
Our electroextraction platform will close the gap to supply chain independence.
Our OYSTER® system enables onshore refining.
[Scroll down]

Our electroextraction platform will close the gap to supply chain independence.
Our OYSTER® system enables onshore refining.
[Scroll down]

Our electroextraction platform will close the gap to supply chain independence.
Our OYSTER® system enables onshore refining.
[Scroll down]

Our electroextraction platform will close the gap to supply chain independence.
Our OYSTER® system enables onshore refining.
[Scroll down]
One platform. Multiple feedstocks. Multiple metals.
Nth Cycle’s patented electroextraction platform combines electrochemistry, filtration, and chemical precipitation into a single architecture, unlocking performance advantages that none can achieve alone. By combining multiple refining steps into one continuous process, electroextraction produces the same industrial chemicals used in refining today, but with electricity tuned to target different metals. This process occurs in the electroextraction cells, integrated into the OYSTER, Nth Cycle’s modular refining system.
One platform. Multiple feedstocks. Multiple metals.
Nth Cycle’s patented electroextraction platform combines electrochemistry, filtration, and chemical precipitation into a single architecture, unlocking performance advantages that none can achieve alone. By combining multiple refining steps into one continuous process, electroextraction produces the same industrial chemicals used in refining today, but with electricity tuned to target different metals. This process occurs in the electroextraction cells, integrated into the OYSTER, Nth Cycle’s modular refining system.
One platform. Multiple feedstocks. Multiple metals.
Nth Cycle’s patented electroextraction platform combines electrochemistry, filtration, and chemical precipitation into a single architecture, unlocking performance advantages that none can achieve alone. By combining multiple refining steps into one continuous process, electroextraction produces the same industrial chemicals used in refining today, but with electricity tuned to target different metals. This process occurs in the electroextraction cells, integrated into the OYSTER, Nth Cycle’s modular refining system.
One platform. Multiple feedstocks. Multiple metals.
Nth Cycle’s patented electroextraction platform combines electrochemistry, filtration, and chemical precipitation into a single architecture, unlocking performance advantages that none can achieve alone. By combining multiple refining steps into one continuous process, electroextraction produces the same industrial chemicals used in refining today, but with electricity tuned to target different metals. This process occurs in the electroextraction cells, integrated into the OYSTER, Nth Cycle’s modular refining system.
Proprietary Electroextraction
Integrates the industrial processes of electrochemistry, filtration, and chemical precipitation into one step.
Cells
This single process occurs within electroextraction cells tuned for different metals.
The OYSTER
The cells are integrated into the OYSTER - a modular system that accommodates different feedstocks, volumes, and business models.
OUR ADVANTAGES
The OYSTER’s modularity solves what traditional refining can’t.
OUR ADVANTAGES
The OYSTER’s modularity solves what traditional refining can’t.
OUR ADVANTAGES
The OYSTER’s modularity solves what traditional refining can’t.
OUR ADVANTAGES
The OYSTER’s modularity solves what traditional refining can’t.
Cheaper

Traditional model
Prohibitively Expensive
The traditional large, centralized refinery model requires billions in upfront capital and operating near full capacity to be profitable.
Headline

Nth cycle’s model
The OYSTER is Cheaper
With 70% lower capital intensity, our system is cost competitive at 5-10x smaller scale.
Cheaper

Traditional model
Prohibitively Expensive
The traditional large, centralized refinery model requires billions in upfront capital and operating near full capacity to be profitable.

Nth cycle’s model
The OYSTER is Cheaper
With 70% lower capital intensity, our system is cost competitive at 5-10x smaller scale.
Cheaper

Prohibitively Expensive
The traditional large, centralized refinery model requires billions in upfront capital and operating near full capacity to be profitable.
The OYSTER is Cheaper
Faster

Traditional model
Slow to Build
Centralized refineries are massive construction projects, requiring extensive permits and approximately 4-5 years to become operational.
Headline

Nth cycle’s model
The OYSTER is Faster
Our system can be installed in existing buildings and deployed in as little as 2 years, including permitting.
Faster

Traditional model
Slow to Build
Centralized refineries are massive construction projects, requiring extensive permits and approximately 4-5 years to become operational.

Nth cycle’s model
The OYSTER is Faster
Our system can be installed in existing buildings and deployed in as little as 2 years, including permitting.
Faster

Slow to Build
Centralized refineries are massive construction projects, requiring extensive permits and approximately 4-5 years to become operational.
The OYSTER is Faster
Cleaner

Traditional model
Too Wasteful
Traditional refineries require vast quantities of chemical reagents to be delivered to the site for processing. The reagents are often single-use, generating waste and environmental risks that fail Western standards.
Headline

Nth cycle’s model
The OYSTER is Cleaner
Our electroextraction platform produces the same reagents with electricity and recycles them back into the system, producing 75% less waste and maximizing efficiency in a near-closed loop process.
Cleaner

Traditional model
Too Wasteful
Traditional refineries require vast quantities of chemical reagents to be delivered to the site for processing. The reagents are often single-use, generating waste and environmental risks that fail Western standards.

Nth cycle’s model
The OYSTER is Cleaner
Our electroextraction platform produces the same reagents with electricity and recycles them back into the system, producing 75% less waste and maximizing efficiency in a near-closed loop process.
Cleaner

Too Wasteful
Traditional refineries require vast quantities of chemical reagents to be delivered to the site for processing. The reagents are often single-use, generating waste and environmental risks that fail Western standards.
The OYSTER is Cleaner
Refine
Refine
Refine
Refine
Battery Materials
Battery Materials
Battery Materials
Rare Earth
Rare Earth
Rare Earth
Copper
Copper
Copper

Deployment Models
Flexibility for the new industrial era.

Deployment Models
Flexibility for the new industrial era.

Deployment Models
Flexibility for the new industrial era.

Deployment Models