Zeopore Technologies is a catalyst technology company focused on developing and optimizing mesoporous (hierarchical) zeolite materials. It tailors pore architectures through post-synthetic modification to improve mass transport while maintaining zeolite acidity and crystallinity. The company provides customized zeolite materials alongside R&D support for catalyst design, formulation, and performance evaluation from lab to pilot scale.
Zeopore’s materials are applied across refining and petrochemical operations—such as cracking, dewaxing, isomerization, alkylation, and aromatics production—as well as in emerging areas including chemical recycling of plastic waste and biomass conversion. By enhancing access to active sites and controlling acidity profiles, hierarchical zeolites help improve selectivity and yields and lower by-product formation compared with conventional microporous zeolites. Zeopore collaborates with catalyst manufacturers, technology providers, and chemical producers to deploy these materials in industrial processes.
chemXplore tracks 1 project involving Zeopore Technologies, of which one is active.
Zeopore Technologies's role on them: Technology / equipment supplier.
1 new construction.
Expected to start operating, per year.
Contractors, licensors, and offtakers are recorded on this project For subscribers
Targeting: Benzene (1), Plastic waste (1), Toluene (1), o-Xylene (1), p-Xylene (1)
Convert plastic waste into about 10,000 t/y of renewable aromatic oil and downstream benzene, phthalic anhydride and aromatics for circular supply chains; first plant operational early 2028.
First commercial ICCP plant in Delfzijl will process 20,000 t/yr mixed plastic into ~10,000 t/y BTX aromatic oil and ~8,000 t/y by-products, cutting GHG 70–80%.
First commercial plant directly converting mixed plastic waste into 10,000 t/yr BTX plus 8,000 t by-products; construction begins early 2027, start-up mid‑2028.
Mesoporized isodewaxing catalysts (Zeopore tech) raise yields, improve cold-flow, cut cracking and light gases, lower CO2 and recover base oils; feedstock-agnostic.
A new catalyst and pyrolysis process doubles BTX yields from waste plastics and biomass, enhancing sustainable chemical recycling.
The new plant will convert plastic waste into renewable aromatics, reducing carbon emissions. The €80M funding includes equity, debt financing, and grants, highlighting confidence in the innovative approach.
By country, the most active first.