Hydroponic Vertical Tower Systems (Our Product) | Urban/commercial farms, indoor agriculture | - Hydroponic nutrient delivery (ISO 20200 compliant) - UV-protected glass (ISO 16939) - 3 tiers (▲ Advanced: 6 tiers) | - 90% water savings (vs soil systems) - Space-efficient (fits 24 plants/m²) - Modular design for scalability | - Higher upfront cost - Requires electricity - Complex maintenance for Advanced tier (filtration systems) |
Traditional Soil-Based Greenhouses | Rural farms, home gardening | - Soil-based planting - Steel/glass structure (ASTM A36) - Single-tier layout | - Lower initial cost - No electricity dependency - Familiar planting method | - 40% more water use - Less space-efficient (12 plants/m²) - Prone to pests/disease |
Aeroponic Systems | High-value crops, R&D labs | - Mist-based nutrient delivery (ASABE S649) - LED lighting (IEC 62471) | - 50% faster growth - Zero soil/water waste - Pathogen-free environment | - High energy consumption (2x hydroponic systems) - Fragile mist nozzles - Expensive to maintain |
Flatbed Hydroponic Systems | Rooftop farms, small-scale growers | - PVC channels (ISO 14001) - Single-tier design | - Lower cost than vertical systems - Easy setup/maintenance - Compact footprint | - Limited scalability (max 12 plants/m²) - No vertical space optimization - Less water efficiency (60% reuse) |
Container-Based Greenhouses | Mobile farms, disaster zones | - Shipping container structure (ISO 6346) - Climate-controlled interior | - Portable (road/rail transport) - All-in-one system (includes lighting/water) - Quick deployment | - High initial cost ($20k+) - Limited space per unit (15m² max) - Requires flat terrain |
Drip Irrigation Greenhouses | Vineyards, large-scale farms | - Drip irrigation (ISO 19600) - Soil-based with mulch | - 30% water savings - Low maintenance - Suitable for root crops | - Space-intensive (8 plants/m²) - Soil degradation risk - Slow growth cycle |