Amine Neutralization Calculator

Calculate the neutralizing amine demand for a waterborne resin from its Acid Value and target degree of neutralization. Select a common volatile amine or enter a custom one.

Amine Demand at a Given Neutralization Target

Amine (g) = (AV ÷ 56100) × Resin Weight × (Target % ÷ 100) × Amine Eq. Wt
AV in mg KOH/g  |  Amine Eq. Wt = Amine MW ÷ basicity (almost always 1 for these amines)

Neutralizing Amine

Almost always 1 for the amines used here. Change only for an unusual polyamine neutralizer.

Amine Eq. Weight = —

100% = full stoichiometric neutralization. Many waterborne systems target 70–100%; slightly over 100% is sometimes used to offset amine loss during baking/drying.
Enter acid value, resin weight, and amine details to calculate

Amine Required

Amine (phr)

Practical Note

This gives the theoretical amine demand for your target neutralization level — treat it as a starting point, then confirm final pH and viscosity by direct measurement, since real systems are sensitive to mixing order and amine volatility during addition. Volatile amines (ammonia especially) can flash off during storage or baking, shifting the resin back toward its un-neutralized state over time — this is a common cause of viscosity or stability drift in waterborne systems that isn't visible from the formulation numbers alone. Confirm the resin's actual Acid Value from the current lot before scaling a batch, since it can drift from the nominal datasheet value.

Data Sources & References

  1. Wicks, Z.W., Jones, F.N., Pappas, S.P., Wicks, D.A. — Organic Coatings: Science and Technology, 3rd Ed., Wiley, 2007
  2. Athey, R.D. — Emulsion Polymer Technology, Marcel Dekker, 1991

Amine demand: Amine (g) = (AV / 56100) x Resin Weight x (Target% / 100) x Amine Eq. Wt. Amine Eq. Wt: MW / basicity.

Built by PolymerDNA — more formulation references in the Formulae Masterbook.

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