The Hidden Radioactive Danger of Mantle Lamps

By Mary Anderson
Published on November 1, 1982
1 / 9

Although most people are unaware of the problem, the mantles in such lamps are actually radioactive . . . possibly enough so to threaten the health of folks who depend on them.
Although most people are unaware of the problem, the mantles in such lamps are actually radioactive . . . possibly enough so to threaten the health of folks who depend on them.
2 / 9

Mantle lamps 4.
Mantle lamps 4.
3 / 9

Mantle lamps 2.
Mantle lamps 2.
4 / 9

Mantle lamps 3.
Mantle lamps 3.
5 / 9

Chart: Mantle lamp comparisons.
Chart: Mantle lamp comparisons.
6 / 9

Mantle lamps 5.
Mantle lamps 5.
7 / 9

Radiation Alert Monitor.
Radiation Alert Monitor.
8 / 9

Radioactive antique Fiesta ware plate.
Radioactive antique Fiesta ware plate.
9 / 9

Radiation Alert-Mini.
Radiation Alert-Mini.

The lantern–long a standby source of light–may pose a health threat due to radioactive danger from mantle lamps. (See the mantle lamp photos in the image gallery.)

The warm yellow glow of an open-flame kerosene lamp is
comforting and–under the right
circumstances–even romantic, but almost anyone who’s
tried to read by the light of one of the standard wick-type
lanterns fully appreciates the usefulness of the mantle
lamp. When the mantle (a small cylindrical hood,
which–when placed over a flame–becomes white
hot and gives off very bright light) was incorporated into
the design of gas, kerosene, and oil lamps about 100 years
ago, the light intensity of such devices jumped from about
15 watts to nearly 60. With this refinement, folks were
significantly more able to continue their daytime
activities after darkness fell than they’d ever been
before!

Today, many campers and residents of non-electrified areas
(as well as individuals who have chosen to do without
electricity) rely on light provided by mantle lamps for
reading, sewing, and other close work . . . and they’ve
been pretty danged grateful for that eye-saving
illumination, too. However, although most people are
unaware of the hidden radioactive danger of mantle lamps. The mantles in such lamps are
actually radioactive . . . possibly enough so to threaten
the health of folks who depend on them.

The mantles used on modern lanterns acquire their
radioactive properties during the manufacturing process.
First, the fabric that will eventually form the small rayon
mesh pouches is dipped into a solution of thorium and
cerium nitrates. The nitrates are then precipitated into
the cloth with ammonia, and–after it’s
dried–the mantle is coated with nitrocellulose, which
fixes the ammonia salts and improves the pre-burning
capability of the material. Occasionally, a manufacturer
will also add a small amount of beryllium to give the ash
(the residue that’s left behind after the lantern’s
nitrocellulose-assisted initial burn) greater strength.
However, it’s the thorium in the mantle that incandesces
and gives off the functional white light.

Unfortunately, that same element is radioactive. It
is–to be more precise–an
alpha-particle-emitting radioisotope which has a decay
series of ten radiodaughters (a “daughter” is an element
that is an immediately produced by-product of the
disintegration of a radioactive element). The first
radiodaughter is radium 228, a betaemitter which–in
time–produces subsequent alpha-emitting
radiodaughters.

The difference between alpha and beta particles is an
important one for lantern users to understand. Both types
of emissions are referred to as short-range radiation:
Alpha particles are large and slow-moving, and can easily be
stopped by such a barrier as a piece of paper or the glass
chimney of a lantern . . . while beta particles are smaller
and faster, and can penetrate body tissue. Either type can
pose a health risk to the body if its emitters (in this
particular case, thorium and radium) are inhaled or
ingested . . . with the alpha particle being the more
dangerous.

Online Store Logo
Need Help? Call 1-800-234-3368