Company intelligence
Metalysis
A Western midstream asset - processing metal oxides into metal and alloy powders for critical and advanced sectors
About Metalysis
With 90% of midstream processing in China - Metalysis at scale can help solve the West's critical mineral supply chain risk. Metalysis operates its single-stage, solid-state FFC technology to produce valuable critical metal powders, alloy powders and lightweight refractory high entropy alloys for use in key advanced and critical sectors including semiconductors, capacitors, hypersonics, defence, aerospace, space, clean energy - and other advanced manufacturing sectors. From our Gen 1s producing grammes of output per run - where we develop new bespoke products for clients, to our Gen 4 which can produce tens of tonnes per annum - we can scale product to industrial outputs. We work with and help shape critical mineral strategies in 5-Eyes nations - as a Western midstream asset. Metalysis's unique patented technology brings unique qualities to each of the metal powders that it produces - so catering to the exacting demands of advanced manufacturing end-clients. Developed at the University of Cambridge, the Metalysis FFC technology provides a more environmentally friendly and efficient process compared to traditional metal and metal powder reduction methods. Metalysis' ongoing work with the European Space Agency and the UK Space Agency develops our position as the global leader in ISRU oxygen extraction from lunar regolith - whilst leaving valuable metal powders - which meets the needs of lunar habitation, space exploration and the objective of reaching Mars. www.metalysis.com
Verified activity
Signals from Metalysis
2 published signals
Capital & Finance
Metalysis received nearly Euro 1 million in funding from the European Space Agency for a project to develop a continuous or quasi-continuous sustainable titanium production process using the Metalysis FFC Process.
Reported by Metalysis
Partnerships
Metalysis partnered with the Danish Technological Institute on a project to process deoxygenated lunar regolith into conductive inks or metal powers for in-situ production of electronics
Reported by Metalysis