-based materials from woody residues. Increased sustainability of forest-based value chains in cooperation with local forestry owners/cooperatives. Improved end-of-life (EoL) of bio-based products from woody residues. Scope: Besides thin branches, leaves and needles, which are usually left on the soil to maintain the long-term viability of the forest and soil in good condition, forestry and forest industry operations generate large amounts of woody residues which are typically used for energy or low value applications. Established process technologies for round wood and wood chips are not well suited for other streams from the forest industry which are abundantly available at production sites and could be exploited as a source of feedstock for the bio-based industries. Thus, there is the need to demonstrate techno-economic feasibility of innovative valorisation pathways to increase the value which can be derived from residues from the wood and forest-based industries while also improving sustainability compared to state-of the art valorisation routes. Proposals under this topic should: Demonstrate (TRL 6 and above) innovative technologies to obtain bio-based chemicals and/or materials from woody residues. Feedstock in scope includes woody residues generated at forestry and/or at industrial processing sites, including, but not limited to, bark, sawdust or residues from wood harvesting and processing. Demonstration should cover the optimal combination of innovative and scalable technologies aimed at maximising yield, selectivity and productivity across upstream pretreatment/fractionation, further conversion into chemicals/materials, separation/purification processes. The proposed technologies should address flexibility to feedstock quality variability. Validate (TRL 5 and above) the obtained chemicals/materials into end products. Assess the products’ performance and ensure that they fulfil technical performance requirements according to the end market application(s). Apply the eco-design principles, in line with the Ecodesign for Sustainable Products Regulation , to the end-product(s) for sustainable EoL and test it at TRL5 and above. Incineration is not in scope. In addition to the specific requirements applicable for the type of action, as described in section 2.2.3.1 of the CBE JU Annual Work Programme 2026 [1] , proposals under this topic should: As part of the multi-actor approach (MAA), ensure close collaboration with local forest owners and managers, including cooperatives and/or sectorial associations. Optimise biomass supply chain models, including sourcing, storage and/or transport as relevant for selected woody residues. Include a task to apply the SSbD framework, developed by the European Commission for the assessment of targeted chemicals/materials and derived bio-based product(s). For more information on the SSbD framework and criteria, refer to Safe and sustainable by design . Ensure complementarities with past and ongoing R&I projects addressing similar challenges, including projects funded under Horizon 2020/Horizon Europe (under Cluster 6 and other Clusters of Horizon Europe) and BBI JU/CBE JU projects. [1] https://www.cbe.europa.eu/reference-documents Programme areas: Global Challenges and European Industrial Competitiveness, Food, Bioeconomy Natural Resources, Agriculture and Environment, Bio-based Innovation Systems in the EU Bioeconomy, Horizon Europe (HORIZON) Keywords: Forest ecosystem services, Forestry, Forestry, biomass production (e.g. for biofuels), Materials engineering, bio-based chemicals, bio-based materials, bio-conversion, biomass logistics, biomass supply, eco-design, forest management, forestry, safe and sustainable by design, woody residues, STEP-Biotech
Understanding biomass flows in Europe is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all the following expected outcomes: enhanced understanding of the environmental, social and economic potential of the supply of different biomass types (from local to international perspectives), as well as its sustainability implications, including biodiversity and (air, water and soil) pollution, synergies and tensions; enhanced capacity of private and public stakeholders to increase resource efficiency in utilising primary and secondary biomass as well as biomass processing and use, including through digital tools which may involve artificial intelligence and remote sensing, and roadmaps towards sustainable biomass management; without undermining food security; enhanced support to businesses and administrations that optimise biomass supply, processing, and use, such that ecosystems and biodiversity are protected and restored, emissions of greenhouse gases and pollutants reduced, and human needs for biomass satisfied in sufficient and fair way. Scope: There is a need to better understand the production and use of biomass, a limited resource, in its various types. Bioeconomy, and biomass as its essential feedstock, provides solutions on various dimensions (environmental, social and economic). However, there are biomass-related challenges to overcome: the EU forest carbon sink is below the target and declining in most countries and the need to restore ecosystems and halt biodiversity loss [1] . This implies that biomass supply is partly unsustainable. Simultaneously, companies see themselves challenged to satisfy the growing demand for biomass in the future. There are solutions to increase the sustainable production, including to reduce pollutants, and adjust the demand: e.g. better valorise unused or under-exploited sustainable biomass and degraded land, apply new breeding techniques and increase resource efficiency through circular design, new business models, consumption, recycling or repair. There is a need to better understand where biomass valorisation can be improved, to ensure local or regional added value increases and to drive innovative and competitive business solutions. For an optimal biomass production and effective use, matching supply and demand in the local or regional context, a better and more robust understanding of actual biomass flows is a fundamental prerequisite. Proposals should address all the following activities: Improve and develop innovative, administration-light biomass monitoring and modelling/assessment methods and digital tools at European level (regional, national, and continental scale) to optimise biomass flows, paying particular attention to areas with untapped (sustainable) biomass resources, in close cooperation with stakeholders. Provide an updated estimate of biomass supply and demand today and projected until 2050 at national and EU level, including associated countries, considering the quality of biomass, their potential use, the sustainability and risks (e.g. spread of pathogens) of supplied biomass, as well as potential non-satisfied (non-)industrial demand due to the limitation of availability of sustainable biomass. The 2050 outlook should be accompanied by scenarios on EU’s future bioresources regarding supply and demand. Test and demonstrate, in cooperation with stakeholders, the feasibility of biomass reporting in test regions of at least 10 countries across Europe with different potential of biomass supply. The European Commission’s Joint Research Centre (JRC) may participate as member of the consortium selected for funding since the monitoring and assessment tools developed may contribute to the EU level assessment of biomass flows of the Knowledge Centre for Bioeconomy. Proposals are encouraged to work together with additional relevant initiatives including those of the Circular Biobased Europe Joint Undertaking, the European Circular Economy Stakeholder Platform, the BIOEAST Initiative; build on results from Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Food, Bioeconomy Natural Resources, Agriculture and Environment, Bio-based Innovation Systems in the EU Bioeconomy Keywords: Bioeconomy, Blue Economy, bio-economies, bio-economy, bioeconomies, bioeconomy, biological, biomass, circular, flows, hub, materials, region, renewable, resource, resources, sustainability, sustainable
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