EDTA Solution Preparation

How many grams of EDTA to weigh for any molarity and volume, with a full recipe table.

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To prepare a solution of EDTA you need the grams, and grams is molarity × volume in litres × 292.244 g/mol. A litre of 1 M takes 292.244 g; 500 mL of 0.1 M takes 14.612 g; 250 mL of 0.01 M takes 730.61 mg. Enter the strength you want and the volume you want it in, and the calculator returns the mass to weigh together with the same figure in milligrams and as a percentage strength.

The figure comes from the formula. EDTA is 10 × 12.011 (C) + 16 × 1.008 (H) + 2 × 14.007 (N) + 8 × 15.999 (O), which is 292.244 g/mol, taking standard atomic weights, and every page here computes that sum rather than quoting it. Oxygen makes up the largest share of the mass: 8 of the 36 atoms in a formula unit are oxygen, and they account for 127.992 g of the 292.244 g, or 43.8% by mass. The derivation table below breaks the whole molecule down element by element.

Order of operations matters more than precision here. Dissolve the solid in rather less than the final volume, then make up to the mark once it has all gone into solution and come back to room temperature — warm solutions read low when they cool. If the calculated mass is under about 20 mg, prepare ten times the strength and dilute it tenfold by pipette instead, because C₁V₁ = C₂V₂ carries less error than a marginal weighing.

The chelator that binds metal ions one to one, used in blood tubes, shampoos and titrations. The free acid barely dissolves; the disodium salt does. At 292.244 g/mol it is heavier than 18 of the 21 organic compounds covered here, and that ranking matters more than it looks: caffeine has a molar mass of 194.194 g/mol, so a gram of it contains 50.5% more formula units than a gram of EDTA. Weigh by mass and you are not weighing equal amounts of substance.

Purity is the usual gap between the calculation and the balance. A reagent sold at 98% means 5.8449 g of a nominal 292.244 g is something else, so for exact work you divide the weighed mass by the assay figure on the certificate. For most purposes the difference is smaller than the error in reading the meniscus, but it is systematic rather than random, so it does not average out.

The formula

m = c × (V ÷ 1000) × 292.244
c
The molarity you want, in mol/L
V
The volume you want to make, in millilitres
292.244
The molar mass of EDTA in g/mol, derived from its formula
m
The mass of EDTA to weigh out, in grams

How it works, step by step

  1. Enter the molarity you want, in mol/L.
  2. Enter the volume you want to make, in millilitres.
  3. The two are multiplied together and by 292.244 g/mol.
  4. The result is the mass to weigh; dissolve it in part of the volume and then make up to the mark.

Worked examples

250 mL of 0.1 M EDTA

Weigh 7.3061 g. That is 0.1 M × 0.25 L × 292.244 g/mol, and it comes to 7306.1 mg if your balance is set to milligrams. Dissolve in about 175 mL first, then make up to 250 mL.

500 mL of 0.5 M EDTA

Weigh 73.061 g. That is 0.5 M × 0.5 L × 292.244 g/mol, and it comes to 73,061 mg if your balance is set to milligrams. Dissolve in about 350 mL first, then make up to 500 mL.

1000 mL of 1 M EDTA

Weigh 292.244 g. That is 1 M × 1 L × 292.244 g/mol, and it comes to 292,244 mg if your balance is set to milligrams. Dissolve in about 700 mL first, then make up to 1000 mL.

How to read your score

0–0NothingNothing to weigh.
0–0.05Below a sensible weighingUnder 50 mg. Weigh ten or a hundred times this and dilute; the balance error does not shrink with the sample.
0.05–10Weighable directlyFrom 50 mg to 10 g, which is where a two- or three-decimal balance gives better than 1% on the mass.
10–—Large batchMore than 10 g of EDTA. Worth checking solubility and, for a solid that generates heat on dissolving, adding it in portions.

Frequently asked questions

What is the molar mass of EDTA (C10H16N2O8)?

It is 292.244 g/mol. That is the sum of the standard atomic weights of every atom in the formula: 10 × 12.011 (C) + 16 × 1.008 (H) + 2 × 14.007 (N) + 8 × 15.999 (O). One mole of EDTA therefore weighs 292.244 g, and a gram of it is 3.4218 mmol.

What percentage of EDTA is oxygen?

43.8% by mass. Each formula unit contains 8 oxygen atoms contributing 127.992 g of the 292.244 g total, so 100 g of EDTA contains 43.8 g of oxygen and a kilogram contains 437.96 g of it.

How much EDTA do I need for 1 litre of 1 M solution?

292.244 g — the molar mass in grams, which is what a 1 molar solution means. For 1 L of 0.1 M it is 29.2244 g, and for 1 L of 0.01 M it is 2.92244 g.

How much for 100 mL of 0.1 M?

2.92244 g. The volume is a tenth of a litre and the strength a tenth of molar, so the mass is a hundredth of 292.244 g. In milligrams that is 2922.44 mg.

Do I dissolve the solid first or make up the volume first?

Dissolve first, in perhaps 70% of the final volume, then make up to the mark. Adding solid to a full flask overshoots the volume and leaves the solution weak, and undissolved solid at the mark means the strength keeps changing as it goes in.

Can I dilute a stock solution instead of weighing?

Yes, and it is more accurate for small amounts. C₁V₁ = C₂V₂: to get 500 mL of 0.01 M from a 0.5 M stock, take 10 mL of stock and make up to 500 mL. Weighing the 1461.2 mg that 500 mL of 0.01 M needs directly is the harder of the two.

Solution recipes for EDTA

How the molar mass of EDTA is arrived at
ElementAtomsAtomic weightContribution (g/mol)By mass
Oxygen (O)815.999127.99243.8%
Carbon (C)1012.011120.1141.1%
Nitrogen (N)214.00728.0149.586%
Hydrogen (H)161.00816.1285.519%
Total — one mole of EDTA292.244100%

Standard atomic weights, IUPAC 2021. The contribution column is atoms × atomic weight, and the total is the molar mass this page uses: 292.244 g/mol.

Grams of EDTA needed for a standard solution
Targetfor 100 mLfor 250 mLfor 500 mLfor 1 L
0.001 M29.2244 mg73.061 mg146.122 mg292.244 mg
0.005 M146.122 mg365.305 mg730.61 mg1.46122 g
0.01 M292.244 mg730.61 mg1.46122 g2.92244 g
0.05 M1.46122 g3.65305 g7.3061 g14.6122 g
0.1 M2.92244 g7.3061 g14.6122 g29.2244 g
0.15 M4.38366 g10.9592 g21.9183 g43.8366 g
0.2 M5.84488 g14.6122 g29.2244 g58.4488 g
0.25 M7.3061 g18.2653 g36.5305 g73.061 g
0.5 M14.6122 g36.5305 g73.061 g146.122 g
1 M29.2244 g73.061 g146.122 g292.244 g
2 M58.4488 g146.122 g292.244 g584.488 g

Each cell is molarity × volume in litres × 292.244 g/mol. Dissolve the solid first and then make up to the marked volume — adding solid to a full volume overshoots it.

EDTA among other organic compounds, by molar mass
CompoundFormulaMolar mass (g/mol)Millimoles in 1 g
Uric acidC5H4N4O3168.1125.9484
GlucoseC6H12O6180.1565.5507
AspirinC9H8O4180.1595.5507
CaffeineC8H10N4O2194.1945.1495
EDTA (this page)C10H16N2O8292.2443.4218
SucroseC12H22O11342.2972.9214
CholesterolC27H46O386.6642.5862

Ordered by molar mass. The last column is 1000/M, which is the number a weighed gram actually gives you.

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