FLOW-THROUGH REACTOR PLATFORM / AGRICULTURAL SYSTEMS

Decentralized Flow-Through Plasma for On-Demand Agrochemical Production

Produce useful agricultural chemistry directly in flowing water — H₂O₂ for irrigation and nitrogen for fertigation.

FLOW-THROUGH REACTOR PLATFORM / AGRICULTURAL SYSTEMS

Decentralized Flow-Through Plasma for On-Demand Agrochemical Production

Produce useful agricultural chemistry directly in flowing water — H₂O₂ for irrigation and nitrogen for fertigation.

THE TECHNOLOGY

THE TECHNOLOGY

Produce chemistry where the water already flows.

Produce chemistry where the water already flows.

Plasmius Agrotech uses the patented Plasmius flow-through plasma reactor platform to generate useful chemistry directly within continuously moving water.

Agricultural chemistry still travels farther than it needs to.

Agricultural chemistry still travels farther than it needs to.

Conventional inputs are manufactured centrally, transported, stored, handled, and dosed before they reach farm water systems. The distance is built into the operating model.

Conventional inputs are manufactured centrally, transported, stored, handled, and dosed before they reach farm water systems. The distance is built into the operating model.

CONVENTIONAL MODEL / TODAY

CONVENTIONAL MODEL / TODAY

MORE STEPS. MORE DISTANCE. HIGHER IMPACT.

MORE STEPS. MORE DISTANCE. HIGHER IMPACT.

Centralized Production

Centralized Production

Transport

Transport

Storage

Storage

Handling

Handling

Dosing

Dosing

Farm Water Systems

Farm Water Systems

Air / Water / Electricity

Air / Water / Electricity

PLASMIUS AGROTECH

PLASMIUS AGROTECH

FLOW-THROUGH LOCAL PRODUCTION

FLOW-THROUGH LOCAL PRODUCTION

Irrigation / Fertigation

Irrigation / Fertigation

PLASMIUS AGROTECH / ON-DEMAND MODEL

PLASMIUS AGROTECH / ON-DEMAND MODEL

FEWER STEPS. CLOSER TO THE CROP.

FEWER STEPS. CLOSER TO THE CROP.

PRODUCE WHERE IT’S NEEDED

PRODUCE WHERE IT’S NEEDED

Two product pathways. One deployment model.

Two product pathways. One deployment model.

H₂O₂

H₂O₂

FLOW-THROUGH + ON-DEMAND

FLOW-THROUGH + ON-DEMAND

Generate peroxide chemistry directly in irrigation water when it is needed.

Nitrogen

Nitrogen

FLOW-THROUGH + ON-DEMAND

FLOW-THROUGH + ON-DEMAND

Produce plant-available nitrogen from atmospheric air, water, and electricity at the point of fertigation.

BUILT TO SCALE

BUILT TO SCALE

Built for agricultural flow.

Built for agricultural flow.

50 L/min

50 L/min

Single-unit platform demonstrated at 50 L/min. Higher useful throughput per unit can reduce equipment count, plumbing, controls, installation complexity, and service burden.

HIGH SINGLE-UNIT THROUGHPUT

HIGH SINGLE-UNIT THROUGHPUT

TOTAL-SYSTEM EFFICIENCY

TOTAL-SYSTEM EFFICIENCY

SIMPLER DEPLOYMENT

SIMPLER DEPLOYMENT

ON-DEMAND OPERATION

ON-DEMAND OPERATION

One reactor platform. Multiple agricultural chemistries.

One reactor platform. Multiple agricultural chemistries.

H₂O₂ and nitrogen are separate product pathways built on a common platform architecture and deployment model. The shared thesis is simple: put useful chemistry closer to the water, the farm, and the decision point.

BUILT FOR THE PEOPLE MOVING AGRICULTURE FORWARD

BUILT FOR THE PEOPLE MOVING AGRICULTURE FORWARD

Technology is only useful when it reaches the field.

Technology is only useful when it reaches the field.

Growers

Growers

Better control over when and where chemistry is produced, with lower handling and operational burden as the target.

Irrigation & Service Partners

Irrigation & Service Partners

Integrate production equipment directly into agricultural water infrastructure.

Fertilizer & Input Partners

Fertilizer & Input Partners

Build new decentralized input products and service models around local chemical production.

MISSION

MISSION

From delivered chemicals to on-demand production.

From delivered chemicals to on-demand production.

Modern nitrogen fertilizer depends heavily on centralized fossil-based production, concentrated global supply, international transport, and commodity-energy markets. The next frontier is producing chemistry only when it is needed, directly in the water already moving through the farm.

H₂O₂ / FLOW-THROUGH + ON DEMAND

H₂O₂ / FLOW-THROUGH + ON DEMAND

NITROGEN / FLOW-THROUGH + ON DEMAND

NITROGEN / FLOW-THROUGH + ON DEMAND

RESEARCH FRONTIER

RESEARCH FRONTIER

Nitrogen as Energy Storage

Nitrogen as Energy Storage

A separate future direction: surplus renewable electricity → nitrogen fertilizer → storage → later agricultural use. This is not the primary commercial thesis; the near-term focus remains flow-through, on-demand production.

A separate future direction: surplus renewable electricity → nitrogen fertilizer → storage → later agricultural use. This is not the primary commercial thesis; the near-term focus remains flow-through, on-demand production.

SURPLUS RENEWABLE POWER

SURPLUS RENEWABLE POWER

Excess clean electricity from wind and solar.

Excess clean electricity from wind and solar.

NITROGEN FERTILIZER

NITROGEN FERTILIZER

Convert electricity and air into nitrogen-based fertilizer.

Convert electricity and air into nitrogen-based fertilizer.

STORAGE

STORAGE

Store for future use.

Store for future use.

LATER AGRICULTURAL USE

LATER AGRICULTURAL USE

Apply when needed to support food production.

Apply when needed to support food production.

LET’S TALK

LET’S TALK

Build the next generation of agricultural chemistry with us.

Build the next generation of agricultural chemistry with us.

Let’s Talk →

Let’s Talk →

Decentralized flow-through plasma for on-demand agrochemical production.