KitchenAid · Electric Kettles & Pitchers
KitchenAid 1.7 Liter Electric Kettle, KEK1701
Lower concern; no PFAS-prone coatings evident in kettle design.
Electric kettles typically use stainless steel and plastics without intentional PFAS coatings. No public PFAS disclosures or concerns for this model. Contact KitchenAid directly for material confirmation if needed.
The safe swap
Secura
Secura Original Stainless Steel Double Wall Electric Water Kettle 1.8 Quart with Auto Shut-Off & Boil-Dry Protection
75/100 safety
Still want this one anyway? Check the price on Amazon. We’d swap it.
Material
stainless steel body, heating element, likely polypropylene handle
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).
Category baseline
cookware is a category where PFAS exposure is more common.
No PFAS disclosure
No public statement about PFAS in this product.
The full breakdown
What it's made of and why it matters
The KEK1701 uses a stainless steel body as its primary cooking surface, which is inert and does not leach metals into water under normal heating. The heating element is submerged metal (likely stainless or nichrome), and the handle is polypropylene plastic. Stainless steel is one of the safest cookware materials because it does not require protective coatings and does not interact chemically with water or food.
The brand's record and disclosure
KitchenAid is a Whirlpool subsidiary with no established history of safety recalls or material transparency controversies specific to kettles. The brand does not publicly disclose PFAS testing or phase-out commitments, which is typical for major cookware manufacturers but limits visibility. No formal safety certifications (e.g., NSF, FDA compliance statements) are on public record for this model, though it meets basic electrical safety standards as a grid-approved appliance.
How it compares in its category
Electric kettles with stainless steel bodies are among the safest in their category because they avoid the leaching risks of bare aluminum or non-stick polymer coatings. This model is mid-range and structurally typical; premium alternatives (e.g., glass kettles) eliminate all metal contact with water, while budget models sometimes use bare aluminum or low-grade plastic handles. The KEK1701 sits in a low-hazard middle ground for the category.
If you buy it
Use only distilled or filtered water if you have hard water, as mineral buildup inside stainless steel kettles is cosmetic but can harbor bacteria if not descaled every 1-3 months using white vinegar. Do not exceed the fill line and do not use the kettle without water or with damaged heating elements. The polypropylene handle should not contact direct heat; if discolored or soft, replace the kettle. Inspect the base seal annually for cracks that could allow water into the electrical compartment.
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.”
Stainless steel leaching under acidic conditions
Stainless steel is very stable but can leach trace nickel and chromium if water is acidic or if the kettle is filled with acidic beverages (lemon water, coffee); risk is minimal for neutral tap water but increases with hard water or citric acid use over years.
Polypropylene handle degradation and off-gassing
Polypropylene handles are generally safe but can soften or warp if exposed to sustained high heat (above 80C ambient or direct steam contact); no formaldehyde or phthalate risk is typical for this material grade, but cheap injection-molded plastics occasionally off-gas trace volatiles if defectively manufactured.
Heating element corrosion and metal particle shedding
No recalls or reports of visible corrosion or metal particle contamination in water from KEK1701 heating elements; stainless or nichrome elements are designed for long life, but older or heavily used units may develop microscopic pitting that is invisible to the eye.
Bacterial or mold growth inside sealed cavity
The interior water chamber and heating element cavity can accumulate mineral deposits and biofilm if not regularly flushed; standing water in the kettle between uses increases risk of Legionella or mold spores, though risk is low if kettle is emptied daily and descaled monthly.
Electrical hazard from water seepage into base
If the base seal cracks or the kettle is filled above the line, water can enter the electrical compartment and cause short circuits or shock risk; this is a design-dependent failure mode and not specific to materials, but over-filling or dropping the kettle increases risk.
What we don’t know
This grade is a model-based estimate from public materials, coatings, and brand disclosure at 72% 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.
Safer alternatives in Electric Kettles & Pitchers
Secura
Original Stainless Steel Double Wall Electric Water Kettle 1.8 Quart with Auto Shut-Off & Boil-Dry Protection
Stainless steel interior and exterior, no coating
Lower PFAS concern. Bare stainless steel kettle with no coatings.
⚠Risky category by default
Secura
Original Stainless Steel Double Wall Electric Water Kettle
Stainless steel interior and exterior, no coating
Lower PFAS concern. Bare stainless steel typically avoids PFAS coatings.
⚠Risky category by default
Secura
Stainless Steel Double Wall Electric Kettle Water Heater SWK-1001DW/
Stainless steel interior and exterior, no coating
Lower concern. Bare stainless steel kettle unlikely to contain PFAS.
⚠Risky category by default
More electric kettles & pitchers 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.