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Breakthru Technology
Environmental Systems • Atmospheric Conditioning • Made in Colombia
Industrial Applications • Odor Control • Commercial & Industrial Scale • Beyond Organic
Be part of the revolution — invest with us.
Manufactured in Colombia

Industrial & commercial
atmospheric conditioning
systems

Advanced atmospheric conditioning technology engineered to attract and eliminate molds, fungus, and bacteria, reduce odours, and degrade a wide range of compounds and corrosive gases in commercial and industrial settings.

Our units don’t oxidize — they reduce. Manufactured by our new Colombian company, built for global distribution.

🇨🇴
Made in Colombia
Our new Colombian company manufactures every unit with full global distribution capability.
Reduction, not oxidation
Our units reduce contaminants at the molecular level — not oxidize them into reactive byproducts.
🏭
Industrial scale
Designed for wastewater, oil & gas, restoration, and large-scale industrial environments.
🌐
Global distribution
Available worldwide through the broader Breakthru commercial platform distribution network.
The Difference

Reduction vs. oxidation: why it matters

Most atmospheric treatment systems break contaminants apart through oxidation. Our systems take a fundamentally different approach — reducing contaminants at the molecular level for cleaner, more sustainable results.

Our approach
Atmospheric conditioning through reduction
  • Reduces contaminants at the molecular level
  • Targets H₂S, BTEX gases, ammonia, NOx, mercaptans, methane
  • Cleaner byproducts, more sustainable process
  • No secondary oxidative treatment required
  • Manufactured in Colombia by our new Colombian company
  • Scalable: commercial and industrial configurations
  • Attracts and eliminates molds, fungus, and bacteria
Conventional systems
Oxidation-based air treatment
  • Oxidizes contaminants, creating reactive byproducts
  • Produces secondary waste streams requiring further treatment
  • Less sustainable treatment process
  • May require additional downstream processing
  • Manufacturing often offshore from point of use
  • Typically single-application units
The Science

How our atmospheric conditioning technology works

Our systems use a reduction process — a fundamentally different approach from the oxidation methods used by conventional air treatment systems.

1

Atmospheric intake

Contaminated air — carrying hydrogen sulfide, BTEX gases, ammonia, petrochemicals, NOx, methane, or mercaptans — enters the conditioning system.

2

Molecular reduction

Our technology conditions the atmosphere at the molecular level, reducing complex contaminants into safer, more stable forms rather than oxidizing them into reactive byproducts.

3

Clean output

Treated air exits with significantly reduced contaminant load — cleaner results, a more sustainable process, applicable across commercial and industrial environments.

This reduction-based approach targets a broad spectrum of atmospheric contaminants: hydrogen sulfide (H₂S), BTEX gases, ammonia, petrochemicals, nitrogen oxides (NOx), methane, mercaptans — and is engineered to attract and eliminate molds, fungus, and bacteria.

Manufactured in Colombia by our new Colombian company, each unit is engineered for scalable deployment. Full product specifications will be published at launch.

Patented Technology

Multi-frequency treatment technology

From the manufacturer’s technical data sheet for the Atmosphere Modifier IV unit — the core technology behind our atmospheric conditioning line.

How the unit treats the air

The unit emits patented multi-frequency radiation calibrated to break down the atmospheric gases passing through its ducts into highly reactive, short-lived compounds. These compounds act on complex contaminant molecules — such as hydrogen sulfide (H₂S), BTEX gases, NOx, methane, and mercaptans — triggering an instantaneous chain reaction that leaves behind inert byproducts: CO₂, water vapor, molecular oxygen, and elemental sulfur.

The same process sanitizes air and surfaces by reacting with the lipids, proteins, and carbohydrates that make up viruses, bacteria, and other pathogens, rupturing their membranes. Because the mechanism isn’t biological, pathogens cannot develop resistance or immunity to it.

Safety profile

The reactive compound the unit generates reacts with organic and inorganic chemicals roughly a million times faster than ozone, bleach, or other common sanitizing agents. Its reaction time is so short that it is fully consumed within seconds — it never accumulates in the treated space.

Independently Studied

Proven effectiveness against pathogens and insects

Independent studies measured the unit’s effect on aerosolized Aspergillus niger — one of the most resistant airborne microorganisms — as a benchmark for broader pathogen elimination.

99%+
Elimination rate for airborne & surface microorganisms
99%+
Mortality for aerosolized microorganisms at 2 hours
1,000,000×
Faster reaction time than ozone or bleach
ConditionExposureAvg. % germination at 25 hrs
No emission (control, group 1)0 min45.3%
No emission (control, group 2)0 min53.6%
Emission1 min0.51%
Emission3 min0.00%
Emission7.5 min0.00%
Emission15 min0.00%
Emission30 min0.00%

Observed effectiveness against insects

Past experiments run for unrelated objectives — without controlling for insect-related variables — nonetheless observed a high insect mortality rate. It is theorized that the reactive compounds the unit generates attack insects’ external tissues through direct oxidation on contact, causing damage to the protective membrane (oxidized waxes and lipids, increasing dehydration), damage to respiratory tissues (reduced oxygen uptake), damage to the cell membrane (making cells permeable and dysfunctional), and disruption of metabolic processes.

To date, no oxidative damage to plant material has been detected. In sea-freight simulations, cut hydrangeas were exposed continuously for more than 30 days with no adverse effect on storage life or vase life, in either the flower or the foliage.

Operating conditions & precautions

Best performance: relative humidity 50–70% and a clean environment (an ambient temperature range of 18–25°C is still being validated).

Electronics: keep sensitive electronic equipment such as computers away from the treated atmosphere — generated electrons may disrupt their operation.

Breathing sensation: because the reactive atmosphere also breaks down CO₂, long exposures can produce a sensation of breathlessness (CO₂ drives the involuntary urge to breathe). A conscious effort to breathe may become necessary — this is not dangerous.

Fields Of Action

What it eliminates

One technology addressing odor and pathogen sources across residential, industrial, medical, and chemical environments.

Residential

Cigarette smoke, cooking & burnt food, pets, sweat, cosmetics & perfumes, bathrooms, decomposing food, mold & mildew.

Industrial & Commercial

Sewer & wastewater odors, decomposing waste, combustion odors, lubricating oils & greases, paints, adhesives, plastics, poultry & animal odors.

Medical

Body & decomposition odors, hospital & medicinal odors, anesthetics, airborne bacteria & viruses.

Chemical & Pathogen

H₂S, BTEX gases, NOx, methane, mercaptans, solvent & fuel fumes, plus pathogens including influenza, salmonella, E. coli, and tuberculosis bacillus.

Where It’s Used

Applications

Deployed across environments where odor control and pathogen reduction both matter.

✈️
Airports & Aircraft
🏥
Hospitals
🎓
Educational Institutions
🏢
Offices
🏬
Enclosed Commercial Areas
🏠
Homes
🏨
Hotels
🌾
Agriculture
⛏️
Mining
Deployment

Installation configurations

Two standard configurations, depending on whether treated air is recirculated into the space or vented to atmosphere.

Recirculation ventilation

Space with contaminated air
Unit
Purified air returned to room

Air from the buffer space of contaminated air is continuously drawn through the unit and returned to the room, purified of pathogens and odors.

Extraction ventilation

Foul air / buffer space
Unit
Vent to atmosphere (min. 10 ft)

Used for enclosed contaminated volumes such as tanks and wet wells — air is drawn through the unit and vented safely to atmosphere at a minimum height of 10 ft.

Product Line

Coming soon from Colombia

Our Colombian company is finalizing our commercial and industrial atmospheric conditioning product line. Specifications, configurations, and pricing will be published here at launch.

Commercial

Commercial Units

Built on our Atmosphere Modifier IV technology — engineered for restoration companies, occupied-environment applications, and commercial odor control at scale, with 99%+ pathogen elimination. Full specifications coming soon.

Coming Soon
Industrial

Industrial Units

Built on our Atmosphere Modifier IV technology — sized for wastewater treatment, oil & gas, mining, and large-scale industrial odor control. Technical specs coming soon.

Coming Soon
Register Interest

Be the First to Know

Contact us to register your interest and receive specifications, pricing, and availability updates as our launch date approaches.

Part of the Breakthru Family

Our commercial product family

Our atmospheric conditioning systems expand our offering into environmental control technologies — manufactured in Colombia with global distribution planned.

Agriculture Systems

Our flagship Breakthru agricultural products improving yields and soil health worldwide through beyond-organic methods.

Super Nutrition

Human-grade nutritional products engineered for superior bioavailability, applying our core Breakthru technology to personal health.

Atmospheric Conditioning

Our new Colombian company’s industrial and commercial atmospheric conditioning systems — reduction-based, globally distributed.

Be first when our product line launches

Register your interest in our atmospheric conditioning systems and we’ll reach out as our product line becomes available.