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Proof layer · isotope measurement

How Mdrn-Life DDW Is Tested for Deuterium

When a water product is defined by its deuterium concentration, the key question is not whether it looks pure—it is how its hydrogen-isotope composition was measured. Deuterium requires specialized isotope analysis; it cannot be verified with a pH meter, TDS meter or ordinary home water-quality test.

Mdrn-Life publishes laboratory documents for specific identified water samples. Those documents are evidence about the samples named in the reports; they are not presented as proof that every bottle or every production batch has received the same external testing.

What the test measures

Hydrogen isotope ratio—not pH, minerals or TDS

The most common hydrogen isotope is ¹H (protium). Deuterium is ²H, a stable hydrogen isotope containing one proton and one neutron. An isotope analysis determines the relative abundance of these isotopes in a water sample.

Conceptual isotope comparison. This illustration explains the measurement target; it is not to scale.
δ²H and VSMOW

Why isotope laboratories often report δ²H

Hydrogen-isotope measurements are often expressed as δ²H, sometimes written δD. The delta value describes how the isotope ratio in a sample differs from an internationally defined reference.

That reference is VSMOW—Vienna Standard Mean Ocean Water. The IAEA maintains VSMOW2 and related reference waters to provide metrological traceability for hydrogen- and oxygen-isotope measurements.

A strongly negative δ²H value means the sample is depleted in deuterium relative to the VSMOW reference. A δ²H value, however, is not automatically the same thing as a ppm result. If a laboratory reports δ²H only, Mdrn-Life shows that result as reported rather than inventing a consumer-facing ppm number.

PPM

What does ppm mean in DDW?

PPM means parts per million. In the DDW category it provides a more intuitive way to describe deuterium concentration. Mdrn-Life's manufacturing specification is a 5 ppm production target.

That target and an individual laboratory result are different statements. The target describes the intended production specification. A laboratory report describes what was measured in the particular sample identified in that document.

From bottle to evidence

How a useful isotope report becomes verifiable evidence

1
Identify the sample

The report should identify the submitted water sample, field ID or laboratory ID.

2
Analyze hydrogen isotopes

A qualified laboratory applies an isotope-analysis method appropriate to the sample and measurement range.

3
Report the unit

The laboratory may report δ²H relative to VSMOW and, in some reports, an associated ppm concentration.

4
Publish the original document

Customers can compare the sample identity, method, date, result and stated uncertainty without relying only on a marketing badge.

The evidence chain is strongest when sample identity, method and original laboratory document remain visible together.
Analytical methods

CRDS and IRMS are different analytical technologies

Cavity-ring-down spectroscopy (CRDS)

CRDS is a laser-based optical spectroscopy technique used to measure isotope ratios. The Hydroisotop report published by Mdrn-Life identifies Cavity-Ring-Down Spectrometry (CRDS) and reports its result relative to VSMOW.

Isotope-ratio mass spectrometry (IRMS)

IRMS separates isotopic species by mass. USGS states that dual-inlet IRMS is its gold-standard technique for δ²H measurement of water. The published Mdrn-Life USGS result document itself lists the sample's preparation/analysis as hydrogen equilibration and reports δ²H relative to VSMOW.

Why this matters: the two published Mdrn-Life documents should not be marketed as a single “dual-lab IRMS” test. The useful questions are which sample was tested, which method the laboratory states, which reference scale was used and what result the laboratory actually reported.

Published Mdrn-Life measurements

Two identified samples, two separately reported results

LaboratoryIdentified sampleMethod/reportingPublished result
Hydroisotop GmbHMdrn-Life DDW 0006CRDS, relative to VSMOW−980.5‰ and 3.0 ppm
USGS Reston Stable Isotope LaboratoryField ID 0004 · Lab ID W-191180Hydrogen equilibration; δ²H relative to VSMOW−954.5‰
No ppm stated in the report
Scope of proof

What these reports establish—and what they do not

They establish

What the named laboratories reported for the specific samples identified in their documents, including the stated method/reporting convention and measured isotope result.

They do not establish

That every bottle or every production batch was independently tested by both laboratories, or that an isotope measurement proves a medical or biological outcome.

Buyer checklist

How to evaluate a DDW laboratory claim

Sample identity

Can you identify the sample, field ID, lab ID or report number?

Laboratory

Is the testing organization named and independently identifiable?

Method

Does the document state how the hydrogen-isotope measurement was performed or reported?

Reference and unit

Does the report specify δ²H/VSMOW, ppm, uncertainty or another reporting convention?

Original report

Can you inspect the laboratory document instead of relying only on a website badge or summary?

Technical references

Measurement references

USGS Reston Stable Isotope Laboratory QA/QCUSGS QA/QC
CIAAW hydrogen isotope reference informationCIAAW — Hydrogen
Continue

Put the measurement in context

Original laboratory documents

Open the reports referenced on this page

These are the original published documents for the specific identified samples discussed above. Each report should be read according to its own sample identity, method, reporting unit and stated uncertainty.