Agrolinera offers a digital platform combined with sensor‑enabled collection points to monitor, pre‑treat, and trace livestock and dairy liquid waste in fragmented, small‑scale farms. Its cloud‑based analytics optimize collection logistics and connect excess residues to biogas or fertilizer production, turning waste into renewable energy and valuable agronomic inputs while reducing environmental impact.
Funding
Funding not disclosed
Founders
Product
Problem
Small-scale livestock farms generate large volumes of liquid waste (urine, manure, and whey) that are difficult to collect, transport, and treat efficiently, leading to environmental pollution, methane emissions, and lost economic opportunities.
Solution
Agrolinera provides a digital platform and sensor‑enabled hardware for the collection, monitoring, and pre‑treatment of livestock and dairy residues in fragmented, minifundist settings. The system uses low‑cost, networked collection points that record waste quantities, temperature, and composition, creating traceability from the farm to processing facilities. Data are transmitted to a cloud service where analytics optimize routing, reduce collection costs, and identify excess streams suitable for biogas production or fertilizer manufacturing. By integrating with waste‑to‑energy plants and circular‑economy initiatives, the solution turns otherwise polluting residues into renewable energy and valuable agronomic inputs, supporting the sustainability and profitability of traditional rural farms.
Target Audience
Primary customers are small and medium‑size livestock and dairy producers in rural areas, as well as waste‑management companies and municipal agencies responsible for agricultural waste logistics and circular‑economy projects.
Features
- Sensor‑filled collection points (clean points) that measure volume, flow, and quality of urine, manure, and whey in real time
- Cloud‑based dashboard for farmers, waste managers, and public authorities to monitor waste streams and schedule pickups
- Optimized logistics algorithm that consolidates fragmented collection sites to lower transport expenses
- End‑to‑end traceability from the originating farm to biogas or fertilizer processing facilities
- Integration hooks for renewable energy plants and circular‑economy projects, enabling conversion of waste into biogas and high‑value fertilizers
- Scalable architecture designed for fragmented, minifundist livestock environments