Protect Heat-Transfer Equipment With Physics—Not Chemistry
Scale Free Systems provides a physics-based approach to controlling mineral scale, slowing corrosion, and inhibiting biological growth in cooling towers, chillers, boilers, heat exchangers, and evaporative condensers.
We treat the equipment—not the water.
The Information Your Team Needs to Evaluate a Change
Whether you design the system, install it, maintain it, or approve the investment, SFS supports a disciplined technical and financial review.
Mechanical Engineers
Application review, system requirements, equipment compatibility, technical documentation, and coordination for the basis of design.
Mechanical Contractors
Clear installation scope, piping and electrical coordination, startup support, and practical scheduling around facility operations.
Facility Teams
Lower treatment burden, fewer scale-related cleanings, simpler operation, measurable inspection points, and ongoing support.
Owners & Finance
A site-specific view of capital cost, water and sewer savings, energy impact, avoided maintenance, and expected payback.
What Is Your Current Program Failing to Control?
Treatment should be judged by equipment condition and operating results—not only by the presence of chemicals or a monthly service report.
Mineral Scale
Deposits insulate heat-transfer surfaces, restrict flow, increase approach temperatures, and force equipment to work harder.
Corrosion
Ongoing electrochemical activity can shorten equipment life, cause leaks, contaminate loops, and increase capital risk.
Biofilm & Biological Growth
Surface-attached growth interferes with heat transfer, contributes to under-deposit corrosion, and complicates system hygiene.
High Operating Cost
Excess blowdown, chemical purchasing, testing, cleaning, feed-system repairs, and energy loss can make the status quo expensive.
Control the Conditions at the Equipment Surface
Conventional programs primarily manage bulk-water chemistry. SFS takes a different approach by continuously conditioning the equipment environment where scale adhesion, corrosion activity, and biofilm formation occur.
Evaluate the System
We review equipment, loop configuration, water conditions, operating history, existing deposits, and treatment objectives.
Apply the SFS System
The engineered components are selected and positioned for the specific application, then commissioned to establish continuous equipment conditioning.
Verify Performance
Equipment condition, inspections, operating trends, water use, maintenance activity, and site-specific performance indicators are tracked over time.
Designed Around Heat-Transfer Equipment
SFS is evaluated and sized for the actual application—not offered as a one-size-fits-all device.
What Changes When You Move Beyond Chemical Dependency?
The goal is not change for its own sake. It is cleaner equipment, more stable performance, lower operating burden, and results that your team can verify.
| Evaluation Area | Traditional Chemical-Dependent Program | Scale Free Systems Approach |
|---|---|---|
| Primary focus | Maintain target chemistry in the circulating water. | Condition the equipment environment where deposits, corrosion, and biofilm affect performance. |
| Ongoing inputs | Chemical delivery, storage, feed pumps, calibration, dosing, and frequent adjustment. | Installed system components, electrical operation, inspections, and application-appropriate monitoring. |
| Scale management | Keep minerals suspended or chemically inhibited under maintained control limits. | Reduce the tendency of minerals to adhere to equipment surfaces and support gradual release of existing deposits. |
| Maintenance burden | Inventory, handling, feed-system service, testing, and corrective dosing. | Simplified routine operation with focus on system verification and equipment condition. |
| Performance evidence | Water-analysis reports plus equipment inspections. | Equipment inspections, operating trends, water use, maintenance records, and agreed site-specific measurements. |
From Existing Treatment to Verified Operation
Every conversion should begin with site conditions and a defined plan. SFS coordinates with owners, engineers, contractors, and facility personnel from evaluation through follow-up.
System Review
Equipment type, capacity, piping, metallurgy, makeup water, cycles, treatment history, and operating concerns.
Application Plan
Proposed components, installation locations, electrical and mechanical scope, baseline conditions, and success criteria.
Installation & Startup
Coordination around facility operations, commissioning, staff orientation, and transition from the existing program.
Verification
Scheduled inspection, documentation, operating review, and adjustments appropriate to observed site performance.
Is SFS Appropriate for Your Facility?
Credible system selection begins with qualification. We review the complete application before recommending a conversion.
Facilities seeking measurable operating improvement
- Recurring scale, corrosion, biofilm, or maintenance problems
- High chemical, water, sewer, cleaning, or energy costs
- Cooling, heating, or process equipment with accessible installation points
- A facility team willing to establish a baseline and verify results
- Owners looking for lower long-term treatment burden
Site conditions determine the design
- Open-loop or closed-loop configuration
- Capacity, flow, temperature, load, and operating schedule
- Makeup-water quality, cycles of concentration, and discharge requirements
- Materials of construction and existing equipment condition
- Biological-control requirements and the facility water-management plan
SFS recommendations are application-specific. Supplemental filtration, cleaning, monitoring, or other controls may be appropriate depending on the facility, source water, equipment condition, and governing requirements.
Measure Total Cost—Not Just Treatment Price
A proper comparison includes water, sewer, energy, chemicals, testing, maintenance, cleaning, downtime, and equipment life.
Potential Water Savings
Project-dependent reductions may come from lower blowdown and improved system operation.
Potential Energy Savings
Cleaner heat-transfer surfaces can reduce the energy penalty associated with insulating deposits.
Typical Payback Target
Qualified applications may achieve rapid payback when avoided operating and maintenance costs are considered.
Ranges are typical estimates, not guarantees. Actual results depend on system design, baseline condition, operation, water quality, utility rates, maintenance practices, and verification method.
Proven in Demanding Facilities
SFS has more than 25 years of field experience and over 1,000 installations across 30 states, serving facilities such as hospitals, schools, government buildings, hospitality properties, and commercial and industrial operations.
Application Support
Site evaluation, system selection, design coordination, installation planning, and technical documentation for project stakeholders.
Startup & Training
Commissioning coordination and practical guidance so facility personnel understand operation, inspection, and escalation points.
Performance Verification
Follow-up based on agreed inspection points and operating indicators—not a “set it and forget it” promise.
Frequently Asked Questions
Does Scale Free Systems treat the water?
SFS is designed to condition the equipment environment rather than maintain performance through continuous adjustment of bulk-water chemistry. That is why we say SFS treats the equipment—not the water.
Is SFS just a magnet, coil, or signal device?
No. SFS is an engineered system selected for the application and designed around measurable equipment conditions, system components, installation requirements, and ongoing verification. A technical review is used to explain the proposed configuration for each site.
Can SFS remove existing scale?
SFS is intended to prevent mineral adhesion and can support the gradual release of existing deposits over time. The rate and extent depend on deposit composition, thickness, equipment condition, operating conditions, and water characteristics. Heavily fouled equipment may require an initial cleaning plan.
What happens to corrosion?
SFS is designed to slow and control the electrochemical conditions associated with corrosion. Existing damage cannot be reversed, so baseline inspection, metallurgy, operating conditions, and follow-up measurements remain important.
How does SFS address biological growth?
SFS is designed to inhibit biological growth and biofilm formation as part of the overall equipment-conditioning approach. Site-specific monitoring and the facility’s water-management obligations still apply. SFS should not be presented as a substitute for required Legionella risk management, testing, or regulatory compliance.
Will installation require a shutdown?
Shutdown requirements depend on the application, piping, electrical scope, and available isolation points. SFS develops the installation plan with the owner, engineer, and contractor so work can be coordinated around facility operations.
How will we know the system is working?
The verification plan can include baseline and follow-up equipment inspections, approach temperatures, water and sewer consumption, energy trends, maintenance activity, cleaning frequency, corrosion indicators, and microbiological monitoring appropriate to the site.
Can SFS work in hospitals and other critical facilities?
SFS has experience in demanding commercial and institutional environments. Every critical-facility application requires a site review, coordinated installation plan, documented responsibilities, and continued compliance with the facility’s water-management program and applicable requirements.
Find Out Whether Your System Is a Strong Candidate
Send us the basic operating information. We will review the application, identify the questions that matter, and discuss a practical path from the existing program to verified SFS operation.