From Lab Bench to Commercial Module
Each project below is shown with its challenge, technology basis, current stage and next development step. Entries reflect development status, not completed commercial deployments.
Catalytic Plastic-to-Naphtha
Challenge: Mixed, low-value polyolefin waste (LDPE, PP) is bypassed by mechanical recycling and informal collection.
Technology: Continuous auger-fed depolymerisation with in-line catalytic vapour upgrading.
Technical basis: Seven catalysts screened on HDPE feedstock; best performer reached 72.29% light naphtha selectivity (lab result).
Current stage: Laboratory validation complete for catalyst screening; process development underway.
Next step: Pilot-scale demonstration ahead of the targeted first commercial module (5 TPD, target 2027).
Full technology detail →Biomass-to-Hydrogen
Challenge: Agricultural residues are decentralized and underutilized as a carbon resource.
Technology: Integrated pyrolysis and catalytic steam reforming for hydrogen-rich gas.
Current stage: Technology development.
Next step: Laboratory validation of the integrated reforming step.
Full technology detail →Waste-to-Chemicals
Challenge: Waste and renewable feedstocks remain under-valorised as chemical building blocks.
Technology: Catalytic conversion, separation and purification into chemical intermediates.
Current stage: Research and concept development.
Next step: Feedstock and catalyst selection for laboratory testing.
Full technology detail →Catalysis & Purification
Challenge: Hydrogen, CO₂ and hydrocarbon product streams across all platforms need separation and polishing.
Technology: Adsorption-based separation and purification processes.
Current stage: Research and development.
Next step: Integration with the Plastic-to-Naphtha and Biomass-to-Hydrogen process trains.
R&D detail →