OPHS

OPHS

OPHS

NEW PROJECT 2026 S-NFI ERA

NEW PROJECT 2026 S-NFI ERA

Dehidrtator 2.0

Dehydrator 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.

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.

Grinder v4

High-torque industrial crushing system. Ensures uniform particle size reduction for diverse organic inputs, preparing the substrate for high-efficiency energy transformation.

High-torque industrial crushing system. Ensures uniform particle size reduction for diverse organic inputs, preparing the substrate for high-efficiency energy transformation.

Pelletization v1

Final densification module that converts processed waste into high-caloric value pellets. Creates a standardized, easy-to-transport, and CO2-neutral solid biofuel.

Final densification module that converts processed waste into high-caloric value pellets. Creates a standardized, easy-to-transport, and CO2-neutral solid biofuel.

Biohybridization integrates biological processes and technological systems to transform organic waste into high-value energy resources. Through telemetry control and extreme humidity reduction, energy density and flow stability are increased. This approach transforms an environmental liability into an operational infrastructure capable of continuously producing useful energy.

Biohybridization integrates biological processes and technological systems to transform organic waste into high-value energy resources. Through telemetry control and extreme humidity reduction, energy density and flow stability are increased. This approach transforms an environmental liability into an operational infrastructure capable of continuously producing useful energy.

300%
increase in logistics efficiency compared to traditional models.

— TECHNOLOGY —

— SOFTWARE—

— SOFTWARE—

SMART FARMING

NAVARRA / GLOBAL

NAVARRA / GLOBAL

NAVARRA / GLOBAL

2026

2026

2026

We optimize growing cycles using IoT sensors and real-time data analysis. This allows us to reduce water consumption and ensure that each product is harvested at its peak of ripeness.

We optimize growing cycles using IoT sensors and real-time data analysis. This allows us to reduce water consumption and ensure that each product is harvested at its peak of ripeness.

TRAZABILIDAD TOTAL

LOGÍSTICA

LOGÍSTICA

LOGÍSTICA

2026

2026

2026

We implement advanced tracking systems so that customers can follow their product’s journey from seed to table. Food safety is guaranteed through transparent digital processes.

We implement advanced tracking systems so that customers can follow their product’s journey from seed to table. Food safety is guaranteed through transparent digital processes.

FRESH TECH

LABORATORIO

LABORATORIO

LABORATORIO

2026

2026

2026

We develop controlled atmospheres and smart biodegradable packaging that extend the shelf life of fresh foods without the need for harsh chemical preservatives.

We develop controlled atmospheres and smart biodegradable packaging that extend the shelf life of fresh foods without the need for harsh chemical preservatives.

— PHYSICAL PROCESSING—

— PHYSICAL PROCESSING—

Biohybridization 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.


Biohybridization 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.


This approach transforms an environmental liability into an operational infrastructure capable of continuously producing useful energy. We optimize the supply chain by achieving a negative carbon footprint and thermal efficiency that surpasses that of traditional waste management methods.

This approach transforms an environmental liability into an operational infrastructure capable of continuously producing useful energy. We optimize the supply chain by achieving a negative carbon footprint and thermal efficiency that surpasses that of traditional waste management methods.