Excess moisture in concrete slabs damages floor coverings (loss of adhesive bond, blistering, wood cupping) and can enable mold growth when moisture meets organic material—so verifying slab moisture before installing finish flooring is essential for durable results and warranty acceptance[1][7].
Two common ASTM test methods: what they measure
ASTM F1869 — calcium‑chloride (MVER)
ASTM F1869 measures moisture vapor emission rate (MVER) from the slab surface in lb/1,000 ft²/24 hr using anhydrous calcium‑chloride placed under a sealed dome for a prescribed exposure interval (typically 60–72 hours). The test quantifies surface emission, not internal slab humidity, and users should understand that it can under‑ or over‑represent long‑term internal drying behavior[2][9].
ASTM F2170 — in‑situ relative humidity (RH)
ASTM F2170 measures internal relative humidity (%) at specified depths using probes installed in drilled holes; it reports internal %RH and is commonly preferred by manufacturers and specifiers for predicting long‑term conditions under flooring because it reads internal slab humidity rather than only surface emission[1][8].
How many tests and where to place them
F2170 guidance and practice call for a minimum of three RH tests for the first 1,000 ft² of slab, plus one additional test for each additional 1,000 ft²; placements commonly include center and perimeter locations and probe depth is specified by the standard (commonly 40% of slab thickness for slabs drying from one side)[1][5][14].
F1869 procedures typically require one CaCl test per test location; manufacturers and contractors often require at least one CaCl test per room or per 1,000 ft² depending on risk and flooring type, so follow the installer or product requirements when selecting sample locations[2][9].
Performing the tests: high‑level steps
Calcium‑chloride (ASTM F1869) — high level
Clean and condition the slab per the kit or standard instructions.
Place anhydrous calcium‑chloride in the test dish and seal with the dome/cover as prescribed.
Leave the assembly for the required interval (typically 60–72 hours), then weigh and compute lb/1,000 ft²/24 hr per ASTM F1869 procedures[2][9].
In‑situ RH (ASTM F2170) — high level
Drill holes to the depth required by the standard (commonly 40% of slab thickness for one‑side drying) and insert probes or test sleeves and seal.
Allow the required equilibration time (vendors and ASTM describe 24–72 hours or longer as appropriate) then read and record %RH at each probe[1][8][14].
Because drilling and removing adhesives or coatings can generate dust and chemical exposure, use appropriate PPE (eye protection, respirator) and follow manufacturer or contractor safety guidance; if you are unsure or the installation is warranty‑sensitive, hire qualified professionals[1][8][13].
Interpreting results — no single universal pass/fail
There is no single universal pass/fail value for MVER or RH: acceptable limits depend on the flooring material and the flooring/adhesive manufacturer's warranty and installation requirements. Always check and document the product manufacturer's specified limits and provide ASTM test reports as required for warranty or acceptance[9][11][12].
Manufacturer examples show variability: some resilient flooring systems cite MVER limits up to about 5 lb/1,000 ft²/24 hr or RH thresholds near 80% for certain products, while others require MVER ≤ 3 lb/1,000 ft²/24 hr or lower RH limits—check the specific installation specs for your chosen product[11][12][9].
Because the methods measure different things, some contractors run both tests to build a fuller picture—be explicit about which number (MVER vs RH) a flooring manufacturer references when seeking product acceptance[2][1][9].
When to test: timing and cure
Do not test a newly poured slab too early. Industry guidance commonly references waiting periods (28 days is a common benchmark for initial cure), though long‑term drying can take months depending on slab thickness, mix water content, and site conditions—follow ASTM and manufacturer timing guidance before installing moisture‑sensitive flooring[1][12].
Common control and mitigation steps
Eliminate liquid water sources and improve exterior drainage and grading to keep water away from the slab[5].
Allow natural drying time and verify progress with repeat tests as needed[1].
If tests exceed product limits, use manufacturer‑approved moisture mitigation systems (surface treatments, epoxy or polymeric moisture control membranes or primers) that are explicitly rated for the measured MVER or RH and for the intended finish flooring—follow the mitigation product instructions and warranty terms[10][11][5].
Industry guidance cautions that improperly placed or multiple impermeable layers can trap moisture and create assembly problems; consider whole‑assembly moisture movement and site‑specific conditions before adding impermeable barriers or insulation layers[6][5].
Code and under‑slab vapor retarders
The 2021 IRC requires an under‑slab vapor retarder of minimum 10‑mil material meeting ASTM E1745 Class A for slab‑on‑grade under conditioned spaces where jurisdictions adopt IRC2021; check local code adoption and amendments and coordinate vapor‑retarder decisions with slab detailing and the project’s drying expectations[4][5].
Costs and hiring a pro
Retail calcium‑chloride test kits are inexpensive (examples in the low tens of dollars for single‑use kits) while in‑situ RH equipment and professional services cost more; contractor quotes include labor and reporting and are typically higher than retail kit prices[13][8].
Reported price ranges from contractor and vendor sources: single CaCl kit retail typically about $10–$50; contractor CaCl test jobs often run in the low hundreds per test/location; professional RH testing services (equipment, probes, labor, report) commonly run in the low hundreds to several hundred dollars per test/location—local quotes vary, so get written bids[13][8][9].
When you hire professional testing, ask for a written report documenting test method, locations, depths, equilibration times, and chain‑of‑custody so results can be used for warranty or manufacturer acceptance[8][13].
Practical decision flow for homeowners (short)
If slab is new or suspected wet, do not install moisture‑sensitive flooring yet; confirm cure timeline and plan testing after initial cure (commonly 28 days) per manufacturer or ASTM guidance[1][12].
Decide which test method the flooring manufacturer requires (MVER vs RH). If uncertain, run F2170 RH (preferred for long‑term prediction) and/or F1869 CaCl to document surface emissions; document both if warranty acceptance might hinge on either number[1][2][9].
If tests exceed product limits, pursue steps to stop liquid water entry and then either allow continued drying or install a manufacturer‑approved mitigation system rated for the measured values; repeat testing to confirm compliance before covering the slab[5][10][11].
Further reading
ASTM F2170 — in‑situ RH standard and testing guidance[1]
ASTM F1869 — calcium‑chloride (MVER) standard and procedure[2]
Industry and manufacturer guidance on limitations of each test and mitigation options[9][10]