- Rigorous "Worst-Case" Testing: We intentionally pushed our chemistry to the limit using zero CYA, high pH, and heavy liquid chlorine to simulate the harshest outdoor conditions.
Setting the Record Straight: A Scientific Look at Bromate in Outdoor Pools
For the professional pool technician, sodium bromide has long been a topic of caution due to EPA labeling regarding its use in outdoor environments. At United Chemical, we lead with Education and Innovation. Data, not speculation, should drive your business decisions and give you the confidence to provide the best service possible.
We are proud to share the findings of our comprehensive study on bromate formation. While this study has not yet been formally approved or accepted by the EPA, it was conducted in accordance with EPA best practices and used Eurofins laboratories for gold-standard analytical precision.
Engineered for Rigor: The “Worst-Case” Environment
To truly understand the limits of bromate formation, we didn’t test under “perfect” conditions. Instead, we intentionally created a “worst-case scenario” to see how the chemistry reacted under pressure.
- Zero Cyanuric Acid: The test pools contained no CYA. In a typical pool, CYA moderates chlorine’s activity; without it, the environment is far more aggressive.
- Sodium Hypochlorite & High pH: We utilized sodium hypochlorite and allowed the pH to drift to 8.0. Because high pH levels and the use of liquid chlorine are known to accelerate the conversion of bromide to bromate, these conditions represented the most challenging environment possible. In a standard residential pool with balanced pH and CYA present, bromate formation would likely be further suppressed.
Proprietary Protection: The United Chemical Advantage
The study also confirmed a vital benefit of our specific chemistry: our formulas are designed to protect the water. Our research indicated that specific ingredients in United Chemical products actively inhibit the formation of bromate. These components act as a chemical shield, particularly during the first 60 minutes after dosing when bromate formation typically peaks.
The Numbers: EPA Linear Risk Assessment Model
When it comes to safety, we believe in total transparency and “Honesty,” one of our core values. We applied the study’s data to the EPA’s SWIMODEL 3.0 to calculate the excess lifetime cancer risk.
We used the highest estimated bromate level resulting from product use. The calculated risk was 4.58 × 10⁻⁵. This is a significant finding: it falls safely within the EPA’s generally accepted “safe” range (10⁻⁶ to 10⁻⁴), proving that the perceived risks of sodium bromide are considerably lower than the industry has long feared.
Beyond the Linear Model: The Biological Reality of Bromate Safety
While traditional regulatory models often assume any exposure carries risk, modern toxicology reveals a biological “Safety Threshold” that makes sodium bromide exceptionally safe for pool use. Science shows that the human body possesses three natural lines of defense that neutralize trace amounts of bromate:
- Antioxidant Defense: Natural cellular protectors (like Glutathione) “mop up” trace bromate before it can cause oxidative stress.
- Sai et al. (1994) – A possible role for oxidative stress in potassium bromate (KBrO3) carcinogenesis. (Carcinogenesis, 15: 8-12)
- Umemura et al. (1995) – Role of oxidative stress in potassium bromate-induced carcinogenesis. (Cancer Letters, 94: 213-218)
- Ballmaier and Epe (2006) – Oxidative DNA damage induced by potassium bromate under cell-free conditions and in mammalian cells. (Mutagenesis, 21: 29-33)
- Biological Limits: Research identifies a “no-effect” zone (<15 ppm) that is significantly higher than levels found in treated pools, allowing the body to repair itself naturally.
- The Stomach Shield: In the event of accidental ingestion, human gastric acid rapidly reduces up to 99% of bromate back into harmless bromide.
These built-in physiological shields mean the actual risk is exponentially lower than once feared, providing both pros and families with total peace of mind.
We remain committed to providing you with the most advanced chemistry and the education required to lead the industry. We will continue to share these findings as we work toward a more informed and science-based regulatory future.













