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Find similar grantsThis grant establishes a Wood and Biomass Hub at the Intertribal Timber Council to help Tribal Nations develop projects, reach buyers, and attract infrastructure investment for wood and biomass.
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Or search similar grants →According to the current listing, eligibility includes: Tribal Nations, specifically through the Intertribal Timber Council and its member Tribes. Confirm the full requirements in the official notice before applying.
The current listing shows $1.7 million (total for the initiative). Verify award ceilings, matching requirements, and allowable costs in the official notice.
Wood and Biomass Hub Initiative Grant (Intertribal Timber Council & Sustainable Northwest) is funded by U.S. Endowment for Forestry and Communities. Verify program details on the funder's official page before applying.
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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
Biotech routes for valorisation of residual biomass is sponsored by European Commission — Horizon Europe. Expected Outcome: Successful proposals will contribute to the implementation of the EU initiative on Biotechnology and Biomanufacturing and the EU Life Sciences Strategy as well as the updated EU Bioeconomy Strategy, the Clean Industrial Deal, the European Chemical Industry Action Plan, the upcoming EU Biotechnology and Circular Economy Acts. Projects results are expected to contribute to the following expected outcomes: Increased added value of residual biomass for biorefinery applications. Availability of a wider portfolio of sustainable bio-based products via industrial biotech. Robust, scalable and efficient biotech process(es) applicable to residual biomass. Scope: Diversifying biomass feedstock resources for bio-based products is key to contribute to resilience and strategic autonomy of bio-based operations. Industrial biotechnologies have showcased that they can play a key role to address residual biomass into valuable bio-based products. However, scaling up from research to demo scale requires addressing systemic and technical challenges. This entails the integration of adequate pretreatment and conversion processes, tailored to the targeted residual biomass and its composition variability, in order to achieve high yield, titre and selectivity. At the same time, it requires that these processes are scalable and sustainable. Moreover, effective logistics are needed to mobilise the residual biomass, requiring cooperation with primary producers, waste management operators and other biomass providers. Proposals under this topic should: Demonstrate (at least TRL 6) efficient biotechnology based processes to convert residual biomass streams into bio-based chemicals, intermediates, polymers, materials, ingredients [1] and/or enzymes. The topic focuses on processes in which biotechnology is the key enabling technology; the integration of supporting unit operations based on technologies other than biotechnology is in scope. Optimisation of selected cells, enzymes and/or microorganisms, including microbiomes, is also in scope. The feedstock in scope includes: Forestry and agricultural residues and/or side streams from the processing of forestry and agricultural biomass (including livestock-based ones such as manure and animal byproducts), residues from aquatic biomass, including from fisheries, micro/macro algae production and aquaculture, urban and/or industrial bio-based waste and side-streams (including food industry waste and side-streams, cellulose from post-consumer and post-industrial waste, urban biowaste and sewage sludge, and other bio-based waste/side-streams from industrial operations including wood and pulp and paper industry), mixed streams from the above. Integrate optimised biomass pretreatment/fractionation processes tailored to selected residual biomass and optimise (energy)-efficient separation and/or purification process step(s) across the value chain. The valorisation of by-products and side streams across the value chain via the cascading approach is in scope. Validate (at TRL 5 and above) conversion (or use) of biorefinery product(s) into end-products proving to fulfil market requirements for selected applications sectors. Address resource efficiency and circularity. When pursuing circular models, ensure that neither pathogens nor contaminants are injected back in the loop, to avoid negative effects on human health and the environment. 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 [2] , proposals under this topic should: Under the multi-actor approach (MAA), ensure the sufficient involvement of feedstock producers/managers for residual feedstock supply. Optimise logistic models (including sourcing, storage and transport) of residual feedstock, minimising distances and costs. Ensure seamless integration with biomass providers, while promoting win-win business models. Perform a risk assessment on impacts, p 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: Applied and industrial chemistry, Bioprocessing technologies (industrial processes relying on biological agents to drive the process) biocatalysis, fermentation, Industrial bioengineering, Industrial biotechnology, bio-based chemicals, bio-based ingredients, bio-based materials, bio-based polymers, bio-based products, bio-conversions, biotechnology, STEP-Biotech