HomeOntarioAmherstburg Water Hardness › Water Quality

Is Amherstburg Water Safe to Drink?

Town of Amherstburg · 2025 data · official source

Water droplet with a checkmark — Amherstburg water safe to drink — Amherstburg, ON

This is the safety page for Amherstburg — how hard the water is (and what that costs) lives on the Amherstburg water hardness page · see how Amherstburg compares across all of Ontario on the Ontario hardness guide · or browse every Ontario city by safety status on the Ontario water quality page.

✓ Yes — Amherstburg tap water is safe to drink

Amherstburg water meets all Health Canada legal limits. Each of the 15 tested contaminants below sits under its limit — most by a wide margin.

The one real caveat: lead and copper usually enter from a home's own plumbing, not the treated supply. If your home was built before the mid-1950s, older service lines and solder are the thing to check — not the water coming out of the treatment plant.

Why it's safe

  • ✓ Continuous monitoring — Town of Amherstburg tests the water around the clock for microbiological safety and routinely for chemical parameters.
  • ✓ Regulated to Health Canada limits — enforced under Health Canada (MAC limits) / Ontario Reg. 169/03.
  • ✓ Disinfected — chlorine or chloramine keeps the supply safe from bacteria from the treatment plant to your tap.

What's in Amherstburg's water

Detected contaminants reported for Town of Amherstburg.

Source: Ontario Ministry of Environment, Conservation and Parks — municipal test results, 2024-25.

✓ Meets all Health Canada legal limits

Every detected contaminant is below the health limit. Levels shown are typical (median) readings from municipal test results; occasional individual samples can run higher.

How to read this table: the legal limit (Health Canada's Maximum Acceptable Concentration (MAC)) is the enforceable safety line — it's what regulators actually require. A contaminant above its aesthetic guideline (like iron or sodium) affects taste or staining — not your health.

● Below limit — below its legal MAC limit● Above limit — above the legal MAC limit
ContaminantTypical levelHealth Canada limitStatus
Trihalomethanes (total)33 µg/L100 µg/LBelow limit
Boron19 µg/L5000 µg/LBelow limit
Barium16.5 µg/L1000 µg/LBelow limit
Total Haloacetic acids11.9 µg/Lno guidelineNo guideline
NITRATE (as nitrogen)0.661 mg/L10 mg/LBelow limit
Nitrate + Nitrite (as nitrogen)0.661 mg/L10 mg/LBelow limit
Lead0.48 µg/L10 µg/LBelow limit
Arsenic0.4 µg/L10 µg/LBelow limit
Chromium0.25 µg/L50 µg/LBelow limit
Selenium0.1 µg/L50 µg/LBelow limit
Fluoride0.09 mg/L1.5 mg/LBelow limit
Atrazine + N-dealkylated metabolites0.08 µg/L5 µg/LBelow limit
Metolachlor0.06 µg/L50 µg/LBelow limit
Uranium0.034 µg/L20 µg/LBelow limit
Cadmium0.003 µg/L5 µg/LBelow limit

Levels are typical (median) municipal test results. The legal limit is Health Canada's Maximum Acceptable Concentration (MAC).

Not sure what these levels mean for your health? Read our complete contaminants guide — what's detected vs. what matters, and how to read the numbers.

What actually matters in Amherstburg's water

Laboratory test vial with magnifying glass — Amherstburg water contaminant testing — Amherstburg water testing

Most of the numbers in the table are below the legal limit and aren't worth your worry. Here's the honest read on the ones people actually ask about in Amherstburg:

Lead — 0.48 µg/L vs 15 ppb (action level) (EPA AL / HC MAC)

Why the limit exists: There is no safe level of lead. It is a developmental neurotoxin — even low exposure is linked to delays in children's physical and mental development and attention deficits, and to kidney problems and high blood pressure in adults.
Who it matters most for: Children (especially under 6) and pregnant women.
Source: EPA AL / HC MAC

Arsenic — 0.4 µg/L vs 10 ppb (0.010 mg/L) (EPA MCL / HC MAC)

Why the limit exists: Arsenic is a Group 1 human carcinogen (IARC). The limit is based on increased risk of bladder, lung, and skin cancer, plus skin damage and circulatory problems at elevated long-term exposure.
Source: EPA MCL / HC MAC

NITRATE (as nitrogen) — 0.661 mg/L vs 10 mg/L (as N) (EPA MCL / HC MAC)

Why the limit exists: The limit protects infants from "blue baby syndrome" (methemoglobinemia). Infants under six months convert nitrate to nitrite and lack the enzyme to reverse it, so their blood can't carry oxygen. Cases occur above 10 mg/L, not at or below.
Who it matters most for: Infants under 6 months (especially formula-fed).
Source: EPA MCL / HC MAC

Nitrate + Nitrite (as nitrogen) — 0.661 mg/L vs 10 mg/L (as N) (EPA MCL / HC MAC)

Why the limit exists: The limit protects infants from "blue baby syndrome" (methemoglobinemia). Infants under six months convert nitrate to nitrite and lack the enzyme to reverse it, so their blood can't carry oxygen. Cases occur above 10 mg/L, not at or below.
Who it matters most for: Infants under 6 months (especially formula-fed).
Source: EPA MCL / HC MAC

Trihalomethanes (total) — 33 µg/L vs 80 ppb (0.080 mg/L) (EPA MCL / HC MAC)

Why the limit exists: Trihalomethanes are disinfection byproducts. Long-term exposure above the limit is associated with liver, kidney, and central nervous system problems plus an increased risk of cancer (most consistently bladder). The limit is a deliberate trade-off: you can't remove them without abandoning disinfection, which would risk far worse microbial disease.
Source: EPA MCL / HC MAC

Total Haloacetic acids — 11.9 µg/L vs 60 ppb (0.060 mg/L) (EPA MCL / HC MAC)

Why the limit exists: Haloacetic acids are disinfection byproducts associated with an increased risk of cancer at sustained elevated exposure. Same trade-off as TTHMs — the limit balances cancer risk against the necessity of disinfection.
Source: EPA MCL / HC MAC

Chromium — 0.25 µg/L vs 100 ppb (0.1 mg/L) total (EPA MCL)

Why the limit exists: Chromium-6 (the hexavalent form) is a known carcinogen when inhaled and is associated with stomach and intestinal tumors in drinking-water studies; the total-chromium MCL covers all forms. The basis is allergic dermatitis plus the cancer concern from the hexavalent form.
Source: EPA MCL

Uranium — 0.034 µg/L vs 30 µg/L (EPA MCL / HC MAC)

Why the limit exists: Uranium is both a kidney toxin and a weak alpha-emitter (radioactive); the limit is set for kidney toxicity and the associated increased cancer risk from long-term exposure.
Source: EPA MCL / HC MAC

Barium — 16.5 µg/L vs 2 mg/L (EPA MCL / HC MAC)

Why the limit exists: Barium at elevated levels can increase blood pressure and affect the cardiovascular system; the limit is set for those effects from long-term exposure.
Source: EPA MCL / HC MAC

Fluoride — 0.09 mg/L vs 4 mg/L (EPA MCL / HC MAC)

Why the limit exists: Fluoride is added to protect teeth, but above the limit it can cause bone disease (pain and tenderness) and mottled teeth in children. This is a "protecting from excess" limit, not a "removing a poison" limit.
Who it matters most for: Children (tooth mottling at high exposure).
Source: EPA MCL / HC MAC

Boron — 19 µg/L vs 4 mg/L (health advisory; HC guideline 5 mg/L) (EPA HRL / HC)

Why the limit exists: Boron at elevated levels is associated with reproductive and developmental effects in animal studies; the advisory is precautionary. It is rarely near concern in treated municipal water.
Source: EPA HRL / HC

Selenium — 0.1 µg/L vs 50 ppb (0.05 mg/L) (EPA MCL / HC MAC)

Why the limit exists: Selenium at elevated levels can cause hair and fingernail loss, numbness in fingers or toes, and circulatory problems.
Source: EPA MCL / HC MAC

Atrazine + N-dealkylated metabolites — 0.08 µg/L vs 3 ppb (0.003 mg/L) (EPA MCL / HC MAC)

Why the limit exists: Atrazine (a herbicide) is associated with cardiovascular and reproductive problems; the limit is set for those effects from long-term exposure.
Source: EPA MCL / HC MAC

Metolachlor — 0.06 µg/L vs Not federally regulated (health advisory) (EPA HRL)

Why the limit exists: Metolachlor is a herbicide with a health advisory (lifetime); elevated exposure has been associated with effects that are precautionary rather than well-established in humans.
Source: EPA HRL

Cadmium — 0.003 µg/L vs 5 ppb (0.005 mg/L) (EPA MCL / HC MAC)

Why the limit exists: Cadmium is linked to kidney damage and is a probable carcinogen; the limit is set for kidney toxicity from long-term exposure.
Source: EPA MCL / HC MAC

Where Amherstburg's water comes from — and how it's treated

Filtration pipeline — how Amherstburg's water is treated — Amherstburg water source and treatment

Detroit River (own WTP, OCWA-operated)

Like every Canadian municipal supply, Amherstburg's water is disinfected (typically chlorine or chloramine) and monitored against Health Canada's Guidelines for Canadian Drinking Water Quality, enforced provincially. If you want to read the raw report for yourself, our how to read your water quality report guide walks you through it line by line.

"My Amherstburg water tastes or smells like chlorine — is it still safe?"

Yes. A chlorine taste or smell doesn't mean the water is unsafe — it's the residual disinfectant doing its job (preventing bacteria from re-growing between the treatment plant and your tap). Occasional earthy or musty tastes in late summer are usually from naturally occurring algae in the source water, not a safety problem. If the taste bothers you, a simple activated-carbon pitcher filter removes it without any safety concern — the water was already safe before you filtered it.

Water quality vs. water hardness — don't confuse the two

"Water quality" (is it safe to drink) and "water hardness" (how much scale it leaves) are entirely different things — and confusing them leads to bad purchases. See the Amherstburg water hardness page for the hardness picture.

If contaminants concern you — add a drinking-water filter

Should you filter Amherstburg's water?

The softener handles hardness; a drinking-water filter removes Nitrate and removes Lead — if Amherstburg's reported levels concern you. EPA: Nitrate (above 10 mg/L as nitrogen) can cause "blue baby syndrome" (methemoglobinemia) in infants and is associated with certain cancers at sustained exposure. EPA / CDC: There is no safe level of lead, and it is especially harmful to children (developmental and neurological damage). EPA action level: 15 ppb at the tap. For a full breakdown of what each filter type removes, see best whole-house water filters.

See whole-house water filters →Point-of-use filters on Amazon

We may earn a commission when you buy through links on our site. This doesn't affect our recommendations. Full disclosure.

When to call a professional

Amherstburg's water meets every legal limit, so there's nothing that requires a pro — but clean, good-tasting water is always worth a little peace of mind, and your home's plumbing is its own variable. The clearest reason to call a licensed plumber: if your home was built before the mid-1950s and may still have lead service lines or solder — the lead risk lives in your pipes, not the city's water. Beyond that, a professional can test your tap (not just the city-wide report) and tell you honestly whether any treatment would actually improve what your household drinks.

Certified, independent results come from a state/province-licensed lab, not a company with a sales incentive — ask for a lab that reports to Health Canada or your province.

Frequently asked questions

Is Amherstburg tap water safe to drink?

Yes. Amherstburg's municipal water meets all Health Canada legal limits — every detected contaminant is below the limit. Lead is the main thing to watch, and it usually comes from a home's own plumbing, not the treated supply.

Who tests Amherstburg's water, and how often?

Town of Amherstburg samples and reports under provincial drinking-water regulations, tested continuously for microbiological safety and routinely for chemical parameters. Results are summarized in the provincial and municipal reports linked on this page.

Where does Amherstburg drinking water come from?

Detroit River (own WTP, OCWA-operated)

Should I filter Amherstburg's tap water?

For most people, no — the water already meets all legal limits. A filter is worth considering only if you're on older plumbing (lead/copper), have a compromised immune system, or dislike the taste/chlorine.

Is Amherstburg water hard?

See the Amherstburg water hardness page — hardness is a separate concern from safety.

Sources & method

All contaminant levels are drawn from official, published data — Ontario Ministry of Environment, Conservation and Parks — municipal test results, 2024-25 (source). We cite the legal limit for each contaminant so you never see a bare scare number.

Compare Amherstburg to Other Ontario Cities

How Amherstburg's water quality stacks up against nearby cities — same Ontario data, same legal limits.

Other Safe-to-Drink Water Cities

Amherstburg is one of many cities whose water meets every health limit. Here are a few more to compare.

Explore More

💧 Don’t rely on old numbers

These numbers change as new data comes out. Get notified when they get updated, and get our take on what to do about it. Unsubscribe anytime.

💧 Water treatment pros: this page is yours to share

This page helps customers understand what's in their water and whether they need a filter — so they can weigh whether service is worth it. We recommend sharing this page along with our complete contaminants guide in your next quote or follow-up to fully explain the value of your services.