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Advancing the European bio-based innovation enabled by biotechnology and biomanufacturing concepts is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all of the following expected outcomes: significant advance in the development of innovation in biotechnology, life sciences and/or biomanufacturing concepts, preparing future deployment of bio-based and bio-inspired processes, products and materials, as a basis for sustainable, fair, safe and circular value chains, contributing to decarbonisation, industrial competitiveness and the strategic autonomy of the EU and Associated Countries; improved environmental sustainability of the developed innovative bio-based solutions, with positive and quantifiable impact on climate and biodiversity, and circularity of the European bioeconomy via enhanced resource efficiency, including of biological feedstocks, water and energy, integrating bio-based sector to minimize and remediate waste production. Scope: Actions funded under this topic are relevant to the EU policies related to the European Commission communication on ‘Building the future with nature: Boosting Biotechnology and Biomanufacturing in the EU’, the Life Sciences Strategy, the upcoming EU Biotech Act, and Circular Economy Act, the EU strategy on research and technology infrastructure, the Clean Industrial Deal and the policies related to the digital transition (e.g. AI Act, etc.). It also contributes to the Start-ups and Scale-ups Strategy. Proposals should address the following activities: identify, select and develop further promising selected key technologies underpinning the bio-based innovation/industry, in particular R&D on synthetic/molecular biology, gene editing, metabolic engineering, microbiome [1] , and/or biofoundry approaches, covering all applications aiming at clean growth and environmental solutions. Advancing towards validation at a pilot-scale is encouraged, to enable future exploitation. The applications in health biotechnology, as well as the biofuel/bioenergy area are excluded, to avoid overlaps with Horizon Europe Clusters 1 and 5, respectively; ensure the integration of digital technologies (e.g. AI/Machine Learning, bioinformatics); advance the convergence of biotech and life sciences developed under the first point with Nature-based Solutions, e.g. for environmental applications, carbon sequestration [2] , biodiversity protection/enhancement, aligned with (bio-)circular economy principles (e.g. cascading biomass use), ensuring the environmental fate and sustainability is considered quantitatively at the earliest stage and ensuring safety to human health and environment is addressed and guaranteed; develop recommendations for policy makers and industrial actors, taking into account the available scientifically sound assessment of risks and benefits of the developed solutions. Proposals should involve SMEs – both as project beneficiaries and as external actors – and offer opportunities to newcomers (to Horizon Europe Cluster 6). Proposals should also engage with the civil society stakeholders such as NGOs and consumer organisations to seek stakeholder involvement and acceptance, thus advancing scale-up and facilitating future market uptake. Proposals need to ensure compliance with the ‘Do no significant harm’ (DNSH) principle. Proposals are encouraged to consider, where relevant, the data, expertise and services offered by European research infrastructures [3] , such as EMSO ERIC, EU-OPENSCREEN, ELIXIR, EMBRC ERIC, IBISBA. Efforts should be made to ensure that the data produced in the context of this topic is FAIR (Findable, Accessible, Interoperable and Re-usable). Cooperation with the parallel projects funded under topic HORIZON-CL6-2026-01-CIRCBIO-10: Bio-based innovation in society: supporting the sustainable way of living is encouraged, to benefit from synergies and avoid overlaps. Similarly, activities should benefit from synergies and avoid overlaps with ongoing projects, e.g. funded under the topic HORIZON-CL6-2022-CIRCBIO-02-05-two-stage: Life sciences and their convergence wi
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: Agricultural biotechnology, Bio-based products (products that are manufactured using biological material as feedstock) bio-based materials, bio-based plastics, biofuels, bio-based and bio-derived bulk and fine chemicals, bio-based and bio-derived novel materials, Biochemistry and molecular biology, Bioprocessing technologies (industrial processes relying on biological agents to drive the process) biocatalysis, fermentation, Bioproducts (products that are manufactured using biological material as feedstock) biomaterials, bioplastics, biofuels, bioderived bulk and fine chemicals, bio-derived novel materials, Cell biology and molecular transport mechanisms, Cell biology, Microbiology, DNA synthesis, modification, repair, recombination, degradation, Environmental biotechnology, Environmental biotechnology related ethics, Environmental biotechnology, bioremediation, biodegradation, General biochemistry and metabolism, Industrial biotechnology, Natural resources exploration and exploitation, Other biological topics, Plant sciences, botany, Proteomics, RNA synthesis, processing, modification and degradation, Social innovation, Social sciences, interdisciplinary, bio-based, bio-product, bioeconomy, biofoundry, bioinformatics, biomanufacturing, bioproduct, biotechnology, environmental biotechnology, gene editing, industrial biotechnology, life sciences, microbiome, synthetic biology
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Or search similar grants →According to the current listing, eligibility includes: Open to legal entities established in EU Member States and countries associated to Horizon Europe (including EEA/EFTA countries, and other associated third countries). Action type: HORIZON-RIA HORIZON Research and Innovation Actions. Additional conditions: "> General conditions 1. Admissibility Conditions: Proposal page limit and layout described in Annex A and Annex E of the Horizon Europe Work Programme General Annexes. Proposal page limits and layout: described in Part B of the Application Form available in the Submission System. 2. Eligible Countries described in Annex B of the Work Programme General Annexes. A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making... See the official call documentation on the F&T Portal for full eligibility criteria and participation rules. Confirm the full requirements in the official notice before applying.
The current listing shows €210M total budget (~$226.8M USD) ; up to €10M per project ; ~1 grant expected. Verify award ceilings, matching requirements, and allowable costs in the official notice.
Applications for Advancing the European bio-based innovation enabled by biotechnology and biomanufacturing concepts are due September 23, 2026. Build your timeline backwards from this date to cover registrations, approvals, and final submission checks.
Advancing the European bio-based innovation enabled by biotechnology and biomanufacturing concepts is funded by European Commission — Horizon Europe. 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.
Digital enablers and building-blocks for Earth Observation and Satellite telecommunication for Space solutions (Space Partnership) is sponsored by European Commission — Horizon Europe. Expected Outcome: The topic encompasses actions within the scope of the co-programmed European Partnership on Globally Competitive Space Systems (‘Space Partnership’) in the areas of satellite communication (SatCom), Earth Observation (EO) and New Commercial Space Transportation Solutions and is part of cohesive activities in the domain of digital developments under the grand heading of “digitalisation for commercial space solutions”. Digitalisation is a major enabler for enhancing the value of an End-to-End EO and SatCom system. Under the area of Using Space on Earth related to SatCom and EO, below this topic focus on the fast increment of the Low to Mid TRL level building blocks for key technologies [1] required to strengthen competitiveness in these domains. Projects are expected to contribute to one or several of the following outcomes: New commercial services and applications enabled by increased digitalisation of space solutions; Favouring a competitive and sustainable European Space Sector; Enable the European Space Industry to maintain a significant share of the global connectivity market; Next generation Earth observation and SatCom payloads, technologies and processing means (on ground and in space); Security of SatCom and EO services, supporting next-generation technologies for both ground and space commercial applications; Improved access to satellite data through interoperable systems. This will contribute to developing, deploying global, more flexible and reactive space-based services applications, to contribute to fostering the EU's space sector competitiveness, as stated in the expected impact of this destination. Scope: The areas of R&I, which needs to be addressed to tackle the above-mentioned expected outcomes are: R&I on End-to-End SatCom Mission capabilities for current and future satellite networks interoperability including both space and ground-based assets, and digital on-ground infrastructure to test and enhance operational efficiency; R&I on Earth Observation equipment, subsystems, applications and services, improving the End-to-End timeliness of an EO system and enhanced resolution, miniaturisation of instrument designs and digital techniques and technologies to support operations and harmonisation enabling interoperability among multiple EO missions; R&I on building blocks and processes common to EO and SatCom systems, such system resources usage optimisation, high-performance processing payload H/W to support space network capabilities including an improvement in downlink and tasking capabilities of the European infrastructure, RF and optical hybrid ground stations for anchoring services and quantum technologies adaptation for space application. Proposals may contribute to one or more of the above R&I areas, however the main area addressed must be clearly and unambiguously identified in the proposal text. Proposals are expected to promote cooperation between different actors (industry, SMEs, research institutions and infrastructures and academia) and consider opportunities to quickly turn technological innovation into commercial use in space. It is expected that projects make use of existing EU technologies and/or building blocks, including at component level, contributing to EU non-dependence and strengthen competitiveness, and this should be clearly presented in the proposal. Furthermore, proposed activities should be complementary to H2020 and Horizon Europe funded projects, national activities and activities funded by the European Space Agency (ESA). This topic contributes to the implementation of the European Partnership on ‘Globally Competitive Space Systems’ (GCSS). In this topic, the integration of the gender dimension (sex and gender analysis) in research and innovation content should be addressed only if relevant in relation to the objectives of the research effort. Technology Readiness Level - Technology readiness level expected from completed projects Activities are Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space
Preparing demonstration missions for Earth Observation and Satellite telecommunication for Space solutions (Space Partnership) is sponsored by European Commission — Horizon Europe. Expected Outcome: The topic encompasses actions within the scope of the co-programmed European Partnership on Globally Competitive Space Systems (‘Space Partnership’) in the areas of satellite communication (SatCom), Earth Observation (EO) and New Commercial Space Transportation Solutions and is part of cohesive activities in the domain of digital developments under the grand heading of “digitalisation for commercial space solutions”. Digitalisation is a major enabler for enhancing the value of an End-to-End EO and SatCom system. Under the area of Using Space on Earth related to SatCom and EO, below this topic focusses on the Mid to High TRL level developments of key technologies [1] required to strengthen competitiveness in these domains, contributing to the preparation of EO and SatCom demonstration missions. Projects are expected to contribute to one or several of the following outcomes: Favouring a competitive and sustainable European Space Sector; Enable the European Space Industry to maintain a significant share of the global connectivity market; Advanced Earth observation and SatCom payloads, technologies and processing means (on ground and in space); Advanced EO and SatCom fostering AI across space system; Enhanced security of SatCom and EO services, supporting advanced technologies for both ground and space commercial applications; End-to-end demonstrator for collaborative Earth Observation and Satellite telecommunication for Space solutions. This will contribute to developing, deploying global, more flexible and reactive space-based services applications, to contribute to fostering the EU's space sector competitiveness, as stated in the expected impact of this destination. Scope: The areas of R&I, which needs to be addressed to tackle the above-mentioned expected outcomes are: R&I on End-to-End SatCom Mission capabilities, secure SatCom services and satellites as network nodes in a distributed system, radio-frequency payloads, flexible and modular testbed for complex satcom system architectures to assess performances, testbed for processing RF signal directly onboard the spacecraft, compatibility of the different elements and operations concepts; R&I on LEO or VLEO earth observation equipment, subsystems, applications and services enabling real time reaction (e.g. use cases requiring low latency), on on-board processing to optimize EO missions’ performance or timeliness, EO ground segment interfaces and data flow standardisation and adoption, smart multi-source EO intelligence information fusion also on ground; R&I on synergetic technologies, building blocks and processes with applicability across both EO and SatCom next generation operation systems such as operational optimisation for increasing lifetime, design optimisation for increasing efficiency and advanced techniques for large system of systems or multi-mission operation optimisation, as well as tip & cue demonstration combining RF and EO using inter-satellite links (including optical). Developments should aim at EO and Telecom technologies on-ground in relevant environment and in orbit software demonstration when flight is feasible and adding value focusing on software and digital tools (e.g. algorithms, functions). Proposals may contribute to one or more of the above R&I areas, however the main area addressed should be clearly and unambiguously identified in the proposal text. Proposals are expected to promote cooperation between different actors (industry, SMEs, research institutions and infrastructures and academia) and consider opportunities to quickly turn technological innovation into commercial use in space via e.g., on-ground relevant environment or in orbit demonstration. It is expected that projects make use of existing EU technologies and/or building blocks, including at component level, contributing to EU non-dependence and strengthen competitiveness, and this should be clearly presented in the proposal. Furthermore, propo Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space Keywords: STEP-Digital/deep tech
Space critical EEE components for EU non-dependence – GaN MMICs mm-Wave Foundations (Phase A): Development and Industrialization of Semi-insulating SiC Substrate Capabilities is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all of the following expected outcomes: Reinforcing EU strategic autonomy by reducing non-EU dependencies on critical space EEE components and related technologies across their entire supply chain; Providing unrestricted access to critical space EEE components and related technologies relevant for EU space missions (Galileo, EGNOS, Copernicus, IRIS 2 and EU pilot missions on In-Orbit Space Operations and Quantum Gravimetry); Developing or regaining capacity to operate independently in space by developing resilient space EEE components and related technologies supply chains, relying on EU supply chains and/or trustable and reliable supply chains not affected by non-EU export restrictions; Enhancing competitiveness by developing products and capabilities reaching equivalent or superior performance level than those from outside the EU and compete at worldwide level. Scope: Unrestricted access to state-of-art space EEE components and related technologies is a pre-requisite for the EU space industry responding to EU space missions. However, especially for some families of components, the available solutions in EU do not meet the current high-performance space requirements. Currently, alternative products sourced from outside EU, are either affected by non-EU export control, that limits its use, or present challenges in terms of trustable supply chains for the implementation of EU space missions with a security dimension. Within the frame of this topic, it is expected to finance and implement a development project aiming at maturing critical space EEE components with the final goal of lowering the dependency from outside EU. This will be done by establishing a long-term sustainable supply chain for supporting EU strategic autonomy in the space sector. The selection of the supply chains shall reflect this objective. Therefore, the supply chain shall preferably be built fully based in EU and when this can only be achieved partially (i.e. because of lack of current EU capabilities for unrestricted advanced semiconductor processes or advanced materials that cannot be developed within the project), services procured from outside EU shall nevertheless ensure that the overall supply chain will remain trustable and not affected by non-EU export control. The latest scenario is subject to the approval of the granting authority. The space EEE component and related technologies relevant for this topic represent a direct implementation of the EU Observatory of Critical Technologies (OCT) Technology Roadmap, named GaN for RF and mm-wave Space and Defence Applications: industrial development of an EU-based source of semi-insulating SiC substrates addressing the 100/150mm . Further details will be provided at the latest at the opening of the Call, in a Guidance document published on the Funding & Tenders Portal. Space is a low volume market affected by a dynamic industrial landscape compared to the terrestrial market therefore, technological spin in and/or bilateral collaborations should be enhanced between European non-space and space industries. Furthermore, proposed activities should be complementary to relevant national or other activities at EU level. Complementary activities should be clearly identified, described and the proposal should report how the complementarity is ensured. To achieve the non-dependence objective, applicants are expected to include a dedicated proposal’s paragraph covering: The description of the technology and/or technology processes and high-level breakdown of the space EEE component supply chain to be used. Applicants should demonstrate that the supply chain and final product are free of any legal export restrictions or limitations, such as those established in the International Traffic in Arms Regulations (ITAR) or equivalent instruments applicable in other non-EU jurisdictions. Applicants shall also report, in a dedicated subsection, if and which p Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Digital, Industry and Space
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