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Find similar grantsSupports the Government of Ethiopia in designing a model of rural water service delivery to improve the reliability of drinking water services for underserved rural communities in Amhara, Ethiopia.
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Water for Good – Ethiopia Rural Water Service Delivery is funded by Hilton Foundation. Verify program details on the funder's official page before applying.
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SSbD bio-based solutions for home and/or personal care is sponsored by European Commission — Horizon Europe. Expected Outcome: Successful proposals will contribute to the Chemicals Strategy for Sustainability and Ecodesign for Sustainable Products Regulation, the Chemical Industry Action Plan, the Clean Industrial Deal as well as the Horizon Europe Mission "Restore our Ocean and Waters by 2030" in particular to Objective 2: "Prevent and eliminate pollution of our oceans, Seas and waters". Projects results are expected to contribute to the following expected outcomes: Full industrial scale biorefinery and related value chain(s) to produce SSbD bio-based solutions for home and/or personal care sector with significantly improved sustainability. Wider availability of bio-based products in home and/or personal care sector meeting both regulatory standards and technical performance requirements. Increased consumer/end user acceptance of bio-based solutions, facilitating market uptake. Contribution to the EU strategic autonomy, resilience and competitiveness, reducing the fossil feedstock dependence for chemicals production and minimising biomass imports dependencies. Scope: The home and personal care sector, including fast-moving consumer goods (FMCG) and cosmetics, is a key industry where sustainability and performance challenges and demands are high. SSbD and competitive bio-based solutions are needed, for instance, for solvents, surfactants, preservatives, antimicrobial and antifungals agents, disinfectants, film forming agents, emulsifiers, emollients, exfoliants and abrasives, stabilisers, polymers and thickeners, conditioning agents, active ingredients, and other functional compounds. Despite advancements at demo scale in green chemistry and biotechnologies, further effort is needed to bridge innovation gaps and demonstrate at industrial scale the production of SSbD bio-based alternatives to conventional chemicals and ingredients, while maintaining/enhancing key functional properties in end-products/ formulations, such as physical stability, shelf life, efficacy, prevention of bioaccumulation and biodegradability. Proposals under this topic should: Demonstrate (at TRL 8) the production of SSbD bio-based solution(s) as an alternative to conventional chemicals, ingredients and combinations thereof, that are currently used in the formulation of home and/or personal care products (including cosmetics). SSbd bio-based chemicals/ingredients and biotechnology solutions are both in scope. Materials entering the end product formulation (e.g., granulates, powders, microbeads, micro/nano cellulose) are also in scope, while other materials related to home and personal care applications (e.g., nonwovens, other wipes, packaging) are out of scope. Demonstrate (at TRL 7 and above) the application of the bio-based solution(s) into the formulation of market relevant end-product(s). Assess technical performances of end-product(s), ensuring that their final properties meet market application requirements. Adding new functionalities for specific applications is also in scope. While the topic focuses primarily on home and personal care applications, the demonstrated solution(s) could also be applicable to industrial production processes. When this is the case, validation (at TRL 6) of the industrial use case should be addressed. Test that the release and accumulation of pollutants and harmful substances in the water is being avoided, including microplastics. When biodegradable solutions are targeted, validate biodegradability according to applicable EU/international standards, depending on the substance group and the final application(s). 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), involve end-users, including brand owners and consumers when applicable, starting from the early stages to assess market acceptance of the targeted end-products and incorporate insights into 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: Biotechnology (non-medical), bioreactors, applied microbiology, Chemical process engineering, Industrial biotechnology, Materials engineering (biomaterials, metals, ceramics, polymers, composites, etc.), bio-based chemicals, bio-based materials, cosmetics, green chemistry, home and personal care, industrial biotechnology, safe and sustainable by design, STEP-Biotech
Developing managed aquifer recharge techniques (MAR) in a rural context is sponsored by European Commission — Horizon Europe. Expected Outcome: Project results are expected to contribute to all of the following expected outcomes: farmers have access to water supply from managed aquifer recharge systems and to appropriate business models to cope with longer and more intense periods of water scarcity due to climate change, while preserving the good status of ground water bodies; water ecosystems are healthier and more resilient to climate change, and water related ecosystem services are protected and strengthened, while water resilience of farming systems is increased; policy makers are provided with improved insights on mechanisms and instruments to improve the water resilience of the agricultural sector to cope with climate change effects. Scope: Droughts in the EU are increasing in frequency, magnitude and impact, and the affected area is expanding. Water storage systems can limit abstractions from surface waters and groundwater reducing the environmental footprint of agriculture and food systems, and bring the demand and supply of water better in balance, strengthening the resilience of EU agriculture. Proposals should: extend, improve and customize managed aquifer recharge (MAR) techniques at farm, basin and catchment level, covering most representative EU agricultural contexts in view of climate change; develop a methodology to help assessing the most suitable location or situations to implement these MAR techniques and validate with a representative sample of case-study regions, taking into account for the differential impact of climate change; develop a user-friendly monitoring, reporting and verification system (MRV) to follow the impact on ground water quality and quantity, as well as associated water ecosystems and dependent terrestrial ecosystems; evaluate the potential impact and sustainability of managed aquifer recharge techniques in rural areas, including on the groundwater ecosystems, associated water ecosystems and dependent terrestrial ecosystems, and drinking water from a multi-objective approach, and its integration with evidence-based engineered and Nature-based Solutions to reduce runoff, soil erosion and improve landscape climatic resilience; calculate the cost-benefits of MAR techniques and propose different business models for the compensation or remuneration of individual farmers or land managers (payments schemes, nature, carbon or water credits, …) for hosting MAR initiatives; demonstrate the feasibility of these business models at local level (catchment, river basin, ...) by at least 2 case studies in different pedoclimatic zones and evaluate the possible barriers for adoption by farmers or land managers; provide a framework of governance models that could fit the different local socio-economic, regulatory and pedo-climatic conditions. The actions funded under this topic are relevant to the EU policies related to the EU Vision for Agriculture and Food, as well as to the European Water Resilience Strategy and the EU Climate Adaptation Strategy. Proposals must implement the multi-actor approach and ensure adequate involvement of relevant stakeholders, including farmers, land managers, water governance bodies and local authorities. Proposals are encouraged to build on the results of relevant projects funded under Horizon 2020 and Horizon Europe and ensure collaboration with relevant ongoing and forthcoming projects from the Mission Soil and the Mission Ocean & Waters. Proposals should follow the Guidance document on managed aquifer recharge techniques of the CIS Working Group on Groundwater [1] . Technology Readiness Level - Technology readiness level expected from completed projects Activities are expected to achieve TRL 4-5 by the end of the project – see General Annex B. [1] Common implementation strategy for the water framework directive and the floods directive: https://op.europa.eu/en/publication-detail/-/publication/e827bbe4-fe33-11ef-b7db-01aa75ed71a1/language-en Programme areas: Horizon Europe (HORIZON), Global Challenges and European Industrial Competitiveness, Food, Bioeconomy Natural Resources, Agriculture and Environment, Agriculture, Forestry and Rural Areas Keywords: Business analysis, Business governance, Business models, Catchment scale planning, Environmental engineering and geotechnics, Environmental impact assessment, Human impacts and other stressors, Hydrology (Water science), Natural resources and environmental economics, Nature-based solutions, Water management, Water recycling and re-use, Water technology, MAR, MRV, business model, climate adaptation, drought, groundwater, impact analysis, managed aquifer recharge, monitoring, reporting and verification system, multi-actor approach, nature-based solutions, sustainable agriculture, water ecosystem, water management, water resilience, water storage