Du Noüy ring method

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Template:Short description

Close up of the ring drawn out of the liquid

In surface science, the du Noüy ring method is a technique for measuring the surface tension of a liquid. This technique was proposed by Pierre Lecomte du Noüy in 1925.[1] The measurement is performed with a force tensiometer, which typically uses an electrobalance to measure the excess force caused by the liquid being pulled up and automatically calculates and displays the surface tension corresponding to the force. Earlier, torsion wire balances were commonly used.

Description

The method involves slowly lifting a ring, often made of platinum, from the surface of a liquid. The force, Template:Mvar, required to raise the ring from the liquid's surface is measured and related to the liquid's surface tension Template:Mvar:

F=wring+2π(ri+ra)γ,

where Template:Math is the radius of the inner ring of the liquid film pulled, and Template:Math is the radius of the outer ring of the liquid film.[2] Template:Math is the weight of the ring minus the buoyant force due to the part of the ring below the liquid surface.[3]

When the ring's thickness is much smaller than its diameter, this equation can be simplified to

F=wring+4πRγ,

where Template:Mvar is the average of the inner and outer radius of the ring, i.e. (ri+ra)/2.[3][4]

The maximum force is used for the calculations, and empirically determined correction factors are required to remove the effect caused by the finite diameter of the ring:

F=wring+4πRγf,

with Template:Mvar being the correction factor.

Correction factors

A classical torsion wire-based du Noüy ring tensiometer. The arrow on the left points to the ring itself.

The most common correction factors include Zuidema–Waters correction factors (for liquids with low interfacial tension), Huh–Mason correction factors (which cover a wider range than Zuidema–Waters), and Harkins–Jordan correction factors (more precise than Huh–Mason, while still covering the most widely used liquids).[5]

The surface tension and correction factors are expressed by

γ=F4πRf,

where Template:Mvar is surface tension, Template:Mvar is the average radius of the ring, and Template:Mvar is correction factor.

Zuidema–Waters correction factors

H. H. Zuidema and George W. Waters introduced the following correction factor in 1961:[3]

(fa)2=4bπ21R2γmeasuredρlowerρupper+C,

where

Template:Mvar = maximum pull of rings [dyn/cm],
Template:Mvar = density of the lower and upper phases,
C=0.045341.679rR,
Template:Math,
Template:Math [s2⋅cm−1],
Template:Mvar = Du Noüy wire radius,
Template:Mvar = Du Noüy ring radius.

Huh–Mason corretion factors

C. Huh and S. G. Mason[6][7] described the correction factors as a function of Rr and R3V. See the references.

Harkins–Jordan correction factors

William Draper Harkins and Hubert F. Jordan[8][9] tabulated the correction factors as a function of R/r and R3/V.

See also

References

Template:Reflist

Template:Commons category