One of the most energy-consuming subsectors in agriculture is intensive livestock farming, which requires both electricity and thermal energy to meet its diverse energy demands. These include operations such as cooling and heating livestock buildings, operating equipment and tractors, lighting, and ventilation systems. Addressing fossil fuel usage in the agricultural industry has been crucial for achieving the EU’s global sustainability goals. By reducing fossil fuel use and, consequently, greenhouse gas (GHG) emissions in this energy-intensive sector, the project contributed to the green energy transition and overall sustainability in agriculture.
The mission of RES4LIVE was to develop and implement integrated, cost-effective, and context-specific Renewable Energy Sources (RES) solutions to achieve fossil-free livestock farming. Fossil fuel use in agriculture has been a significant source of GHG emissions, contributing to global climate change and posing risks to food security.
With decreasing costs, improved reliability, and enhanced performance of key RES technologies, opportunities for livestock producers to engage in RES production have grown. However, the diversity of available business models necessitated a thorough analysis to identify optimal operating systems. The potential, performance, and impact of RES technologies depend on local climate, site-specific conditions, farm size and type, management techniques, degree of mechanization, and socio-economic factors. Farmers require sound advice, investment support, and risk management strategies. The adaptation of RES technologies and machinery, along with their large-scale demonstration at the farm level, required supporting measures related to spatial planning, infrastructure, diverse business models, and market organization. RES4LIVE addressed these challenges to ensure the broader adoption of RES and energy efficiency technologies, machinery, and techniques in livestock farms, moving towards zero-fossil fuel consumption.
The project utilized key RES technologies, including PVT panels, heat pumps, geothermal energy, and biomethane production from biogas for tractors, to determine the most effective and efficient ways to incorporate them on farms. RES4LIVE successfully demonstrated integrated RES systems in four pilot farms located in Belgium (swine), Germany (dairy), Greece (poultry), and Italy (swine). While overarching RES technologies were implemented throughout the project, site-specific solutions were also introduced. Additionally, the project conducted a comprehensive assessment of RES technology integration and outcomes to facilitate their wider replication in the livestock farming industry.