Cutting-edge systems for sustainable seafood production
Land-based closed-loop systems for Organic King Salmon. Advanced filtration, temperature control, and water quality monitoring ensure optimal growth conditions with 99% water reuse.
Offshore cage systems for Mahi Mahi production. Positioned in deep waters with natural currents to minimize environmental impact and maximize fish health.
IoT sensors and blockchain technology track every fish from hatchery to plate. Complete transparency for consumers and regulators with real-time data access.
Symbiotic plant cultivation using nutrient-rich water from fish tanks. Growing vegetables and herbs while naturally filtering water for fish production.
Advanced reverse osmosis and solar desalination provide sustainable freshwater for operations. Reduces dependence on municipal water supply.
Solar panels, wind turbines, and biogas generators power all operations. Net-zero energy consumption with surplus sold to the grid.
Collaborating with world leaders in aquaculture innovation
Dumpling processing lines, IQF (Individual Quick Freezing) systems, and advanced food processing technology for export-grade products.
Spirulina photobioreactors, precision water quality sensors, and automated nutrient dosing systems for optimal algae cultivation.
RAS tank design, sea cage engineering, and salmon farming best practices. Decades of expertise in sustainable aquaculture systems.
Hydroponic LED systems for vertical farming. Energy-efficient plant cultivation integrated with aquaculture operations.
IoT sensors, water management software, and blockchain-based traceability platforms. Real-time monitoring and data analytics.
From hatchery to harvest - a fully controlled environment
What makes AUMLAND's technology unique
First harvest below $1/kg. Internal nutrient cycling and waste valorization reduce costs to near-zero from the second harvest onwards.
Fish waste feeds algae and plants. Plant roots filter water for fish. Organic waste becomes biogas and compost. Nothing is wasted.
AI and machine learning optimize feeding schedules, water parameters, and harvest timing. Maximum efficiency with minimal human intervention.
Multi-layer disease prevention: UV sterilization, ozone treatment, quarantine protocols, and veterinary monitoring ensure healthy stock.
Thousands of IoT sensors track temperature, oxygen, pH, ammonia, and fish behavior. Instant alerts prevent problems before they occur.
Modular design allows replication across multiple sites. Technology transfer to other regions and countries for global impact.
Continuous innovation for better aquaculture
Partnerships: Collaborating with leading universities and research institutions in India, Norway, and Singapore for cutting-edge aquaculture science.