Data & Methodology — Dougherty County

Full contaminant data, sample history, and sourcing for Dougherty County. For readers who want to go beyond the summary.

Contaminant Data — All Analytes

571 well testing events on record, covering 19 analytes. Data spans 1906 to 2026.

Contaminant Samples Years Detection Rate Distribution LowModHigh vs. Limit vs. GA Avg
Nitrate 297 1939–2020 96%
35% of limit ↑ 445% above
Arsenic 66 1967–2023 42%
10% of limit ↑ 68% above
Manganese 378 1967–2023 32%
6% of limit ↓ 90% below
Iron 377 1967–2023 32%
4% of limit ↓ 89% below
Chloride 485 1939–2023 100%
2% of limit ~ typical
PFOA municipal 18 2024–2025 0%
PFNA municipal 18 2024–2025 0%
PFOA municipal 18 2024–2025 0%
Lead 66 1967–2023 18%
0% of limit ↓ 79% below
PFHxS municipal 18 2024–2025 0%
PFOS municipal 18 2024–2025 11%
100% of limit ↓ 30% below
Sulfate 464 1939–2023 99%
0% of limit ↓ 79% below
Nitrite 181 1970–2015 14%
0% of limit ↓ 70% below
HFPO-DA (GenX) municipal 18 2024–2025 0%
Fluoride 408 1939–2023 25%
2% of limit ↓ 70% below
Hardness 452 1939–2023 99%
↑ 86% above
Sodium 459 1939–2023 99%
↓ 62% below
pH 544 1951–2023 100%
~ typical
PFBS municipal 18 2024–2025 11%
↑ 54% above

Distribution shows the share of samples in each concentration band relative to the EPA Maximum Contaminant Level (MCL): Low = below half the MCL, Moderate = between half and the MCL, High = above the MCL. Analytes without an MCL (e.g. sodium, pH) show — in the limit columns. State average is based on county median values across GA.

Data Coverage & Gaps

Well-sampled analytes (15+ samples)

  • Nitrate 297 samples
  • Arsenic 66 samples
  • Manganese 378 samples
  • Iron 377 samples
  • Chloride 485 samples
  • Lead 66 samples
  • Sulfate 464 samples
  • Nitrite 181 samples
  • Fluoride 408 samples
  • Hardness 452 samples
  • Sodium 459 samples
  • pH 544 samples

No private-well PFAS data for Dougherty County

We have no private well sampling data for PFAS compounds (PFOA, PFOS, PFNA, and related chemicals) in Dougherty County. PFAS has been detected in local public water systems (UCMR 5 data) — indicated by the "municipal" badge in the table above — but this does not directly indicate private well contamination. PFAS testing for private wells requires a dedicated lab panel (~$300–$500). If you are near a military base, airport, or industrial site, consider testing proactively. Learn more about PFAS →

Public vs. Private Water in Dougherty County

7 Active public water systems
105,423 Residents on public water

Public water systems in Dougherty County are regulated by the EPA and must test and report contaminant levels. Private well owners are responsible for their own testing — there is no routine monitoring of private wells by any government agency.

CDC Health Outcome Correlations

Where contaminants detected in Dougherty County have established associations with specific health outcomes, we cross-reference CDC PLACES county-level prevalence data. This is a contextual signal, not a causal claim.

Contaminant Associated Condition Dougherty County Prevalence GA Average Source Year
Arsenic Cancer prevalence 5.5% 6.3% 2020
Arsenic Kidney disease rate 3.9% 3.6% 2020

Source: CDC PLACES county-level estimates. Raw data: Download Dougherty County CDC PLACES data →

Data Sources

This report aggregates data from the following public databases:

Methodology

Raw records are downloaded from the Water Quality Portal and normalized to µg/L (ppb). Records are deduplicated by sample ID and date, and certified outliers are excluded. Analyte names are mapped to EPA canonical forms. Detection rates, distribution bands, and MCL comparisons are computed from the normalized dataset.

Distribution bands use the EPA Maximum Contaminant Level as the threshold: concentrations below 50% of the MCL are classed as Low, between 50% and 100% as Moderate, and above 100% as High. For analytes without an MCL (sodium, hardness, pH), distribution is not computed.

State comparison uses the median of county median values across all counties in GA with at least one sample for that analyte.

Last updated: 2026-08-03

Full methodology →