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Garfield County Radon Levels

4.4

pCi/L average

76

tests analyzed

1.6×

WHO threshold (2.7)

High Risk

Risk classification

What 4.4 pCi/L Means for Garfield County Homes

High Risk

Above the EPA action level of 4.0 pCi/L. The EPA recommends mitigation at this level. Radon is the second-leading cause of lung cancer in the US, and levels this high require attention.

Garfield County's average of 4.4 pCi/L is 1.6× the WHO mitigation threshold of 2.7 pCi/L and 1.1× the EPA action level of 4.0 pCi/L. Utah's statewide average is 4.4 pCi/L, and the national average is 1.3 pCi/L.

County averages represent the arithmetic mean of all pre-mitigation tests in the area — they don't mean every home will measure exactly 4.4 pCi/L. Radon levels vary significantly based on foundation type, soil composition, construction materials, and ventilation. Two adjacent homes can have radon levels that differ by a factor of 5 or more. The only way to know your home's level is to test.

There is no safe level of radon exposure. Long-term exposure to radon is the second-leading cause of lung cancer in the US, responsible for approximately 21,000 deaths annually. The good news: mitigation systems are effective, reliable, and typically reduce radon levels by 80–99%.

Radon Levels by City in Garfield County

1 cities with 20+ tests. Sorted highest to lowest. Click any city for detailed data and year-over-year trends.

CityAvg pCi/LRisk
Panguitch6.4High Risk

Only cities with 20+ tests shown. Smaller sample sizes may not reliably represent a city's true average. All data: Alpha Energy Laboratories, 2015–August 2025.

Why Does Garfield County Have Elevated Radon Levels?

Garfield County's average of 4.4 pCi/L reflects the geological composition of this area of Utah. The Wasatch Front's fault systems, basin geology, and uranium-bearing rock formations contribute to radon levels across the state. Soil type, foundation construction, and home ventilation all affect how much radon enters a specific home — which is why testing your individual home matters regardless of county or city averages.

Regardless of county-level geology, the only authoritative measurement for any home is a test conducted inside that specific building. Foundation type, crawl space vs. slab construction, and ventilation all dramatically affect indoor levels — which is why testing every home individually is the only reliable approach.

Garfield County Radon — Frequently Asked Questions

What is the average radon level in Garfield County, Utah?

Garfield County has an average indoor radon level of 4.4 pCi/L based on 76 pre-mitigation tests analyzed by Alpha Energy Laboratories from 2015 through August 2025. This is 1.6× the WHO's recommended mitigation threshold of 2.7 pCi/L and 1× Utah's statewide average of 4.4 pCi/L.

Is radon a serious concern in Garfield County?

Yes. Garfield County's average of 4.4 pCi/L is classified as high risk. Above the EPA action level of 4.0 pCi/L. The EPA recommends mitigation at this level. Radon is the second-leading cause of lung cancer in the US, and levels this high require attention. Radon is the second-leading cause of lung cancer in the United States after smoking, responsible for approximately 21,000 deaths annually.

Which cities in Garfield County have the highest radon levels?

Based on test data, the highest-averaging cities in Garfield County are: Panguitch (6.4 pCi/L, 23 tests). Remember that city averages can mask significant variation between individual homes.

How do I get a radon test in Garfield County, Utah?

Utah Radon provides free certified radon test kits to Utah homeowners, including those in Garfield County. The kit is mailed to your home, you place it according to instructions, mail it back to Alpha Energy Laboratories, and receive your results within 2–3 weeks. There is no cost for the kit, shipping, or lab analysis. Request yours at utahradon.org/free-test-kit.

Protect your Garfield County home

With a county average of 4.4 pCi/L — 1.6× the WHO mitigation threshold — Garfield County homes should be tested. Your free kit is waiting.

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