Reno is a high-desert city with July relative humidity near 30 percent, so a slab that looks bone dry is easy to accept at face value. Moisture in concrete does not come from the air above it. It comes from the ground below, and it moves upward through the slab whether the surface looks wet or not. This article answers the question that decides whether an epoxy floor stays bonded in Northern Nevada: what do the two standard moisture tests measure, what are the pass thresholds, and why does local ground change the reading?
Surface dryness is a surface observation. A slab can look dry to the eye, feel dry to the touch and still be moving water vapour upward from below. Once a film is bonded over that surface the vapour has nowhere to go, so it collects under the coating and shows up as blistering in the first season and delamination after that.
That is why the specification for a standard system is written as two numbers rather than a look: below 5 lbs per 1,000 sq ft per 24 hours on ASTM F1869, or below 75% RH on ASTM F2170. Exceed either one and the system changes, not just the schedule.
The calcium chloride test measures how much moisture vapour is escaping the slab across a 24-hour window, reported in pounds per 1,000 square feet. It answers the question of how much water is leaving this concrete right now.
The in-situ probe test measures relative humidity inside the slab at depth and reports a percentage. In practice it is the stricter of the two, because it reaches moisture that a surface test can miss.
| Test | Standard | Pass threshold | If exceeded |
|---|---|---|---|
| Calcium chloride | ASTM F1869 | Under 5 lbs per 1,000 sq ft per 24 hours | Specify a moisture vapour barrier |
| In-situ relative humidity | ASTM F2170 | Under 75% RH | Specify a moisture vapour barrier |
What sits under the slab decides how much water the slab sees. USDA-NRCS describes the Truckee series as very deep and poorly drained flood-plain and stream-terrace soil, with a seasonal water table at 50 to 100 cm that is saturated three or more months in most years.
That is the case where a slab reads high with no visible sign of it. Concrete is porous at the capillary level even when it looks dense and dry, and a slab sitting over a seasonal high water table is in contact with moisture for months at a time. Testing is the only way to know which slab you have.
Moisture is not the only pass-or-fail number. Concrete needs 2,500 psi minimum compressive strength, and a new slab needs 28 days minimum of cure before any coating goes down. Below that the slab is still releasing water from within, and a film traps it.
If the project is more than a recoat, such as a new slab, a new drain or a structural repair, confirm the jurisdiction before work is priced. A Reno or Sparks mailing address can sit in unincorporated Washoe County and be permitted by the county rather than the City of Reno, and the region shares one online permit portal. Reno adopted the 2024 IRC with the 2024 Northern Nevada Amendments effective 1 January 2026.
Diagnostics are invisible on installation day and obvious afterwards. Vapour pressure that has been building under a film eventually wins: bubbles and blisters first, then curled edges, then sheets of coating peeling away from a slab that still looks sound underneath.
The failure usually gets blamed on material. It rarely is. A floor that comes up in sheets with clean concrete on the back of the film was bonded to a slab that was still driving moisture, or to a surface that was never profiled to hold a bond in the first place. The surface-profile guide covers the same failure from the preparation side.
Ask for the F1869 reading in pounds per 1,000 square feet, the F2170 reading in percent relative humidity, and where each test was taken. In a garage with a floor drain or a slope, the low corner can read differently from the door, and the worst reading governs the specification.
Ask too when the reading was taken relative to the pour, because a test before 28 days of cure measures the schedule rather than the finished condition. As an independent matching service we do not test or install floors; we help homeowners ask for the numbers that make two quotes comparable.
28 days minimum from placement, not from when the slab looks dry. Testing at that point gives the real reading, and if it is still above 5 lbs per 1,000 sq ft or 75% RH the schedule moves again.
Yes. Older slabs often read high because of missing or failed under-slab vapour retarders, ground conditions, or drainage that changed over the years. Age does not predict moisture; only a test does.
They measure different things: vapour escaping the surface and humidity inside the slab. The specification uses both, F1869 at 5 lbs per 1,000 sq ft per 24 hours and F2170 at 75% RH, and a failure on either one adds a moisture vapour barrier.
A recoat usually does not trigger one. A new slab, a new drain or a structural repair can, and the jurisdiction has to be confirmed first, because part of the Reno and Sparks area is unincorporated Washoe County.
Ask each provider for the F1869 reading in pounds and the F2170 reading in percent relative humidity, with the test locations. A quote that includes a moisture vapour barrier and one that does not are different jobs, even when the totals look close.
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