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Water Quality Technical Report — AURORA, IL

PWSID
IL0894070
Population
183,000
Source
Surface Water
Data Period
Last Updated

A note from the author — I'm Jacob Thorwolf. WaterAdvantage.org is a personal project of mine, separate from my day job as an Account Executive at Bottleless Nation, a commercial water filtration company. If you request a consultation through any form on this site, it comes to me or a colleague at BN. More about this project →

Summary

AURORA serves approximately 183,000 people in AURORA, Illinois. Based on contaminant analyses from DNR, EPA ECHO, EPA UCMR5, 1 contaminant has been measured above federal EPA standards (MCL) and 2 exceed health-based guidelines. The most significant finding is Combined Radium (226+228) at 12.2 pCi/L, which is 2.4x the EPA legal limit. Data is drawn from source-level compliance monitoring and covers 2018 through 2026. Results reflect conditions at the point of collection (wells, treatment plants), not necessarily at the tap.

Key Findings

Understanding the two thresholds

EPA Legal Limit (MCL)

The highest level of a contaminant allowed by federal law. Utilities that exceed this threshold face enforcement action. Limits balance health risk against the cost of treatment, so they are not always set at levels considered safe by independent researchers.

Health Guideline

The level below which independent researchers (CalEPA, WHO, EWG) believe there is no known health risk. Guidelines are not legally enforceable but are typically stricter than legal limits — often by 10x or more for contaminants like arsenic and lead.

A reading can be below the EPA limit (legally compliant) while still exceeding health guidelines (above levels considered safe by independent researchers).

Exceeds Health Guidelines

These contaminants were detected below the EPA legal limit but above a health-based guideline from a public health agency (CalEPA OEHHA, WHO, or similar). Health guidelines are non-enforceable research-backed targets that are often stricter than the legal limit.

Detected contaminants
ContaminantResultUnitHealth GuidelineEPA Legal LimitSourceSample Date
Lead (90th Percentile)
Developmental delays in children, kidney damage, high blood pressure. There is no safe level of lead exposure.
24ug/L0.215
Pending rule: LCRI 2024Action level drops from 15 → 10 µg/L effective 2027; full lead service line replacement within 10 years (EPA Lead & Copper Rule Improvements, October 2024)
EPA ECHO

PFAS

Per- and polyfluoroalkyl substances (PFAS) are a group of manufactured chemicals that persist in the environment and accumulate in the human body. The EPA set enforceable limits for six PFAS compounds in April 2024, with a compliance deadline of 2029. PFAS compounds measured above EPA standards appear in the Above Federal Standard section above.

Detected contaminants
ContaminantResultUnitHealth GuidelineEPA Legal LimitSourceSample Date
Lithium18.6ug/LEPA UCMR5(19 months ago)
PFBA (Perfluorobutanoic Acid)
Shorter-chain PFAS with faster elimination. Thyroid effects in animal studies.
5.5ng/LNot publishedNot regulatedEPA UCMR5(22 months ago)
PFBS (Perfluorobutane Sulfonate)
Thyroid effects, reproductive and developmental effects, kidney effects.
3.7ng/LNot publishedRegulated via Hazard Index (HBWC 2,000 ng/L)EPA UCMR5(22 months ago)
Pfhxa3.5ng/LEPA UCMR5(19 months ago)
Pfpea3.4ng/LEPA UCMR5(19 months ago)

Microplastics

Microplastics have been documented in raw and treated drinking water worldwide, but federal regulations do not currently require testing — so there is no data specific to this system. Standardized methods and rules are in progress.

Other Regulated Contaminants

These contaminants were detected within federal standards (EPA Maximum Contaminant Levels). They are presented for transparency.

Total Trihalomethanes (TTHMs) (LRAA): 63.50 ug/Lwithin limit of 80 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HH2, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Total Trihalomethanes (TTHMs) (LRAA): 55.97 ug/Lwithin limit of 80 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HT1, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Total Trihalomethanes (TTHMs) (LRAA): 54.30 ug/Lwithin limit of 80 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HH3, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Total Trihalomethanes (TTHMs) (LRAA): 53.15 ug/Lwithin limit of 80 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2DBP3, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Total Trihalomethanes (TTHMs) (LRAA): 51.30 ug/Lwithin limit of 80 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HH4, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Total Trihalomethanes (TTHMs) (LRAA): 52.65 ug/Lwithin limit of 80 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2DBP2, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Total Trihalomethanes (TTHMs) (LRAA): 48.85 ug/Lwithin limit of 80 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HT3, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Total Trihalomethanes (TTHMs) (LRAA): 51.05 ug/Lwithin limit of 80 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HT2, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Haloacetic Acids (HAA5) (LRAA): 19.80 ug/Lwithin limit of 60 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HH2, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Haloacetic Acids (HAA5) (LRAA): 15.80 ug/Lwithin limit of 60 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HT2, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Haloacetic Acids (HAA5) (LRAA): 13.38 ug/Lwithin limit of 60 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HH4, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Haloacetic Acids (HAA5) (LRAA): 13.68 ug/Lwithin limit of 60 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HH3, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Haloacetic Acids (HAA5) (LRAA): 14.33 ug/Lwithin limit of 60 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HT1, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Haloacetic Acids (HAA5) (LRAA): 13.43 ug/Lwithin limit of 60 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2DBP3, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Haloacetic Acids (HAA5) (LRAA): 13.15 ug/Lwithin limit of 60 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2HT3, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Haloacetic Acids (HAA5) (LRAA): 12.33 ug/Lwithin limit of 60 ug/L

EPA Stage 2 DBPR — Locational Running Annual Average, monitoring point Well S2DBP2, based on 4 samples across 4 quarters (2025Q4 · 2026Q1 · 2026Q2 · 2026Q3).

Disinfection byproducts are regulated as a running average under Stage 2 DBPR, not as individual samples. A single sample exceeding the MCL is not itself a compliance violation — the annual running average is the enforceable metric.

Detected contaminants
ContaminantResultUnitHealth GuidelineEPA Legal LimitSourceSample Date
Barium
Increase in blood pressure
Per-source breakdown (4 sampling locations)
  • Sampling locationMost recent valueSample date
  • Well WL21132100 ug/L5/11/26
  • Well WL2113024 ug/L5/5/26
  • Well WL2113618 ug/L6/9/26
  • Well TP1416 ug/L4/7/26
18ug/L10002000DNR
Chromium (total)
Note: total chromium includes the harmless trivalent form (Cr-III). The toxic hexavalent form (Cr-VI) has no federal MCL; California set a 10 µg/L Cr-VI MCL in 2014.
Allergic dermatitis
2.3ug/L100100DNR
Nitrate (as N)
Blue baby syndrome in infants
2.6mg/L1010(as N)DNR
Fluoride (natural)
Bone disease, mottled teeth in children
580ug/L40004000DNR

Unregulated Detected Contaminants

These contaminants were detected but do not have a federal Maximum Contaminant Level. They are monitored for awareness, not compliance.

Other Substances

Detected contaminants
ContaminantResultUnitHealth GuidelineEPA Legal LimitSourceSample Date
Copper (90th Percentile)
Gastrointestinal distress at high levels. Long-term exposure can cause liver or kidney damage.
Per-source breakdown (131 sampling locations)
  • Sampling locationMost recent valueSample date
  • Well LC5T016144 ug/L9/12/25
  • Well LC1T220117 ug/L5/8/26
  • Well LC1T190104 ug/L6/10/26
  • Well LC5T08697.6 ug/L9/10/25
  • Well LC5T10485.4 ug/L10/21/25
  • Well LC5T10880 ug/L9/11/25
  • Well LC5T09777.3 ug/L10/20/25
  • Well LC5T09375.4 ug/L12/19/25
  • Well LC5T21271 ug/L9/11/25
  • Well LC5T19970.5 ug/L10/17/25
  • Well LC1T18469.1 ug/L6/9/26
  • Well LC5T23565.8 ug/L9/12/25
  • Well LC1T18165.3 ug/L5/7/26
  • Well LC1T06164.7 ug/L9/10/25
  • Well LC5T18864.6 ug/L10/16/25
  • Well LC1T21964.4 ug/L5/7/26
  • Well LC1T16362.1 ug/L6/10/26
  • Well LC1T08261.5 ug/L5/22/26
  • Well LC5T04359.4 ug/L10/16/25
  • Well LC5T15658 ug/L10/16/25
  • Well LC1T09157.9 ug/L5/28/26
  • Well LC5T20157.2 ug/L10/17/25
  • Well LC5T16055.9 ug/L9/10/25
  • Well LC5T21655.4 ug/L10/16/25
  • Well LC5T21055.1 ug/L10/17/25
  • Well LC1T23954.6 ug/L6/8/26
  • Well LC5T06652 ug/L12/19/25
  • Well LC5T23251 ug/L10/20/25
  • Well LC5T21350.5 ug/L10/16/25
  • Well LC5T21549.2 ug/L10/16/25
  • Well LC1T16947.5 ug/L6/9/26
  • Well LC1T17747.3 ug/L6/8/26
  • Well LC5T16246.8 ug/L9/10/25
  • Well LC1T19646 ug/L6/9/26
  • Well LC1T16145.9 ug/L6/8/26
  • Well LC5T03445.6 ug/L10/23/25
  • Well LC1T19544.8 ug/L6/9/26
  • Well LC1T24942.2 ug/L6/9/26
  • Well LC1T24241.3 ug/L5/28/26
  • Well LC1T20539.2 ug/L5/19/26
  • Well LC1T08038.8 ug/L5/13/26
  • Well LC1T15837.5 ug/L6/9/26
  • Well LC5T10336.1 ug/L10/17/25
  • Well LC1T24335.7 ug/L6/2/26
  • Well LC1T17335.5 ug/L6/9/26
  • Well LC1T23635.3 ug/L5/20/26
  • Well LC1T14734.1 ug/L6/9/26
  • Well LC5T19333.5 ug/L10/17/25
  • Well LC1T20332.7 ug/L5/7/26
  • Well LC1T24832.5 ug/L6/17/26
  • Well LC5T07332.1 ug/L10/20/25
  • Well LC5T11831.4 ug/L12/19/25
  • Well LC1T20831.3 ug/L5/19/26
  • Well LC1T16431 ug/L6/10/26
  • Well LC5T07730.8 ug/L10/16/25
  • Well LC1T25030.7 ug/L6/17/26
  • Well LC1T11930.5 ug/L6/8/26
  • Well LC5T14630.5 ug/L10/21/25
  • Well LC1T24429.6 ug/L6/9/26
  • Well LC1T17029.5 ug/L6/9/26
  • Well LC1T06528.6 ug/L5/7/26
  • Well LC1T03328.4 ug/L5/7/26
  • Well LC1T16828.2 ug/L6/10/26
  • Well LC5T15727.6 ug/L11/6/25
  • Well LC5T10627 ug/L11/6/25
  • Well LC1T14326.6 ug/L5/19/26
  • Well LC1T06726.5 ug/L5/7/26
  • Well LC1T12126 ug/L5/14/26
  • Well LC1T23726 ug/L5/6/26
  • Well LC1T15525.5 ug/L6/10/26
  • Well LC1T04825.5 ug/L5/28/26
  • Well LC1T08425.1 ug/L5/7/26
  • Well LC1T09525 ug/L5/7/26
  • Well LC5T19224.5 ug/L11/5/25
  • Well LC1T00424.3 ug/L6/15/26
  • Well LC1T07923.5 ug/L10/17/25
  • Well LC1T20723.3 ug/L9/12/25
  • Well LC1T17422.8 ug/L6/10/26
  • Well LC1T05522.6 ug/L5/20/26
  • Well LC1T14921.5 ug/L6/12/26
  • Well LC5T17821.5 ug/L9/9/25
  • Well LC1T24721 ug/L6/11/26
  • Well LC1T14821 ug/L6/9/26
  • Well LC1T07420.6 ug/L10/18/25
  • Well LC5T04720 ug/L9/10/25
  • Well LC1T15219.7 ug/L6/10/26
  • Well LC1T18719.7 ug/L6/8/26
  • Well LC1T14419 ug/L6/10/26
  • Well LC1T24518.9 ug/L6/10/26
  • Well LC5T12018.7 ug/L9/10/25
  • Well LC5T10217.8 ug/L10/16/25
  • Well LC1T22117.7 ug/L5/7/26
  • Well LC5T15017.3 ug/L10/31/25
  • Well LC5T22216.6 ug/L10/16/25
  • Well LC1T10916.1 ug/L5/19/26
  • Well LC1T09215.3 ug/L10/17/25
  • Well LC5T17115.1 ug/L9/10/25
  • Well LC1T09614.5 ug/L5/13/26
  • Well LC1T21414.4 ug/L6/17/26
  • Well LC1T08914.1 ug/L5/18/26
  • Well LC5T13314.1 ug/L10/15/25
  • Well LC1T17613.5 ug/L6/11/26
  • Well LC1T07013.5 ug/L5/18/26
  • Well LC1T03613 ug/L5/21/26
  • Well LC1T07213 ug/L5/20/26
  • Well LC5T06212.4 ug/L11/6/25
  • Well LC1T05911 ug/L5/7/26
  • Well LC1T11611 ug/L10/16/25
  • Well LC1T11210.9 ug/L12/19/25
  • Well LC1T08810.6 ug/L5/19/26
  • Well LC1T12210.5 ug/L5/28/26
  • Well LC1T10010.4 ug/L6/12/26
  • Well LC1T19410 ug/L5/7/26
  • Well LC1T2099.9 ug/L5/7/26
  • Well LC1T0149.6 ug/L9/9/25
  • Well LC1T0449.4 ug/L5/28/26
  • Well LC1T2469.1 ug/L6/9/26
  • Well LC1T1899.1 ug/L5/21/26
  • Well LC1T0468.7 ug/L5/7/26
  • Well LC1T1838.3 ug/L6/10/26
  • Well LC1T1458.3 ug/L6/9/26
  • Well LC5T0648.3 ug/L12/19/25
  • Well LC1T2417.7 ug/L6/8/26
  • Well LC1T1807.5 ug/L6/9/26
  • Well LC1T1757.3 ug/L6/11/26
  • Well LC1T0877.3 ug/L5/28/26
  • Well LC1T1676.5 ug/L6/10/26
  • Well LC1T1116.3 ug/L5/13/26
  • Well LC5T1596.2 ug/L9/10/25
  • Well LC1T2315.8 ug/L5/20/26
  • Well LC1T2062 ug/L5/7/26
32.5ug/L3001300DNR

Other Potential Contaminants

Not detecting a contaminant does not prove it isn't present — it only means the laboratory didn't test for it, or tested below the reporting limit. Many substances of emerging concern are not routinely monitored because federal regulations haven't caught up to the science.

Compliance History

Formal EPA and DNR compliance events on record for this utility. Includes all events from the last 10 years plus any unresolved violations regardless of age. Health-based violations are legally enforceable thresholds that were exceeded; procedural events are monitoring or reporting lapses that don't indicate contamination by themselves.

0 health-based1 procedural
Contaminant 1095
Monitoring & Reporting

Jan 1, 2023 – Dec 31, 2025

Source: EPA ECHO enforcement and violation records (via Envirofacts / SDWIS Federal Reports).

Action Steps

This system has contaminants above a legal limit or multiple health guidelines. The following steps are concrete things a homeowner or facility operator can do right now — starting with the most important non-commercial options.

  1. Request the utility's Consumer Confidence Report (CCR). The CCR compares utility-reported readings to the federal legal limits and is independent of this site. Utilities must make it available on request. EPA CCR search.
  2. Get a certified tap test. A state-certified laboratory can test your tap for a specific contaminant or a broader panel. A single-contaminant test runs in the low tens of dollars; a comprehensive panel runs several hundred. Ask for the EPA-certified lab list from the Illinois drinking water program. State lab certification programs.
  3. Consider point-of-use filtration. For the specific contaminants detected in this system, the exceedance sections above list the technology categories (reverse osmosis, granular activated carbon, ion exchange, etc.) that target each class. Those are category-level descriptions — the right choice depends on the contaminant profile, budget, and installation constraints.
  4. Contact the utility directly. Ask about the specific contaminants you're concerned about and request the most recent sampling data. The EPA SDWIS portal lists utility contact details. EPA SDWIS system lookup.
  5. Check the utility's lead service line inventory. Under the Lead and Copper Rule Revisions (LCRR, 2024), utilities must publish a service line inventory identifying lines flagged as lead, galvanized-requiring-replacement, or unknown material. If your service line is flagged or unknown, the utility is required to replace it on a scheduled timeline. EPA Lead and Copper Rule Improvements.

Frequently Asked Questions

What contaminants are in AURORA water?

Based on available public monitoring data, 39 contaminants have been tested in AURORA's water supply. 14 were detected above reporting limits. The most notable detections include Haloacetic Acids (HAA5), Total Trihalomethanes (TTHMs), Barium. This data comes from source-level compliance monitoring at wells and treatment plants.

Does AURORA water meet EPA standards?

Based on available public monitoring data, 1 contaminant was measured above federal EPA standards in source-level monitoring. This does not necessarily indicate a formal violation — the EPA uses running averages and other criteria for compliance determinations. Data comes from wells and treatment plants, not tap-level measurements.

Is AURORA, IL water safe to drink?

Based on source-level compliance monitoring, 1 contaminant was measured above federal standards. However, compliance monitoring tests water at wells and treatment plants, not at individual taps. An on-site test is the only way to know what reaches your tap, as conditions can vary based on plumbing, blending, and distribution.

Does AURORA water have PFAS?

Yes, PFAS compounds have been detected in source monitoring for AURORA's water supply: Lithium (18.6 ug/L), PFBS (Perfluorobutane Sulfonate) (0.0037 ug/L), Pfhxa (0.0035 ug/L), PFBA (Perfluorobutanoic Acid) (0.0055 ug/L). PFAS are a group of manufactured chemicals that do not break down in the environment. The EPA set enforceable limits for several PFAS compounds in 2024.

Does AURORA water have lead?

Yes. AURORA's most recent Lead and Copper Rule testing found a 90th-percentile lead level of 0.024 mg/L, which exceeds the EPA action level of 0.015 mg/L. The 90th-percentile number means that out of all samples taken across the system, the top 10% were at or above this level. Lead levels can still vary significantly by individual building — older homes and schools with legacy plumbing can have much higher readings than the system average.

Cross-check against the official record

This report is our read of the public monitoring data. Every Illinoisutility also publishes an annual Consumer Confidence Report (CCR) — a plain-language summary written by the utility itself, usually mailed with a water bill or posted on the utility's website. If anything in this report surprises you, request AURORA's latest CCR directly from the utility, or browse the underlying compliance data published by Illinois EPA.

Data Sources and Methodology

Illinois EPA Compliance Monitoring

State-level drinking water compliance testing. Covers all regulated contaminants for community water systems. Source-level monitoring at wells and treatment plants. Individual result links are provided for each contaminant in the tables above.

EPA ECHO Lead & Copper Rule

90th percentile measurements from EPA Enforcement and Compliance History Online. Based on tap-level sampling at high-risk sites.

EPA UCMR5

Unregulated Contaminant Monitoring Rule, Fifth cycle. Per-analyte PFAS results from utility-level sampling.

Definitions

Maximum Contaminant Level (MCL)
The highest level of a contaminant allowed in drinking water, set by the EPA. MCLs are legally enforceable standards.
Maximum Contaminant Level Goal (MCLG)
The level of a contaminant below which there is no known or expected health risk. MCLGs are non-enforceable public health goals.
Action Level
The concentration of a contaminant which, if exceeded, triggers treatment or other requirements. Used for lead and copper.
Health Advisory
Non-enforceable guidelines set by the EPA providing information on contaminants that can cause health effects at certain exposure levels.
Total Dissolved Solids (TDS)
A measure of all dissolved minerals, salts, and organic matter in water, expressed in mg/L (ppm). Not a health hazard but affects taste and indicates overall mineral content.
PFAS
Per- and polyfluoroalkyl substances. A group of manufactured chemicals that do not break down in the environment. The EPA set enforceable limits for several PFAS compounds in 2024.
Non-Detect (ND)
The contaminant was tested for but not found above the laboratory's reporting limit. This does not mean zero — it means below the detection threshold.
VOCs (Volatile Organic Compounds)
Chemicals that evaporate easily and can contaminate groundwater. Sources include gasoline, industrial solvents, and dry cleaning fluids. Some are regulated by the EPA; many are monitored but not yet regulated.

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Cite This Report

WaterAdvantage. "Water Quality Technical Report: AURORA, IL (IL0894070)." WaterAdvantage.org, 2026-09-06. https://www.wateradvantage.org/report/IL0894070/detail

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