/0.2 TEC — BioHybrid Technology
BIOHYBRID
New technology, new world. Bio-hybridization integrates biological processes and technological systems to transform organic waste into high-value energy resources. Through telemetric control and extreme moisture reduction, energy density and flow stability are increased.
Per unit via Dehydrator 2.0
Integrated processing line
Carbon-neutral solid biofuel
Current operational version
OPHS Line — Physical Processing
Industrial
hardware suite
Three integrated modules forming the complete physical processing chain. Each unit is designed for precision, standardization and scalability.
2.0
Advanced thermal processing unit designed to reduce organic waste weight by up to 80%. Optimizes logistics by eliminating moisture and stabilizing the product for immediate valorization.
v4
High-torque industrial grinding system. Guarantees uniform particle size reduction for diverse organic inputs, preparing the substrate for high-efficiency energy transformation.
v1
Final densification module converting processed waste into high-calorific-value pellets. Creates a standardized, easy-to-transport, CO₂-neutral solid biofuel.
BioHybrid Process
How waste becomes
energy
Reception & Classification
Organic waste is received, classified by moisture content and catalogued as an energy unit — not a disposal problem.
Thermal Dehydration
Dehydrator 2.0 applies controlled thermal processing to remove up to 80% moisture weight. Energy density increases proportionally.
Size Normalization
Grinder v4 reduces particle size uniformly, ensuring consistent energy output and optimal substrate for the next stage.
Pelletization & Output
Pelletization v1 densifies the processed substrate into standardized high-calorific biofuel pellets. Traceable, monetizable, carbon-neutral.
Software Companion
Intelligence
layer
Hardware without software governance is just equipment. S-NFI Intel Core provides the intelligence layer that orchestrates every physical process.
Real-time temperature and humidity monitoring with automatic adjustment. Guarantees reaching dehydration target without manual intervention.
Adaptive torque and speed control based on material density feedback. Maintains uniform output regardless of input variability.
Calorific value measurement and traceability sealing on every batch. Full chain of custody from waste origin to biofuel delivery.