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How Much Does Radon Mitigation Cost in Duluth, MN?

Most Minnesota homes land between $1,500 and $3,000 installed, permit and confirmation test included. This page explains exactly what puts a house at each end of that range so you can read a quote instead of guessing at it.

$1,500–$3,000 typical One-time permanent fix Permit & confirmation test included Written, itemized quotes

A residential radon mitigation system in Minnesota costs $1,500 to $3,000 installed. A simple house — one poured basement slab, clean gravel underneath, an existing sump to tie into, and a clear interior path to the attic — typically comes in between $1,500 and $1,900. A complicated house — hollow block walls, two or three suction points, an addition on its own slab, or a crawl space that needs sheeting — runs $2,400 to $3,000 and occasionally past it.

That is the whole answer, and you should be able to get it from anyone you call. "It depends" is not a quote. It does depend, but the things it depends on are knowable, countable, and listed below. By the end of this page you should be able to walk your own basement, look at four or five specific things, and put your house in the right half of the range before an installer ever knocks on the door.

One framing point before the numbers: this is not a recurring expense. A mitigation system is a one-time capital project, like a water heater or a sump pump, that permanently changes how your foundation behaves. There is no subscription, no monitoring contract, and no annual service fee. After the install you are looking at a few dollars a month in electricity and a retest every couple of years.

The fastest way to a real number: a walkthrough. Foundation type, sump, and additions account for most of the spread in this range, and all three take about ten minutes to assess in person. Call (218) 520-9679 or request a free written estimate.

What actually drives the price

Every line in the table below is a real variable an installer is pricing when they walk your basement. Nothing here is a markup or a judgment call — each one is either labor hours or materials.

Cost driverPushes price downPushes price upRough impact
Foundation typeSingle poured slab basementHollow block walls, stone foundation, multiple slabs$200–$600
Suction pointsOne point serves the whole slabTwo or three points for poor sub-slab communication$400–$800 per added point
Drain tile & sumpInterior drain tile loop with a sump to tie intoNo drain tile — core the slab and hand-excavate a pit$150–$400
Pipe routingInterior chase through a closet or mechanical roomExterior run up the side of the house, sealed and painted$200–$500
Sub-slab materialClean washed gravel — air moves freelyCompacted clay, native till, or construction fillOften forces a second point
Crawl spaceNoneSub-membrane sheeting over exposed soil, sealed at every seam$500–$1,200
Fan sizingStandard residential inline fanHigh-suction fan for tight soils or long runs$100–$250
Electrical permitIncluded in the quoteShould never be excludedTypically under $150
House heightOne-story or split with a short run to the roofThree-story hillside home, long pipe run above the eave$150–$400

The single most expensive variable is the suction point count, and it is the one homeowners cannot see. If the slab was poured over clean gravel, one point pulls a vacuum across the entire floor. If it was poured over compacted clay or fill — common in older Duluth construction and on hillside lots where the pad was cut and backfilled — suction dies out a few feet from the pit and the far corners of the basement never see any pressure reversal. A diagnostic communication test settles it before design, which is why a careful installer sometimes gives you a range on the phone and a fixed number after the visit. The mechanics of all this are covered in depth on our radon mitigation system installation page.

What a legitimate quote includes

The reason two Duluth quotes can differ by $900 on the same house is often not the pipe. It is what one of them left out. A complete written quote covers all of this:

  • MDH license number in writing. Minnesota requires a Department of Health license for anyone performing radon testing or mitigation in a building they do not own or lease. National certification alone is not sufficient here.
  • System type and suction point count, with the reason. "Sub-slab, two points because the rear addition sits on an isolated slab" is a quote. A flat number with no design is a guess.
  • Electrical permit for the fan circuit. Pulled and closed out. An unpermitted fan circuit is a problem you inherit and then hand to a buyer.
  • Sealing work. Suction point, accessible floor-wall joint, major slab cracks, and utility penetrations. Without it the fan pulls basement air instead of soil gas and the system underperforms.
  • An airtight sump lid. Gasketed, with a clear inspection port and a sealed pass-through for the pump wiring. An open sump defeats the system.
  • U-tube manometer and a permanent system label. The manometer is your only readout. The label carries the installer's information and the install date.
  • Post-mitigation confirmation test. Placed at least 24 hours after startup, with the written result delivered to you. This is the proof the system worked.
  • Warranty terms on the fan and on the result. Ask what is covered, for how long, and whether a failed confirmation test means they come back at no charge.

A quote at $900 is not a bargain version of the above. It is usually the same pipe with the permit, the sealing, the sump lid, and the confirmation test removed. Those omissions do not show up on installation day. They show up two years later when you retest and the number has not moved, or at closing when a buyer's agent asks for the post-mitigation report and there is not one.

Three real Duluth examples

1. A 1994 poured-slab basement in Piedmont Heights — roughly $1,500 to $1,900. Single rectangular slab poured over clean gravel, interior drain tile running to a sump in the corner, a mechanical room with a straight shot up to the attic. The installer ties into the drain tile instead of coring the slab, caps the sump with a gasketed lid, runs pipe up the interior chase, sets the fan in the attic, and is out in four hours. Nothing about this house fights the system, so it sits at the bottom of the range.

2. A 1920s hillside home in Central Hillside with hollow block walls — roughly $2,200 to $2,800. The slab was poured over whatever was on site, there is no drain tile, and the block foundation walls are hollow — the voids act as a chimney collecting soil gas along the entire footing and releasing it into the basement well above the floor. That means coring the slab, hand-excavating a pit, likely a second suction point after a communication test comes back weak, and possibly treating the block cores directly. There is no interior chase, so the pipe runs up the exterior and gets painted to match the siding, and on a tall lot that is a long run. Four separate drivers stack, and the price stacks with them.

3. A basement plus a crawl space under a rear addition, Lakeside — roughly $2,600 to $3,200. The original basement is straightforward, but the addition sits on exposed dirt with no airflow connection to the main slab. Two disconnected foundation areas means two suction points, and the crawl needs heavy sheeting laid over the soil, sealed at every seam and up the walls, before its suction point goes in. That sheeting is labor, often in a space you cannot stand up in. Whether one fan serves both points or the design needs two depends on the pressures. Our crawl space radon mitigation page explains the sub-membrane approach and why it costs what it does.

What testing costs, separately

Testing and mitigation are two different purchases, and you should not pay for a system before you have a number. Details on timing and closed-house conditions are on our Duluth radon testing page.

Test typeDurationTypical costBest for
Short-term DIY kit2–7 days$15–$40 including lab feeA first look at whether you have a problem
Long-term DIY kit90 days to 1 year$25–$60The most accurate picture of real annual exposure
Professional continuous monitor48 hours$125–$250Real estate transactions and pre-mitigation design
Post-mitigation confirmation test48 hours, 24+ hours after startupShould be included in the installProving the system worked

What it costs to own the system

This is the part that surprises people in a good way. Ongoing cost is close to nothing.

Electricity. The fan runs continuously, twenty-four hours a day, year round — and draws roughly the power of a standard light bulb. That works out to a few dollars a month. Because a properly sealed system pulls soil gas from beneath the slab rather than conditioned air out of the living space, it should not meaningfully change your heating load either. If a system noticeably raises your heating bill, that is a sealing problem, not a design feature.

Fan replacement. Radon fans run for years of continuous operation, but they are mechanical and they do eventually fail. When one does, you replace the fan, not the system — the pipe, suction point, sealing, and routing all stay. It is a fraction of the original cost and a short visit. A failed fan announces itself as sudden silence, a new grinding noise, or a manometer whose two liquid columns have returned to level.

Retesting. Retest every two years, and also after major foundation or slab work, a sump replacement, or anything that tightens the building envelope such as new windows, siding, or an HVAC change. A DIY kit is fine for this. A running fan proves the fan is running; only a measurement proves the level is low.

The cost of not acting

Two honest reasons to weigh, neither of which requires alarm.

The first is health. Radon is the leading cause of lung cancer among people who have never smoked and the second leading cause overall. The risk is cumulative over decades of exposure, not acute — nobody needs to leave the house tonight. But Minnesota's average indoor level is about 4 pCi/L, three times the national average, and two in five Minnesota homes tested come back at levels the Department of Health considers a major health risk. If your house is one of them, every year you wait is a year of exposure you are choosing to keep.

The second is transactional, and it is the one that tends to move people. The Minnesota Radon Awareness Act requires sellers to disclose, in writing before a purchase agreement is signed, whether the home has been tested, any results and reports in their possession, any mitigation work done, a Radon Warning Statement, and a copy of the MDH publication Radon in Real Estate Transactions. Testing is not mandatory in a sale, but in practice buyers ask. A high reading discovered mid-inspection is a price negotiation happening on someone else's timeline, with a buyer who has just been handed a reason to renegotiate and an inspection contingency clock running. A $2,000 system installed on your schedule is a smaller number than the same system credited at the closing table under pressure — and a documented, confirmed system is a genuine selling point.

How to compare two quotes

  1. Confirm the MDH license number on both. In writing, before anything else. A contractor without one is not legally permitted to do this work in Minnesota, and the price is irrelevant.
  2. Check that both quotes name a system type and a suction point count. If one says "two points" and the other says nothing, you are not comparing the same job.
  3. Find the post-installation confirmation test on both. If it is missing from one, add its cost back before you compare, and ask why it was left out.
  4. Find the electrical permit on both. Same treatment. It is a small line item and its absence tells you something about everything else.
  5. Compare the sealing scope. Sump lid, floor-wall joint, slab cracks, utility penetrations. This is where the cheap quote usually got cheap.
  6. Ask what happens if the confirmation test comes back above 4 pCi/L. The right answer is that they return and adjust the system at no additional charge. Get it in writing.
  7. Ask about the fan warranty. Length, what is covered, and whether labor is included on a replacement.

Licensing is not optional in Minnesota. Anyone performing radon testing or mitigation in a building they do not own or lease must hold a license from the Minnesota Department of Health. National industry certification alone is not sufficient. Ask for the license number in writing before work begins — from any contractor, including us.

Frequently Asked Questions

Is radon mitigation worth it?

For a house testing at or above 4 pCi/L, yes. A one-time cost of $1,500 to $3,000 permanently removes an exposure that is the leading cause of lung cancer in nonsmokers, and it does so with a system that has essentially no ongoing cost beyond a few dollars a month in electricity. There is also a resale argument: under the Minnesota Radon Awareness Act you must disclose test results and mitigation work to a buyer, and a documented, confirmed system is far easier to hand over than an untreated high reading discovered during an inspection.

Does homeowners insurance cover radon mitigation?

Generally no. Homeowners policies cover sudden, accidental damage — fire, hail, a burst pipe. Radon is a naturally occurring condition of the soil your house sits on, not a covered peril, so mitigation is almost always an out-of-pocket cost. It is worth checking your specific policy and asking your agent, but do not build a plan around coverage. The more useful angle is timing: if you are buying, radon mitigation is a normal item to negotiate into the purchase agreement, and buyers routinely ask sellers to pay for or credit the system.

Can I install a radon mitigation system myself?

You may legally work on a building you own, so a DIY install is not prohibited in Minnesota the way hiring an unlicensed contractor is. Whether it is a good idea is a different question. The parts that decide whether a system works are the parts that are hard to do without training: reading sub-slab communication to place the suction point, sizing the fan to the soil, sealing so the fan pulls soil gas instead of basement air, and terminating the discharge at least 10 feet above grade and 10 feet from any opening. The fan circuit needs an electrical permit either way. A DIY system that does not lower the number is money spent twice.

Does a radon mitigation system add value to my home?

It rarely appears as a line-item bump in an appraisal, but it protects value in the transaction, which matters more in practice. Minnesota sellers must disclose radon testing and mitigation history before a purchase agreement is signed. Handing a buyer a documented system with a post-mitigation test result showing a low number removes an objection entirely. Handing them a 9 pCi/L reading mid-inspection invites a renegotiation you do not control, and buyers commonly ask for more than the system actually costs. The system does not raise the ceiling so much as it keeps the floor from dropping.

Why is one quote $900 and another $2,400 for the same house?

Usually because they are not the same job. Check whether the cheap quote includes the electrical permit, the sealing work at the floor-wall joint and slab cracks, an airtight sump lid, a U-tube manometer, a permanent system label, and a post-installation confirmation test. Check whether it names a suction point count or just quotes a flat rate sight-unseen. Also confirm the MDH license number on both. A genuinely lower price usually means a genuinely simpler house — existing drain tile, clean gravel, a short interior pipe run — not a better deal.

How much does it cost to run a radon fan?

A few dollars a month. The fan runs continuously and draws roughly the power of a standard light bulb, so the electricity cost is small and predictable. It also should not meaningfully increase your heating bill: a properly sealed system pulls soil gas from beneath the slab rather than conditioned air out of the living space. If your heating costs jumped noticeably after an install, that is a symptom of poor sealing at the suction point or sump, and it is worth having the installer come back and look at it.

What does it cost to replace a radon fan?

Far less than a new system. Radon fans run continuously for years and eventually wear out, but when one fails you replace only the fan — the pipe, suction point, sealing, sump lid, and routing all stay in place. It is a short visit and a fraction of the original install cost. Watch the U-tube manometer: if the two liquid columns return to level, the fan has stopped pulling or the pipe is blocked, and the house is unprotected until it is fixed. Sudden silence or a new grinding noise is the other common warning.

Get a real number for your house

We will look at your foundation, tell you which drivers on this page apply to it, and put an itemized price in writing — permit and confirmation test included. No obligation.

Call (218) 520-9679 — Free Estimate