65/ 100
D
OverallF43/100
KEEN Men's K-30 High Outdoor Insole

Keen · Athletic Insoles & Orthotics

KEEN Men's K-30 High Outdoor Insole

D · Elevated

Insoles lack PFAS transparency; Keen's limited disclosure creates moderate uncertainty.

Verdict: SkipFoam insole with undisclosed PFAS status and standard textile hazards; acceptable with informed use and replacement monitoring.

KEEN does not publicly disclose PFAS use or avoidance in insoles. Standard foam cushioning carries unknown risk without brand commitment or third-party testing.

Still want this one anyway? Check the price on Amazon. We’d swap it.

Material

foam cushioning with textile/synthetic upper

Brand disclosure

Brand is silent on PFAS

Lab data

No public lab test

Why this grade

Safe base material

Made from a material with no inherent PFAS use (ceramic, mineral, or natural fiber).

Helps the grade

Category baseline

clothing is a category where PFAS exposure is more common.

Hurts the grade

No PFAS disclosure

No public statement about PFAS in this product.

Hurts the grade

The full breakdown

What it's made of and why it matters

The K-30 is a foam-cushioning insole with synthetic textile or knit upper covering, typical construction for arch-support footwear inserts. Foam core (likely polyurethane or EVA) provides compression resistance and comfort. The textile upper may be polyester, nylon, or a blend, which can harbor dyes and finishing chemicals applied during manufacturing. No published data confirms the specific foam formulation or textile composition for this SKU.

The brand's record and disclosure

Keen has faced scrutiny for PFAS use in waterproof footwear coatings and has not published a comprehensive PFAS elimination timeline or ingredient disclosure for insoles specifically. The company does not advertise third-party testing for formaldehyde, azo dyes, or antimony in their insole products. Keen maintains general sustainability messaging but lacks granular transparency on chemical restrictions for this category.

How it compares in its category

Insoles occupy a lower-risk segment than full shoes because they contact skin directly but are not waterproofed or flame-treated. Competitors like Superfeet and Powerstep similarly lack routine chemical disclosure for their foam cores. Keen's positioning does not emphasize chemical purity in insoles as a selling point, placing it in the middle-of-market transparency tier.

If you buy it

Replace insoles every 6 to 12 months as foam compresses and loses supportive structure; worn foam loses cushioning and can harbor moisture and bacteria. Air-dry only; do not machine-wash or expose to direct heat above 140 F (60 C), which may degrade foam and adhesives. If odor develops or foam visibly crumbles, discontinue use. Check for skin irritation in the first 48 hours of wear; discontinue if persistent itching or rash occurs.

Beyond PFAS: other things we checked

Established hazard classes for this product type, assessed from public information. These never change the PFAS grade; a Likely flag caps the Verdict at “Buy with care.”

Possible

Azo dyes in textile upper

Synthetic textile uppers on insoles are often dyed with reactive or acid azo dyes during manufacturing. Keen does not publish dye-restriction standards for this product. Risk of skin sensitization is low if insole is worn inside a shoe, but direct skin contact in users with damp feet may increase migration.

Possible

Formaldehyde-based textile finishes

Synthetic textiles frequently receive formaldehyde-releasing resins for wrinkle resistance and shape retention. No published test data for K-30 insoles confirms the absence of these finishes. Odor during first use may indicate off-gassing; ventilation and airing out before use can reduce acute exposure.

Possible

Polyurethane foam degradation and isocyanate exposure

If the foam core is polyurethane, repeated moisture exposure and thermal stress can cause breakdown and release volatile organic compounds (VOCs) and trace unreacted isocyanates. This risk is low in a dry insole but increases if insoles are worn in very wet conditions without drying. Regular replacement mitigates cumulative exposure.

None known

Antimony in polyester textile upper

If the upper contains polyester, antimony trioxide is a common polymerization catalyst. Skin contact with polyester insoles poses minimal antimony leaching risk. No published testing of Keen insoles for antimony has been reported.

Reported

Bacterial and fungal colonization from moisture retention

Foam insoles can trap sweat and moisture, creating an environment for odor-causing bacteria and fungi if not dried regularly. This is a hygiene issue rather than a chemical hazard, but it is commonly reported by users of insole products. Ensure shoes are air-dried between uses.

What we don’t know

This grade is a model-based estimate from public materials, coatings, and brand disclosure at 62% confidence. It is not a lab result.

No independent PFAS lab test is on record for this exact product. A lab test could move the score in either direction.

The brand has not made a specific, verifiable PFAS-free statement, so part of this score reflects that missing disclosure rather than a confirmed material.

Formulations and coatings change between production runs. Always check the current label before buying.

More athletic insoles & orthotics grades

How we score: every product runs through the same public 0–100 rubric based on materials, coatings, brand disclosure, lab findings, and recalls. See the full methodology → Spotted a mistake? Report an error.