Controlled by design. Scaled for industry.

Closed systems in a cleanroom, precise light control and digitally monitored process management – independent of weather, season and uncontrolled influences.

Controlled production environment Reproducible conditions for defined microalgae biomass.
Predictable process management Stable cultivation independent of seasonal fluctuations.
Resource-efficient system Most of the process water is recycled in a closed loop.
Scalable platform Modular production for development and commercial-scale production requirements.

Why conventional systems reach their limits

Conventional microalgae production often depends on external factors such as light availability, weather and seasonal fluctuations. For applications with high requirements for reproducibility, documentation and process reliability, this can lead to limitations.

That is why ALGENE takes a controlled approach: highly efficient bioreactors, defined process conditions and digital documentation create a robust basis for industrial microalgae production.

Why Algene?

Less dependent on sun and season

Controlled production conditions allow more predictable cultivation than systems that depend heavily on weather or season.

Why Algene?

Defined process environment

Highly efficient bioreactors create stable conditions for reproducible microalgae biomass.

Why Algene?

Digital process control

Selected process parameters are continuously monitored and documented – including density, pH value and temperature.

The Algene technology platform

ALGENE uses its own process for controlled microalgae production. The platform combines the advantages of established cultivation approaches with a closed process environment suitable for industrial use.

The focus is not on individual technical parameters, but on the result: reproducible biomass quality, predictable process management and scalable production conditions.

Controlled cleanroom environment

ALGENE produces microalgae in a controlled cleanroom environment according to GMP cosmetics standards. The focus is on defined production conditions, reproducible quality and documented procedures.

  • controlled production environment
  • defined process conditions
  • structured quality procedures
  • batch-level traceability
  • GMP cosmetics process-certified according to DIN EN ISO 22716 – the first microalgae producer in Europe

Multi-channel light control

A multi-channel lighting system supports defined growth conditions and makes production less dependent on natural sunlight. Lighting is controlled and documented per process.

  • defined lighting
  • independent of natural sunlight
  • reproducible growth conditions
  • process-specific control

Highly efficient bioreactors

ALGENE uses highly efficient bioreactors for controlled microalgae production. The platform combines selected advantages of established cultivation approaches with a process environment suitable for industrial use.

  • controlled cultivation conditions
  • stable biomass quality
  • industrial compatibility
  • scalable production logic

Digital process documentation

Selected process parameters are continuously monitored and documented, including density, pH value and temperature. This creates a robust basis for QC/QA processes and batch-level traceability.

  • monitoring of selected parameters
  • digital documentation
  • support for reproducible quality
  • basis for QC/QA processes

Scalable platform with integrated system efficiency

ALGENE’s technology has a modular design and is built for industrial scaling. Standardised procedures, digital process documentation and controlled production conditions enable reproducible quality even as requirements grow.

The platform architecture is based on:

  • highly efficient bioreactors
  • a controlled cleanroom environment
  • digital process documentation
  • standard operating procedures (SOPs)
  • scalable production logic

At Algene, system efficiency means:

  • resource-efficient process management
  • recycling of most of the process water
  • defined production conditions independent of seasonal fluctuations
  • efficient use of relevant input streams

Scalability, process control and resource efficiency are therefore not separate goals, but integral parts of the same technological architecture.