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Price a 2026 radon mitigation install by system (sub-slab depressurization / active soil depressurization / block wall / passive sealing), foundation, and post-test radon level — then line up 3 NRPP or NRSB certified contractor bids.
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Price as of Jul 24, 2026. Product prices and availability are accurate as of the date indicated and are subject to change. Any price and availability information displayed on Amazon at the time of purchase will apply.
Radon mitigation runs $300–$8,000 by system — sub-slab depressurization averages $800–$2,500, crawlspace ASD $1,500–$4,000, and block-wall systems $2,500–$5,000.
$300-$8,000 depending on system. Passive sealing only $300-$1,500. Sub-slab depressurization (most common) $800-$2,500. Active soil depressurization for crawlspaces $1,500-$4,000. Block wall depressurization $2,500-$5,000. National average per Angi and HomeGuide lands near $1,100-$1,600 for a standard sub-slab install on a basement or slab foundation.
| System | Typical Range | Best For |
|---|---|---|
| Passive sealing only | $300-$1,500 | Sub-4 pCi/L levels, new build prep |
| Sub-slab depressurization | $800-$2,500 | Slab + basement foundations |
| Active soil depressurization | $1,500-$4,000 | Dirt / vented crawlspaces |
| Block wall depressurization | $2,500-$5,000 | Hollow CMU basement walls |
The federal EPA action level is 4 pCi/L — any long-term indoor reading at or above 4 pCi/L warrants installing a mitigation system. EPA also recommends considering mitigation between 2 and 4 pCi/L because there is no known safe level of radon exposure. Radon is the second-leading cause of lung cancer in the US after smoking and causes about 21,000 deaths a year per EPA estimates.
Sub-slab depressurization (SSD) is the default for slab and basement foundations: a single PVC suction point drilled through the slab, sealed, and vented outside above the roofline by an inline fan at $800-$2,500 installed. Active soil depressurization (ASD) is the crawlspace variant: contractors lay a 6-mil polyethylene sub-membrane over the dirt floor, seal it airtight at the perimeter, then pull air from beneath it at $1,500-$4,000. The systems share a fan and vent but the crawlspace version is 40-80% more expensive because the membrane and sealing are labor-intensive.
System type is the single biggest factor at a 10x spread from $300 passive sealing to $5,000 block-wall depressurization. Foundation complexity is second — crawlspaces and multi-level homes with more than one foundation type need extra suction points at $500-$1,500 each. Severe radon over 20 pCi/L adds 30-50% because contractors size up to a high-CFM fan, add dual suction points, and install continuous monitoring. Regional labor swings 20-30% and premium ultra-quiet fans add $200-$500.
No. Standard HO-3 policies treat radon as a gradual environmental condition, not a sudden covered peril, so the install cost is always a homeowner expense. Some state programs (EPA Region 8, New Jersey DEP, Illinois) offer low-interest loans or rebates up to $500 for low-income households. In a home sale, buyers routinely negotiate either a credit for mitigation or require the seller to install a system before closing when a test returns at or above 4 pCi/L.
The PVC piping and slab penetration last the life of the home. The inline fan is the wear part and lasts 5-10 years, with replacement costing $300-$600 including labor. Reputable installers offer 2-5 year workmanship warranties and the fan manufacturer warranty (RadonAway RP145, Fantech) is typically 5 years. Budget $30-$60 a year for the fan to run continuously; they draw 50-180W depending on model. Re-test every 2 years per EPA and after any major foundation or HVAC renovation.
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The most common residential install: one suction point cored through the basement slab, vented above the roofline with a basic RadonAway-class fan. One-day install, 48-hour post-test to verify sub-4 pCi/L.
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Crawlspace install with full sub-membrane encapsulation. Premium fan matters here because crawlspace mechanicals sit near bedrooms on many ranch homes. Expect a 2-day scope.
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Block-wall systems cost more because the entire hollow CMU cavity must be sealed before the suction point can create negative pressure. Severe readings push the contractor to dual suction points.
Quote = System base + Extra suction points + Severity surcharge + Fan tier + Regional laborCost is driven first by system type (10x spread), then foundation complexity (extra suction points), then measured radon level. Severe readings above 20 pCi/L add 30-50%. Premium ultra-quiet fans add $200-$500. Block-wall and crawlspace installs are 40-80% more expensive than standard sub-slab.
Where:
System base= Sub-slab $800-$2,500, ASD crawlspace $1,500-$4,000, block wall $2,500-$5,000, passive sealing $300-$1,500Extra suction points= +$500-$1,500 per additional point on multi-level or mixed foundationsSeverity surcharge= Radon >20 pCi/L adds 30-50% for high-CFM fan, dual points, continuous monitoringFan tier= Premium ultra-quiet (RadonAway RP145, Fantech) +$200-$500 over basicRegional labor= Northeast and mountain-west metros +20-30% vs Midwest / SouthRadon mitigation in 2026 spans a 25x cost range from a $300 passive sealing job to an $8,000 block-wall-plus-multi-point install, which is why matching the system type to the actual foundation and post-test radon level is the most consequential decision in the entire project. The national average for the most common install — sub-slab depressurization on a basement or slab foundation — lands around $1,100-$1,600 per Angi and HomeGuide 2026 data, with Thumbtack reporting a $1,111 median across 10,000+ residential jobs. For a typical single-family home testing between 4 and 10 pCi/L on a poured-slab foundation, one suction point through the slab vented above the roofline by an inline fan runs $800-$2,500 installed in a one-day scope.
The four main systems split cleanly by foundation type and radon severity. Passive sealing with caulk, polyurethane, and a soft-seal sump lid at $300-$1,500 is rarely a complete cure above the federal EPA 4 pCi/L action level — it is usually a pre-mitigation cost-reducer or a new-build precaution. Sub-slab depressurization (SSD) at $800-$2,500 is the default on slab and basement foundations and handles 70% of US residential mitigation jobs. Active soil depressurization (ASD) at $1,500-$4,000 is the crawlspace variant, 40-80% more expensive because of the 6-mil polyethylene sub-membrane and perimeter sealing. Block-wall depressurization at $2,500-$5,000 is reserved for hollow CMU basement walls and costs more because the entire wall cavity must be sealed airtight before the suction point can create negative pressure.
Before comparing bids, use the home renovation estimator to confirm radon mitigation fits inside a broader remodel budget, and price the companion basement waterproofing cost calculator because sump pits and slab cracks are the two biggest radon entry paths — waterproofing and mitigation are frequently scoped together on the same contract. A third common adjacency is foundation repair cost: any active crack in a slab or block wall both raises radon entry and needs structural repair, and fixing one without the other wastes money.
Testing economics matter too. A short-term charcoal radon test kit costs $15-$50 at a hardware store or state health department and takes 48-96 hours. A professional long-term alpha-track test costs $50-$150 and runs 90 days. Real-estate transaction tests cost $150-$400 and are performed by a certified radon measurement professional using a continuous radon monitor — required in most states on a post-offer inspection. Post-mitigation re-testing is mandatory and costs $150-$250 to confirm the system pulled the home below 4 pCi/L. Do not skip the re-test: every legitimate contractor includes it in the base bid.
| System | Typical Cost | Install Time | Best For |
|---|---|---|---|
| Passive sealing only | $300-$1,500 | 1 day | Sub-4 pCi/L or new build |
| Sub-slab depressurization | $800-$2,500 | 1 day | Slab + basement foundations |
| Active soil depressurization | $1,500-$4,000 | 1-2 days | Dirt / vented crawlspaces |
| Block wall depressurization | $2,500-$5,000 | 2 days | Hollow CMU basement walls |
The federal EPA action level is 4 pCi/L — any long-term indoor reading at or above 4 warrants a mitigation system. EPA also recommends considering mitigation between 2 and 4 pCi/L because there is no known safe level of radon exposure.
The single biggest decision on any radon mitigation project is the system type, and it is driven almost entirely by foundation construction. Sub-slab depressurization at $800-$2,500 works on any home with a poured concrete slab — either a basement slab, slab-on-grade, or a finished basement with exposed slab sections under the finished floor. Contractors core a 4-inch hole through the slab, drop a PVC pipe into the sub-slab gravel or soil, seal the slab penetration with polyurethane, and run the pipe either through the rim joist and up the exterior wall or through a utility chase up to an attic inline fan and out the roof. One suction point covers 1,500-2,500 sqft of slab on typical permeable sub-base. One-day install, minimal disruption.
Active soil depressurization at $1,500-$4,000 is the only system that works on dirt-floor or vented crawlspaces. Contractors roll 6-mil polyethylene sub-membrane over the dirt, seal every seam and the perimeter to the foundation wall with butyl tape and mechanical fasteners, then cut a single suction point and run the same PVC-plus-fan stack as a sub-slab system. The sub-membrane doubles as moisture control, which is why ASD frequently gets paired with a basement waterproofing cost calculator line item on the same contract. Crawlspaces with extensive ductwork, multiple piers, or standing water add 20-40% because the membrane install gets labor-intensive.
Block-wall depressurization at $2,500-$5,000 is a specialty system for homes with hollow concrete masonry unit (CMU) basement walls — common on 1950s-1980s construction across the Midwest and Northeast. Radon enters through the porous block cores and mortar joints. A contractor seals every top-course joint, every pipe penetration, and every crack in the block, then cuts a suction point into the wall cavity itself. The system pulls air directly from inside the wall. Block-wall installs cost more because the sealing is the whole job — a missed penetration defeats the entire system. Any contractor quoting block-wall depressurization without a detailed sealing checklist is cutting corners.
A hybrid approach is worth asking about when the home has more than one foundation type — say a basement under the main house plus a crawlspace addition. Each foundation needs its own suction point at $500-$1,500 each, but a single fan can sometimes service both if the piping layout allows. Two-fan systems are sometimes necessary on large multi-level homes and add roughly $400-$700 in fan and electrical cost. Pair the mitigation bid with a foundation repair cost calculator run if any visible cracks are present — structural repair before mitigation avoids re-sealing the suction point twice.
Six cost drivers explain nearly the entire 25x spread from a $300 passive sealing to an $8,000 block-wall multi-point install. System type is the single biggest factor at 10x spread between passive sealing and block-wall depressurization — no other variable comes close. Foundation complexity is second: each extra suction point for a multi-level or mixed-foundation home adds $500-$1,500. Measured radon level matters more than people expect — severe readings above 20 pCi/L add 30-50% because contractors size up from a standard 50-90W fan to a high-CFM 90-180W unit, add a second suction point for redundancy, and install a continuous radon monitor ($300-$600) to verify long-term performance.
Fan tier is a smaller but meaningful line item. Basic inline radon fans (RadonAway RP140, Fantech HP175) run $150-$250 and are silent enough for unfinished basements and exterior wall mounts. Premium ultra-quiet fans (RadonAway RP145, RP265, Fantech HP190) run $300-$500 and are worth the upgrade on any finished basement install or when the fan mounts on a wall shared with a bedroom. Regional labor swings 20-30% with Northeast and mountain-west metros at the top of the range. Site conditions add line items that are easy to miss in the base bid: exterior vent cladding to match siding adds $100-$300, HVAC balancing on tight modern homes adds $200-$500, and sump pit sealing is $100-$300 if a sump is present.
A practical scoping sequence: confirm the radon level with a follow-up test if only one measurement is available (one high reading can be a fluke), identify foundation type by walking the basement and crawlspace, pick the system based on foundation (SSD for slab, ASD for crawlspace, block-wall for CMU), and price the fan tier and post-mitigation re-test as separate line items so you can compare bids apples to apples. The attic insulation calculator covers a related budget item: many mitigation systems run the vent stack through the attic to the roof, and upgrading attic insulation around the stack prevents condensation and ice damming on the PVC in cold climates.
| Factor | Cost Impact | Notes |
|---|---|---|
| System type | 10x spread | Single biggest factor |
| Extra suction point | +$500-$1,500 | Multi-level / mixed foundations |
| Severe radon (>20 pCi/L) | +30-50% | High-CFM fan + dual points + monitor |
| Premium ultra-quiet fan | +$200-$500 | Finished basement or bedroom-adjacent |
| Regional labor | +20-30% | Northeast + mountain west |
| Post-mitigation re-test | $150-$250 | Always include in base bid |
| Continuous radon monitor | $300-$600 | Recommended above 20 pCi/L |
| HVAC balancing | +$200-$500 | Tight modern homes only |
A clean sub-slab depressurization quote decomposes into five buckets: PVC piping and slab penetration at 35% of total, inline fan and exterior vent stack at 25%, labor at 20%, post-mitigation re-test and permit at 12%, and sealing plus finish work at 8%. On a typical $1,500 sub-slab install on a basement, that works out to roughly $525 in piping and core-drill, $375 in fan plus vent stack, $300 in labor, $180 in re-test and permit, and $120 in sealing and exterior cladding. Crawlspace ASD jobs have a very different mix because the 6-mil polyethylene sub-membrane and perimeter sealing alone is 35-45% of the total.
The donut below visualizes the typical sub-slab install split. When you receive multiple bids, recast each bid into these buckets to catch outliers. A bid where the fan line is below 15% of the total on a sub-slab install is either using a no-name fan with no manufacturer warranty, skipping the ultra-quiet upgrade, or bundling the fan into another line to inflate elsewhere — insist on fan model number (RadonAway RP-series or Fantech HP-series) in writing. A bid where the post-mitigation re-test is missing entirely is an immediate red flag; reputable installers always include one because they cannot confirm system performance without it.
On crawlspace jobs, the line-item risk is reversed: contractors quote base sub-membrane but bury perimeter sealing, mechanical fasteners, and butyl tape in fine print. Specify a minimum 6-mil membrane (10-mil is better for heavy-traffic crawlspaces) and require written documentation of perimeter seal method in the signed contract. Pair with a sump pump install cost calculator if the crawlspace has a sump pit; sealing the pit lid is a standard sub-task in any thorough sub-slab mitigation.
Radon mitigation is a specialty trade with two recognized national certifications: NRPP (National Radon Proficiency Program) and NRSB (National Radon Safety Board). Both certify individual technicians, not companies, and both require exam passage plus continuing education. Always verify the individual who will perform the install is NRPP- or NRSB-certified — the company being "certified" means nothing if the actual installer is an uncertified helper. Most states with mandatory radon licensing (Illinois, New Jersey, Pennsylvania, Ohio, Maine, others) require either NRPP or NRSB as the underlying credential. Verification is 30 seconds at nrpp.info or nrsb.org.
Reputable contractors cap deposits at 10-25% of the contract — on a $2,500 sub-slab job that is $250-$625 maximum. Demands above 30% or cash-only payments are near-universal scam signals in this trade. Verify license, general liability insurance, and workers’ comp via Certificate of Insurance before signing. The post-mitigation re-test MUST be in the written contract and MUST be performed by a different certified measurement professional than the installer (to avoid conflict of interest) or via an unattended continuous radon monitor left in place for 48 hours. Any contractor who pressures you to skip the re-test or who "provides their own" un-calibrated detector is cutting corners.
Three specific scams to watch for. First, door-knockers offering "free radon tests" immediately followed by a same-day mitigation quote — legitimate radon professionals schedule tests days out and never cold-call. Walk away. Second, contractors who refuse to specify fan model number in writing — no-name imported fans fail within 2-3 years and void all warranties. Specify RadonAway, Fantech, or AMG in the contract. Third, post-install systems without an exterior vent stack above the roofline: EPA and AARST standards require venting at least 12 inches above the roof edge and 10 feet from any opening; soffit-vented systems re-entrain radon back into the home and are an instant red flag for an unqualified installer.
NRPP or NRSB certification of the actual installer is the single best vetting signal in this trade. Contractors who cannot produce a current certification card for the person doing the work are either unqualified or hiding something — move on to the next bid.
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Price materials and labor for radon mitigation, basement waterproofing, foundation repair, and more indoor-air-quality and home improvement projects.
Last Updated: Jul 24, 2026
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