Industrialising Urban Mining

We turn yesterday’s technology into tomorrow’s supply chain.

Who we are

As a leading urban miner with combined 50+ years in the industry, the founding team of Majestic Corporation has built the data, supplier relationships and refinery partnerships that reveal the true value of end-of-life material. Today, we’re embedding that intelligence into automated, AI-driven processing infrastructure — starting at our Wrexham facility and expanding site by site.

50+ YEARS EXPERTISE AI-DRIVEN SORTING AQSE-listed · OTCQB-quoted
Orange and blue conveyor belts and metal recovery processing lines inside Majestic Corporation's urban mining facility in Wrexham

The world's largest untapped material reserve isn't underground, it's above.
We recover and put them back to work.

Our material streams

Pile of discarded smartphone circuit boards and charging ports collected for e-waste recycling and precious metal recovery Wall of used catalytic converters and exhaust manifolds collected for platinum, palladium and rhodium recovery Close-up of used batteries, an end-of-life stream for battery metal recycling Aerial view of a large rooftop solar panel array, a future source of recoverable silver and silicon Data centre aisle of server racks above a glass floor with liquid cooling pipes Rows of copper wire spools, a high-value non-ferrous metal recovered from cabling, motors and transformers

Consumer & industrial electronics

From household devices and the servers coming out of AI data centres to cabling, motors and machinery from decommissioned industrial sites. Printed circuit boards carry gold, silver, palladium and copper at concentrations far beyond mined ore.

Catalytic converters

Our heritage stream. Platinum, palladium and rhodium recovered from end-of-life vehicles.

Battery production waste

Anodes, cathodes, black mass, copper and aluminium, as the first great battery wave reaches end of life this decade.

Solar

Silver and silicon from retired installations. A stream that is only just beginning.

Data centres & AI

Gold, silver, palladium and copper are what data centres are physically made of. Every expansion of compute is an expansion of metal demand.

Non-ferrous

Non-ferrous metals are the backbone of everything that conducts, resists corrosion or needs to be light and strong. Copper in cabling, motors, transformers and busbars. Aluminium in frames, housings and extrusion. Zinc, brass and nickel across fittings, castings and alloys.

Majestic's edge

Intelligence

Decades of proprietary data on material composition, recovery rates and pricing. Now becoming a technology asset: machine vision and robotic sorting trained on our own grading data.

Infrastructure

Our 50,000 sq. ft. licensed UK facility upgrades material into high-grade, refinery-ready feedstock.

Replication

We have built the template. A new processing site comes online in 2–3 years — versus 10+ years to permit a mine, with every new site inheriting the intelligence of the last.

Why now?

Rows of server racks in a data centre, hardware that is refreshed every few years and recycled for its metals

AI

Data centres are buildings full of metal. Every 3–5 year refresh cycle hands us the equipment back — and the metal we recover from it returns to the supply chain that builds the next generation.

Robotic arms assembling an electric vehicle (EV) battery pack from lithium-ion cell modules on a factory line

Electrification

The economy is swapping fuel for metal at a pace mining can’t match.

Aerial view of vast raw material stockpiles at a bulk minerals yard, as nations build up critical mineral reserves

Supply Chain Security

Governments are stockpiling critical minerals and tightening trade. Domestic recovery capability is no longer optional — it’s strategic.

The numbers

30,000
tonnes handled annually
$20 million
strategic inventory, heavy in designated critical minerals, according to our FY2025 report
15,000
tonnes annual capacity at our sites