Technology brief
What this platform addresses
is a system that replaces fertilizers as a product.
Fertilizers
is a system that replaces fertilizers as a product.
Technology brief
is a system that replaces fertilizers as a product.
The challenge
CRONA is designed for agricultural use, primarily in crop production systems where fertilizers are required for yield optimization.
Primary use cases:
Typical scenarios:
Industries and users:
Scale:
ARBOK solution
CRONA is a system that replaces fertilizers as a product.
It does not produce them in factories, does not transport them, and does not apply them to the field.
It does something different — it creates plant nutrition directly inside the soil during field operation.
In the conventional model, a farmer buys fertilizers made from gas, shipped across the world, and spread over the field. With CRONA, this entire chain simply does not exist.
Instead, the system uses soil, water, and air — and in a single tractor pass converts bound elements into an active form, the same form that plants can absorb.
Nitrogen, phosphorus, potassium are already in the soil — but they are locked.
CRONA unlocks them.
Nitrogen is in the air — CRONA binds it.
Water is no longer just water — it becomes a carrier of nutrients.
And this does not happen over a season.
It happens instantly.
At the moment the tractor passes, processes that normally take years are triggered in microseconds.
As a result, CRONA does not improve fertilization. It removes the need for it.
CRONA operates during a standard soil preparation pass using a tractor-mounted system.
The soil is first mechanically loosened to create a uniform and conductive structure. Water is then introduced into the loosened layer, forming a conductive medium. A short, high-energy impulse is delivered into the wetted soil through a contact system.
This creates an electrical discharge within the soil, similar to a localized lightning strike. As a result:
Processes that normally take years occur almost instantly.
Additionally, atmospheric nitrogen is fixed during operation, introducing new nutrients without external inputs.
The process also modifies soil structure and activates biological processes, resulting in long-term fertility improvement.
Market and application
The global fertilizer market exceeds $200+ billion annually, with nitrogen fertilizers representing the largest segment.
CRONA targets:
Potential adoption spans global agriculture, particularly in regions affected by fertilizer shortages and price volatility.
Example:
Payback period:
Use cases
CRONA is designed for agricultural use, primarily in crop production systems where fertilizers are required for yield optimization.
Primary use cases:
Typical scenarios:
Industries and users:
Scale:
Deployment requires minimal infrastructure changes.
Implementation steps:
Operating conditions:
Operation:
CRONA integrates with existing agricultural systems:
Potential integration with:
CRONA is a system that replaces fertilizers as a product.
It does not produce them in factories, does not transport them, and does not apply them to the field.
It does something different — it creates plant nutrition directly inside the soil during field operation.
In the conventional model, a farmer buys fertilizers made from gas, shipped across the world, and spread over the field. With CRONA, this entire chain simply does not exist.
Instead, the system uses soil, water, and air — and in a single tractor pass converts bound elements into an active form, the same form that plants can absorb.
Nitrogen, phosphorus, potassium are already in the soil — but they are locked.
CRONA unlocks them.
Nitrogen is in the air — CRONA binds it.
Water is no longer just water — it becomes a carrier of nutrients.
And this does not happen over a season.
It happens instantly.
At the moment the tractor passes, processes that normally take years are triggered in microseconds.
As a result, CRONA does not improve fertilization. It removes the need for it.
CRONA is designed for agricultural use, primarily in crop production systems where fertilizers are required for yield optimization.
Primary use cases:
Typical scenarios:
Industries and users:
Scale:
CRONA operates during a standard soil preparation pass using a tractor-mounted system.
The soil is first mechanically loosened to create a uniform and conductive structure. Water is then introduced into the loosened layer, forming a conductive medium. A short, high-energy impulse is delivered into the wetted soil through a contact system.
This creates an electrical discharge within the soil, similar to a localized lightning strike. As a result:
Processes that normally take years occur almost instantly.
Additionally, atmospheric nitrogen is fixed during operation, introducing new nutrients without external inputs.
The process also modifies soil structure and activates biological processes, resulting in long-term fertility improvement.
|Parameter|Conventional Agriculture|CRONA|
|---|---|---|
|Yield increase|30–50% (with fertilizers)|Up to 100–300%|
|Nitrogen availability|External input required|Generated in-field|
|Energy dependency|High (gas-based production)|Low (tractor-based)|
|Water use|Irrigation only|Irrigation + nutrition|
|Operating cost|High (fertilizers + logistics)|Reduced|
Typical values:
The system consists of a tractor-mounted modular unit:
All components operate as a single integrated system during field movement.
The architecture is modular and can be adapted to different tractor platforms and working widths.
CRONA integrates with existing agricultural systems:
Potential integration with:
Deployment requires minimal infrastructure changes.
Implementation steps:
Operating conditions:
Operation:
Current level: TRL 4–6 (prototype / pilot stage)
Completed:
Next steps:
The global fertilizer market exceeds $200+ billion annually, with nitrogen fertilizers representing the largest segment.
CRONA targets:
Potential adoption spans global agriculture, particularly in regions affected by fertilizer shortages and price volatility.
Example:
Payback period:
Part of ARBOK's broader family of electro-physical soil and resource activation technologies, sharing its core principle of using localized electrical discharge to unlock bound nutrients without chemical inputs.
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