How Lysor protects your systems
A mixture of food-grade inert gases that dissolves limescale, reduces dissolved oxygen, and combats biofilm.
How Lysor protects your systems
A mixture of food-grade inert gases that dissolves limescale, reduces dissolved oxygen, and combats biofilm.
Gas mixtures: composition, safety, advantages
Lysor uses a mixture of food-grade inert gases safe for human consumption and compatible with drinking water. It does not introduce aggressive chemicals, does not alter pH, taste, or mineral composition, and does not require plant shutdowns.
The mixture dissolves directly into the water flow, remaining stable and active over time. This allows critical issues in plants to be addressed without altering the water and without adding mechanical components or regeneration cycles.
It replaces various more invasive treatments with a single solution, offering continuity, safety, and reduced maintenance.
The action in water on limescale, oxygen, and biofilm
Once dissolved in water, the mixture generates a double effect:
1. It solubilizes limescale, dissolving existing deposits and keeping new ones in solution, with a progressive improvement in flow rate and thermal efficiency.
2. It significantly reduces free oxygen through controlled stripping. Without available oxygen, biofilm cannot form or protect microorganisms such as Legionella.
The result is a cleaner, more stable, and microbiologically safer system, with an effect that lasts over time without invasive interventions.
What changes with Lysor
A comparison of methods, impacts, and implications versus the most common traditional purification systems.
| Lysor | Ion Exchange Softener | Chemical Dosing | Electric Field | Reverse Osmosis |
|---|
| Lysor | Ion Exchange Softener | Chemical Dosing | Electric Field | Reverse Osmosis | |
|---|---|---|---|---|---|
| Limescale Treatment | Total (including existing deposits) |
Only dissolved limescale |
Partial | Variable | Partial |
| System Descaling | Yes | No | No | No | No |
| Bacteriological Risk Prevention | Yes | No specific action |
Limited |
Variable |
Indirect |
| Water Efficiency | No additional consumption |
~30% higher consumption on average |
Variable consumption |
Yes | High consumption |
| Environmental Compatibility | High |
Uses chemicals |
Affects water |
Operational issues |
Good (context-dependent) |
| Water Alteration | None |
Possible variations |
Possible variations |
Variable |
Possible depletion |
Limescale Treatment
System Descaling
Bacteriological Risk Prevention
Water Efficiency
Environmental Compatibility
Water Alteration
Results
Volos (GR)
Lysor restored the efficiency of a well without the use of aggressive chemicals.
In just 20 days: +190 liters/second flow rate and +4 meters of effective depth.
No service interruptions, no changes to water quality.
Prima del trattamento
Volos (GR)
Lysor restored the efficiency of a well without the use of aggressive chemicals.
In just 20 days: +190 liters/second flow rate and +4 meters of effective depth.
No service interruptions, no changes to water quality.
Dopo il trattamento
Prima del trattamento
Ferry – Seawater Heat Exchanger
Lysor removed scaling from the seawater heat exchanger, improving its efficiency and reducing overall consumption.
In just 4 hours: –8% fuel consumption, –CO₂ emissions, –maintenance. The vessel remained fully operational throughout the process.
Dopo il trattamento
Prima del trattamento
Irrigation System
Lysor restores the effective diameter of pipes, improving flow rate and reducing pressure loss.
After treatment: scaling eliminated, flow optimized, no parts removed or replaced.
Dopo il trattamento
Prima del trattamento
Heating System
Lysor progressively reduces scaling, improving system efficiency and extending the lifespan of heating elements.
After treatment: visible limescale reduction, no invasive procedures or system modifications.
Dopo il trattamento
Where can Lysor be used?
Lysor is designed to adapt to a wide range of contexts, from healthcare environments to industrial networks, residential facilities to water infrastructure.
Learn how the same results translate into different benefits for each sector.
Frequent asked questions
What kind of maintenance does Lysor require?
Minimal: no mechanical or electronic parts. The only component that needs to be replaced is the cylinder.
What gases make up the mixture?
Food-grade inert gases, completely safe for use in drinking water.
Is Lysor safe for drinking water and plumbing systems?
Yes. The mixture consists of inert gases and does not introduce any unwanted substances into the water.
Is it compatible with existing or outdated systems?
Yes. Lysor works progressively and in a controlled manner even on old or partially clogged pipes.
Is it compatible with other treatment technologies?
Yes. It can be used alongside water softeners, reverse osmosis systems, polyphosphates, and sanitizers, improving their effectiveness.
Academic validation and real results
The mixture, composed of food-grade inert gases, leaves no residue, does not affect the water, and requires no maintenance.
Request the complete documentation
Proven effectiveness against limescale and biofilm
Over 58% reduction in scaling
Tests conducted on real systems have shown a significant reduction in limescale and the elimination of biofilm, resulting in a decreased bacterial load.
Compatibility with disinfectants
Also effective with hypochlorite and monochloramine
The blend maintained its effectiveness even in the presence of the main disinfectants, in some cases enhancing their sanitizing action.
Legionella Prevention
Reduction of microbiological parameters in healthcare settings
A study conducted on a hospital system showed a significant decrease in microbiological load and Legionella pneumophila, thanks to the blend’s action on biofilm and limescale.
Smart consumption
Automated, always-calibrated dosing
The system has demonstrated self-regulation capabilities based on flow and pressure, ensuring consistent efficiency and full parameter traceability.
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Zero impact on water, maximum efficiency — ask us how.