top of page
Mg header alt 2.jpg

Magnesium

High purity, low- carbon magnesium for a wide range of applications.

Designed for applications where alkalinity control, purity and performance matter.

Product snapshot

Specs
  • Hydroxide, oxide and carbonate compounds

  • Greater than 95% and 98% purity

  • Available in slurry, powder and paste forms

Benefits
  • Low-waste, low carbon production

  • Cost-competitive

  • Non-hazardous alternative to caustic soda or lime

Properties that deliver quality, reliability and performance

The properties of our magnesium make it an effective input across a range of industrial uses. 

Alkalinity control

More alkalinity per kilogram

​

Controlled release

​

Non-corrosive performance

High heat materials

Excellent thermal insulation

​

​Non-combustible

​

​​

High melting point

Metals manufacturing

Low-carbon metal input 

​​

High strength-to-weight ratio in finished alloys 

​

Lightweight end-use performance

Environmental

High CO2 absorption capacity

​

Rapid sequestration rate

​

Quantifiable storage

Industrial applications

ALKALINITY CONTROL

Wastewater treatment

Our magnesium hydroxide is a safer, lower-carbon alternative for wastewater treatment, helping reduce Scope 3 emissions in existing operations.

HIGH HEAT MATERIALS

Refractory materials

Use our magnesium oxide to produce lower-carbon refractory materials for steelmaking and other high-heat industrial processes, without compromising performance.

ALKALINITY CONTROL

Agricultural supplements

Improve livestock nutrition, soil health and farm yield with our magnesium oxide, a controlled source of alkalinity that can support bicarbonate formation in soils.

METALS

Alloy manufacturing

For structural applications where lightweight strength and durability matter, our magnesium hydroxide can be used to produce lower-carbon magnesium metal.

ALKALINITY CONTROL

Industrial waste management

Neutralise industrial acid waste safely with our magnesium hydroxide, using slow-release alkalinity and improved pH buffering to help meet environmental standards.

ENVIRONMENTAL

Carbon removal

Our magnesium hydroxide helps mineralise and permanently store CO2 from industrial emissions, and supports natural carbon dioxide removal processes.

Why choose Aspiring Materials
Quarry waste.jpg

Sourced from mining waste

Our magnesium is derived from olivine, an abundant rock, typically discarded as waste in mining operations. By sourcing magnesium from an abundant feedstock, supply chain logistics are dramatically reduced.

Aspiring Materials pilot plant

Produced from a patented low-carbon process

Developed from decades of R&D, patented across world leading markets, the Aspiring Process produces no waste or carbon emissions. Our pilot plant is currently capable of processing 250kgs of olivine per day.

Oliving global map

Developed in New Zealand, globally scalable

World-leading technology developed in Christchurch, New Zealand our elegant process design makes it easy to scale wherever critical minerals are needed.

Green_banner_bkgrd.gif

Trial our materials

Talk with us about testing our magnesium in your operation.

bottom of page