Projects & Technologies

Modular energy technologies for decentralised infrastructure

Future Cycle develops and coordinates clean-energy technologies focused on waste conversion, resilient local energy generation and containerised deployment.

Plasma-driven energy independence

Re-Power Ukraine

Compact plasma-assisted waste-to-energy system for mixed waste streams.

Plasma gasifier reactor render

Technology overview

Re-Power Ukraine is a compact plasma-assisted waste-to-energy system designed to convert mixed waste streams into high-calorific syngas.

Unlike conventional incineration systems, the technology is based on gasification and pyrolysis processes aimed at maximising usable gas output while reducing residual waste volumes.

The project is focused on creating a transportable container-based unit suitable for rapid deployment in locations with limited access to stable energy infrastructure.

Technology highlights

  • Compact container-sized architecture
  • Syngas generation for CHP systems
  • Mixed-waste processing capability
  • Reduced transport and installation requirements
  • Scalable modular deployment
  • Potential heat and electricity generation
  • Construction-grade slag by-product

Current stage

Prototype development, pilot deployment preparation and field validation activities in Ukraine. The project is focused on advancing the technology toward commercially deployable modular systems.

Feedstock Mixed plastic and municipal waste streams
Outputs High-calorific syngas and construction-grade slag
Deployment Compact modular systems for decentralised energy generation
Containerised biogas systems

BioSolar Nexus

Modular biogas infrastructure for farms, households and cold-climate regions.

BioSolar Nexus system

Technology overview

BioSolar Nexus is a modular anaerobic digestion system developed for farms and decentralised energy applications.

The system converts manure and organic waste into biogas, electricity, heat and nutrient-rich digestate fertiliser.

The platform is specifically engineered for colder climates using insulated reactor systems, integrated heat recovery and modular container-based deployment.

Technology highlights

  • Containerised modular deployment
  • Integrated CHP electricity and heat generation
  • ~30 m³ insulated anaerobic digester
  • Biogas storage and gas-holder integration
  • PVT-assisted thermal support systems
  • Heat recovery for buildings and infrastructure
  • Digestate as nutrient-rich fertiliser

Current stage

Pilot-system engineering, operational modelling and infrastructure validation for deployment in agricultural and decentralised energy scenarios.

Feedstock Farm manure, organic waste and agricultural residues
Outputs Biogas, electricity, heat and digestate fertiliser
Deployment focus Farms, remote infrastructure and cold-climate communities