Restored performance for aqueducts, wells, and large water systems

Lysor removes limescale and biofilm from pipes, wells, supply networks, cooling towers, and heat exchangers, improving flow rate, water quality, and energy efficiency without shutting down the systems.

Moving water is at the heart of water infrastructure

Aqueducts, wells, and large pipes must guarantee continuity, quality, and stable flow rates.

Limescale, biofilm, and sediment reduce flow, increase pressure losses, and compromise the performance of treatment plants and thermal systems.

Lysor works directly inside the water, dissolving deposits and reducing biofilm along the entire hydraulic path, restoring efficiency and stability in extensive networks and complex industrial systems. All without shutting down the plant and without the use of aggressive substances or invasive treatments.

Restored flow rate in wells, pipes, and supply networks

The progressive reduction of flow is one of the most significant problems in water infrastructure.

Sediment, limescale, and biofilm restrict the useful section of pipes and decrease the efficiency of wells. Lysor dissolves deposits throughout the hydraulic system, even in deep or inaccessible sections.

In documented applications, the flow rate of clogged wells has increased from 130 l/s to 320 l/s, with depth recovery and restoration of nominal values.

More efficient heat exchangers and cooling towers, reduced consumption

Recovered thermal efficiency

Limescale and biofilm reduce heat exchange and increase consumption.

Lysor restores heat exchangers and cooling towers to optimal conditions, with efficiency gains of up to 43% in just a few days.

Cleaner networks, lower pressure drops

The solubilization of scale improves circulation and reduces hydraulic resistance, which is essential for large or branched systems.

Optimized energy

Just one millimeter of limescale can reduce the performance of heating systems by 15-20%. By eliminating it, Lysor reduces the energy consumption required for pumping, cooling, and heating.

More stable water quality and biofilm control

Sedimentary biofilm compromises the microbiological quality of water and encourages the formation of bacteria and amoeba such as Legionella.

Lysor progressively reduces it throughout the entire network, improving the quality and biological stability of the water being distributed.

 

By binding dissolved free oxygen, the mixture limits corrosion processes and helps preserve pipes and hydraulic structures, even in older or high-hardness systems.

Where Lysor is used

Contexts in which the effects of the mixture are concentrated:

01

Aqueducts and water distribution systems

02

Wells for drinking and industrial water

03

Supply networks and large pipelines

04

Cooling towers

05

Heat exchangers

06

Other water treatment systems

What changes with Lysor in aqueducts and large systems

Restored flow rate in wells and pipes

Lower pressure drops and greater flow stability

More efficient exchangers and towers

Reduced energy consumption

Better biological water quality

No system downtime and no aggressive chemicals

Academic validation and real results

Lysor has been tested and validated by universities, independent laboratories, and healthcare facilities. Studies show significant reductions in biofilm, scale, and microbiological parameters

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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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