Vitavolt Global · ClimateTech · September 18, 2026
Oxygen Production Facility | Integrated ClimateTech & Biorefinery Platform
Vitavolt Global Oxygen Production Facility is an integrated ClimateTech and microalgae biorefinery research direction connecting renewable energy, BESS, CO2 management, microalgae, photobioreactors (PBR), water/heat integration and process control.
The project is not positioned as a validated commercial technology. Its next step is scientific evaluation and experimental validation of the biological core.
Research objective
Experimental data should determine which output combinations are technically and economically meaningful. Possible streams include high-value biomass, O2 and SAF/biofuel feedstock. O2 is not the sole target; SAF/biofuel feedstock is one possible research output among alternatives, not a verified commercial result.
Development pathway: Design → Test → Measure → Validate → Optimize → Scale.
Design → Define assumption → Test → Measure → Validate → Optimize → Scale
Core system architecture
- Renewable energy infrastructure (PV / RES) with BESS
- CO2 source, conditioning and feed to the biological process
- Microalgae-based photobioreactors (PBR)
- O2 production, gas conditioning and purification (one possible stream)
- Continuous biomass harvest and downstream evaluation
- Possible high-value streams (e.g. protein, pigment, lipid, biomaterials)
- Biomass scenarios for SAF / biofuel feedstock research (hypothesis)
- Closed-loop water treatment and recovery
- Industrial waste-heat / heat recovery integration where suitable
- Hydrogen production and storage considered only as research options
- Sensors, process control, data analysis, optimization and predictive maintenance
Academic evaluation process
An academic discussion process has started with Prof. Dr. Meltem Conk Dalay, Department of Bioengineering, Faculty of Engineering, Ege University, focusing on the biological core and microalgae-based production approach.
Discussion topics include species selection, PBR design, productivity, CO2 utilization, downstream processing and data required for laboratory-to-pilot transition.
Important technical note
This architecture is an R&D and engineering framework. Unvalidated performance, production, CAPEX, revenue or payback figures are not presented as guarantees.
Why this matters
Energy and carbon management are connected with biological production so that O2, biomass and high-value product pathways can be investigated on one platform. Experimental data will determine which scenario is meaningful under which conditions.