Urine Potassium Unit Converter

Urine Potassium Unit Converter

Urine potassium asks whether the kidney is the route of a potassium loss, not whether the body has enough. Convert mmol/L, mEq/L, mg/dL and mg/L, spot or timed.

Urine Potassium converter

Monovalent — mmol/L = mEq/L
Potassium is monovalent, so mmol/L and mEq/L are the same number. A spot concentration is interpreted as a ratio to creatinine, not on its own.
55.0mmol/LExample

Spot urine potassium 55 mmol/L in a hypokalaemic patient, before replacement

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Formula and conversion factors

mmol/L = mg/dL × 0.255766
mg/dL = mmol/L ÷ 0.255766
mEq/L = mmol/L (potassium is monovalent)
K:creatinine (mmol/mmol) = urine K in mmol/L ÷ urine creatinine in mmol/L
0.255766
derived from the atomic weight of potassium, 39.0983 — the same factor as on the serum potassium page
mmol/L = mEq/L
potassium carries one charge, so the two units are the same number
ratio, not concentration
the concentration is diluted or concentrated by water handling, so the clinically useful form is the ratio to creatinine on the same sample

Worked example

Spot urine potassium 55 mmol/L in a hypokalaemic patient, before replacement
55.0 mmol/L — and 55.0 mEq/L, the same number
55 ÷ 0.255766 = 215.0 mg/dL = 2,150 mg/L
With a urine creatinine of 10 mmol/L the ratio is 5.5 mmol/mmol, well above Halperin's 1.5 — the kidney is wasting potassium, not conserving it
The same 55 mmol/L in a dilute sample would mean a much lower excretion rate
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Spot urine potassium converted

mmol/L (mEq/L)mg/dLmg/L
10.039.1391
20.078.2782
55.0215.02,150
100.0391.03,910
mmol/L and mEq/L are identical for potassium. The mass columns are for dietary and supplement figures, which are quoted in milligrams.

Figures a urine potassium is read against

Source and basisFigureUnit
Mayo KUR, 24-hour, adults 18 and over16 – 105mmol/24 h
ARUP ULYTE, 24-hour collection25 – 125mmol/day
Mayo, random urine potassium (RKUR)No established reference values—
ARUP, random urine electrolytes (ULYTE)Not established for random urines—
Halperin, kidney conserving potassium (spot ratio)Below 1.5mmol/mmol
Halperin, kidney conserving potassium (timed)Below 15mmol/day
The last two rows are a renal response in a hypokalaemic patient, not a reference interval: below them the kidney is doing the right thing and the potassium is being lost somewhere else. Reference intervals are method- and laboratory-dependent, and the interval printed on your own report takes precedence over any figure here.

Where the potassium went

A serum potassium tells you whether the patient is in danger. A urine potassium tells you where the potassium went, and it is only interpretable alongside the serum value. The question it answers is binary: in a hypokalaemic patient, is the kidney conserving potassium as it should — in which case the loss is gastrointestinal, or the potassium has shifted into cells — or is it still excreting potassium, which makes the kidney itself the route of loss. For the blood side of the pair, use the serum potassium unit converter.

Potassium is monovalent, so mmol/L and mEq/L are the same number, and the conversion to mass units uses 10/39.0983: mmol/L is mg/dL × 0.255766. Milligrams are worth knowing because supplement and dietary labels use them — 55 mmol/L of urine potassium is 215.0 mg/dL — but no laboratory reports a urine potassium that way.

The concentration on its own is close to uninterpretable, and both reference laboratories say so: Mayo records “no established reference values” for a random urine potassium, and ARUP states intervals are not established for random urines. The reason is dilution. A urine potassium of 55 mmol/L in a concentrated morning sample and 20 mmol/L after a litre of water can represent the same excretion rate. The accepted fixes are to divide by the creatinine on the same sample — Halperin’s threshold is a potassium-to-creatinine ratio under 1.5 mmol/mmol for an appropriately conserving kidney — or to calculate the fractional excretion of potassium. The transtubular potassium gradient was the older approach and is now largely abandoned.

Two traps. The first is timing: take the urine while the patient is still hypokalaemic and before replacement, because potassium given by any route appears in the urine within hours and turns a conserving kidney into a wasting one on paper. The second is the 24-hour collection, where Mayo gives 16 to 105 mmol/24 h and ARUP 25 to 125 mmol/day; those intervals describe dietary potassium intake in a reference population and say almost nothing about tubular function in a patient who is not eating normally.

Frequently asked questions

Is urine potassium in mmol/L the same as mEq/L?

Yes — potassium is monovalent, so one millimole is one milliequivalent. A report of 55 mmol/L and one of 55 mEq/L are the same result.

How do I convert urine potassium from mmol/L to mg/dL?

Divide by 0.255766, the factor derived from potassium’s atomic weight of 39.0983. A urine potassium of 55 mmol/L is 215.0 mg/dL. Milligrams appear on dietary and supplement labels, not on laboratory reports.

What is a normal spot urine potassium?

There is no established interval — Mayo and ARUP both say so in their catalogues. The concentration depends on how dilute the urine is. Use the potassium-to-creatinine ratio or the fractional excretion of potassium instead, interpreted against the serum potassium.

What urine potassium means the kidney is conserving it?

In a hypokalaemic patient, a spot potassium-to-creatinine ratio below about 1.5 mmol/mmol, or a 24-hour potassium below about 15 mmol/day, indicates an appropriate renal response — so the loss is extrarenal or the potassium has shifted into cells.

Does potassium replacement affect the result?

Yes, substantially. Replacement potassium is excreted within hours, so a sample taken afterwards can look like renal potassium wasting in a patient whose kidneys were conserving perfectly. Take the urine before replacement where that is possible.

Related calculators

References

  1. Mayo Clinic Laboratories. Potassium, 24 hour, urine (KUR) — reference values. Test catalogue, test ID 614060; 2026.
  2. Mayo Clinic Laboratories. Potassium, random, urine (RKUR) — reference values and interpretation. Test catalogue, test ID 610696; 2026.
  3. ARUP Laboratories. Electrolytes, urine (ULYTE) — reference intervals for sodium, potassium and chloride per 24 hours. Laboratory Test Directory 0020498; 2026.
  4. Halperin ML. Assessing the renal response in patients with potassium disorders: a shift in emphasis from the TTKG to the urine K+/creatinine ratio. Afr J Nephrol. 2017;20(1):22–24.

Not medical advice. For healthcare professionals and education. Reference intervals vary by laboratory and assay — always use your own laboratory's. Never base a dose or a treatment decision on this page alone. Full disclaimer at calcengines.com/disclaimer/