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Repository Structure:
- Move files from cluttered root directory into organized structure
- Create archive/ for archived data and scraper results
- Create bugulma/ for the complete application (frontend + backend)
- Create data/ for sample datasets and reference materials
- Create docs/ for comprehensive documentation structure
- Create scripts/ for utility scripts and API tools
Backend Implementation:
- Implement 3 missing backend endpoints identified in gap analysis:
* GET /api/v1/organizations/{id}/matching/direct - Direct symbiosis matches
* GET /api/v1/users/me/organizations - User organizations
* POST /api/v1/proposals/{id}/status - Update proposal status
- Add complete proposal domain model, repository, and service layers
- Create database migration for proposals table
- Fix CLI server command registration issue
API Documentation:
- Add comprehensive proposals.md API documentation
- Update README.md with Users and Proposals API sections
- Document all request/response formats, error codes, and business rules
Code Quality:
- Follow existing Go backend architecture patterns
- Add proper error handling and validation
- Match frontend expected response schemas
- Maintain clean separation of concerns (handler -> service -> repository)
1.6 KiB
1.6 KiB
EU Innovation Fund (Small-Scale Projects)
Overview
The Innovation Fund provides grants for first-of-a-kind commercial demonstration of low-carbon technologies, with potential application to innovative circular processes.
Managing Body
CINEA (EU Climate, Infrastructure and Environment Executive Agency)
Funding Type
Grants for first-of-a-kind commercial demonstration of low-carbon technologies
Funding Amount
- €2.5–7.5M per project
- For "small" projects with CAPEX under €7.5M
- Up to 60% of relevant costs
Deadlines
- Calls typically yearly
- 3rd small-scale call (2023): March 2023 (closed)
- Future calls expected under Net-Zero Industry framework
Eligibility
- Companies or consortia in EU/EEA countries
Thematic Fit
While focused on GHG reduction, supports innovative circular processes that significantly cut emissions:
- Industrial waste reuse
- Process efficiency improvements
- Resource optimization technologies
Relevance to City Resource Graph
- Industrial symbiosis platforms that reduce emissions
- Waste-to-resource technologies
- Energy-efficient resource matching systems
Links
Application Tips
- Demonstrate significant GHG emission reductions
- Show commercial viability and first-of-a-kind nature
- Extremely competitive - focus on near-commercial demos (TRL 7-9)
- Technical and financial robustness critical