Our laboratory test results, substance by substance
More than 300 substances were tested on the Puure Nano cartridge by independent ISO/IEC 17025 accredited laboratories, coordinated by Measurlabs (reports 25146, issued 07/08/2026, and 30494, issued 31/08/2026). This page reproduces every result as it appears in the reports, including the less flattering ones. Values preceded by "<" are below the laboratory's quantification limit: the substance was no longer measurable.
How we tested
In 2026 we handed our Puure Nano cartridge to Measurlabs, a Finnish testing company that routes each analysis to an ISO/IEC 17025 accredited laboratory (DAkkS in Germany for PFAS, pesticides and pharmaceuticals; HAA in Croatia for microplastics, chlorine and fluoride). We wanted a simple answer to a simple question: what is left in the water once it has passed through the cartridge?
The protocol is the most demanding one there is for a filter. Pure water is deliberately loaded with a known dose of each substance, then driven through the cartridge at a pressure close to a household tap (Seaflow pump, 2.4 bar maximum). The water that comes out is analysed by chromatography and spectrometry, with quantification limits down to a billionth of a gram per litre. For microplastics and chlorine, the laboratory even built a custom seal and set up a water column of about 1.5 metres to reproduce mains pressure.
More than 260 parameters were measured: 20 PFAS, 157 pesticides, 24 pharmaceutical residues, some thirty metals and elements, microplastics, chlorine, fluoride, PAHs, bisphenols and phthalates. Every value below comes from a signed, numbered report (25146 parts A and B, 30494), downloadable at the bottom of this page. The methods are detailed on the methodology page.
Protocol: pure water spiked at a known concentration of each substance, driven through the cartridge by a Seaflow pump (max 2.4 bar), then analysed using standardised methods. Full detail on the methodology page.
PFAS, the "forever chemicals" (20 compounds)
Water spiked at 0.05 µg/L per compound (1.0 µg/L in total, ten times the EU regulatory limit of 0.1 µg/L). After filtration, none of the 20 compounds was quantifiable and the PFAS sum is below 0.010 µg/L, a reduction of at least 99% of the sum. Method DIN EN 17892, accredited for drinking water.
| Compound | After filtration (µg/L) |
|---|---|
| PFOS | < 0.00768 |
| PFOA | < 0.008 |
| PFBA | < 0.008 |
| PFPA / PFPeA | < 0.008 |
| PFBS | < 0.00708 |
| PFHxA | < 0.008 |
| PFPS / PFPeS | < 0.00752 |
| PFHpA | < 0.008 |
| PFHxS | < 0.0076 |
| PFHpS | < 0.00764 |
| PFTrDA | < 0.008 |
| PFNA | < 0.008 |
| PFNS | < 0.00768 |
| PFDA | < 0.008 |
| PFDS | < 0.00772 |
| PFUnA / PFUnDA | < 0.008 |
| PFUnS / PFUnDS | < 0.00772 |
| PFDoA / PFDoDA | < 0.008 |
| PFDoS / PFDoDS | < 0.00776 |
| PFTrDS | < 0.00776 |
| Sum of PFAS [20] | < 0.010 |
Heavy metals and undesirable elements
Tap water spiked at 10 µg/L per element, ICP-OES analysis accredited for drinking water. The percentage is the one calculated by the laboratory on the spiked water.
| Element | Before (µg/L) | After (µg/L) | Removal |
|---|---|---|---|
| Lead (Pb) | 8.3 | 0 | 100% |
| Mercury (Hg) | 4.4 | 0 | 100% |
| Cadmium (Cd) | 8.3 | 0 | 99% |
| Chromium (Cr) | 7.9 | 0.1 | 99% |
| Copper (Cu) | 587.7 | 3.3 | 99% |
| Zinc (Zn) | 23.2 | 0.3 | 99% |
| Beryllium (Be) | 7.44 | 0.09 | 99% |
| Tin (Sn) | 8.2 | 0 | 99% |
| Uranium (U) | 9.4 | 0.1 | 99% |
| Thallium (Tl) | 9.2 | 0 | 100% |
| Bismuth (Bi) | 8.5 | 0 | 100% |
| Cerium (Ce) | 9.4 | 0 | 100% |
| Arsenic (As) | 10.1 | 0.2 | 98% |
| Vanadium (V) | 9.7 | 0.2 | 98% |
| Palladium (Pd) | 5.7 | 0.1 | 98% |
| Barium (Ba) | 81.8 | 2.8 | 97% |
| Iron (Fe) | 14.8 | 0.6 | 96% |
| Antimony (Sb) | 8.9 | 0.6 | 93% |
| Selenium (Se) | 8.8 | 0.7 | 92% |
Minerals and electrolytes: preserved
Unlike reverse osmosis, Puure filtration lets the water's natural minerals through. Measured in the same test run.
| Mineral | Before (µg/L) | After (µg/L) | Preserved |
|---|---|---|---|
| Calcium (Ca) | 11 257 | 10 977 | 98% |
| Magnesium (Mg) | 9 488 | 9 431 | 99% |
| Sodium (Na) | 13 596 | 13 682 | ~100% |
| Potassium (K) | 3 026 | 2 578 | 85% |
Microplastics
Method ISO/DIS 16094-2:2023, FT-IR microscopy. Two one-litre samples of deionised water received 150 polystyrene microspheres of 70 µm. The unfiltered sample contained 112 at analysis (method recovery rate: 74.7%). After passing through the cartridge: no particles detected.
| Measurement | Particles counted |
|---|---|
| PS microspheres before filtration | 112 |
| PS microspheres after filtration | Not detected |
Pharmaceutical residues (24 substances)
Water spiked at 0.25 µg/L per substance, LC-MS/MS analysis. After filtration, only two substances remained quantifiable: metformin at 0.0088 µg/L (96.5% reduction) and sulfamethoxazole at 0.0027 µg/L (98.9% reduction). All others were below the quantification limit.
See all 24 detailed results
| Substance | After filtration (µg/L) |
|---|---|
| Metformin | 0.0088 |
| Sulfamethoxazole | 0.0027 |
| Estrone (E1) | < 0.0025 |
| 17-beta-Estradiol (E2) | < 0.010 |
| 17-alpha-Ethinylestradiol (EE2) | < 0.010 |
| Clarithromycin | < 0.0025 |
| Erythromycin | < 0.0025 |
| Roxithromycin | < 0.0025 |
| Sulfamethazine | < 0.0025 |
| Trimethoprim | < 0.0025 |
| Diclofenac | < 0.010 |
| Ibuprofen | < 0.100 |
| Carbamazepine | < 0.0025 |
| Amisulpride | < 0.010 |
| Benzotriazole | < 0.010 |
| Candesartan | < 0.010 |
| Citalopram | < 0.010 |
| Hydrochlorothiazide | < 0.010 |
| Irbesartan | < 0.010 |
| Metoprolol | < 0.010 |
| 4-Methylbenzotriazole + 5-methyl-benzotriazole | < 0.010 |
| Telmisartan | < 0.010 |
| Venlafaxine | < 0.010 |
| Naproxen | < 0.10 |
| Phenytoin | < 0.010 |
| Nonylphenol | < 0.10 |
Pesticides and metabolites (157 substances)
Water spiked at 0.1 µg/L per substance, method DIN 38407-36, accredited for drinking water. After filtration, all 157 substances were below the quantification limit (less than 0.025 µg/L for nearly all, including atrazine, simazine, diuron, imidacloprid and metolachlor). The full list of 157 analytes is in the downloadable PDF report below.
| Measurement | Result |
|---|---|
| Substances tested | 157 |
| Quantifiable after filtration | 0 |
| Glyphosate (DIN ISO 16308) | < 0.025 µg/L |
| AMPA (DIN ISO 16308) | < 0.025 µg/L |
PAHs, bisphenols and phthalates
The 7 PAHs (including benzo(a)pyrene), spiked at 0.1 µg/L, all come out below the quantification limit, with a sum below 0.004 µg/L. The 5 bisphenols (including bisphenol A), spiked at 0.25 µg/L, all come out below 0.047 µg/L. Of the 10 phthalates spiked at 0.01 µg/L each, the sum drops from 0.1 to 0.0152 µg/L (85% reduction); two remain quantifiable (diethyl 0.0085 and dimethyl 0.0067 µg/L).
See PAH, bisphenol and phthalate detail
| Substance | After filtration |
|---|---|
| Benzo(a)pyrene | < 0.0012 µg/L |
| Benzo(b)fluoranthene | < 0.0016 µg/L |
| Benzo(k)fluoranthene | < 0.0016 µg/L |
| Benzo(ghi)perylene | < 0.002 µg/L |
| Indeno(1,2,3-cd)pyrene | < 0.0012 µg/L |
| Sum of PAHs | < 0.004 µg/L |
| Bisphenol A | < 0.047 µg/L |
| Bisphenol F | < 0.047 µg/L |
| Bisphenol S | < 0.047 µg/L |
| Bisphenol Z | < 0.047 µg/L |
| Bisphenol AP | < 0.047 µg/L |
| Diethyl phthalate | 0.0085 µg/L |
| Dimethyl phthalate | 0.0067 µg/L |
| 8 other phthalates | < 0.0050 µg/L |
| Sum of phthalates | 0.0152 µg/L (85% reduction) |
Free chlorine and fluoride
Free chlorine: 0.24 mg/L at the input, below 0.05 mg/L at the output, which is the quantification limit of the EN ISO 7393-2 method. Fluoride: a dedicated test was run in July 2026 (report 30494) with water spiked at 1 mg/L, analysed by ion chromatography (DIN EN ISO 10304-1) in an ISO/IEC 17025 accredited laboratory. No fluoride was detected at the output: 99.9% reduction, a result verified by a qualified laboratory operator.
| Measurement | Before | After |
|---|---|---|
| Free residual chlorine (mg/L Cl₂) | 0.24 | < 0.05 |
| Fluoride, dedicated July 2026 test, report 30494 (mg/L) | 1 | Not detected |
Our testing programme continues
- Tested product: the Puure Nano cartridge, our most advanced cartridge (report 25146). Every figure on this page is attributed to it by name.
- A first campaign dosed at ten times the quantification limit. For most substances the output reads "not detected": the demonstrated reduction is then bounded by the precision of the measurement, not by the cartridge. For a few elements dosed too close to that limit, we are re-running the test at one hundred times the limit to measure the actual reduction rather than a floor.
- It takes time. More than 260 parameters, several accredited laboratories, a fresh cartridge for every test: new reports are published here as they are issued, with their number and date, as the July 2026 fluoride test was.
- Minerals are preserved by design. Calcium and magnesium pass through the cartridge at 98 and 99%: Puure filters without demineralising, which reverse osmosis cannot do.