Hawkins Electrical Guide v. 01 (of 10): Questions, Answers, & Illustrations, A progressive course of study for engineers, electricians, students and those desiring to acquire a working knowledge of electricity and its applicationsHawkins, N. (Nehemiah)
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Hawkins Electrical Guide v. 01 (of 10): Questions, Answers, & Illustrations, A progressive course of study for engineers, electricians, students and those desiring to acquire a working knowledge of electricity and its applications
Hawkins, N. (Nehemiah)
Electrical engineering -- Handbooks, manuals, etc.
The Fuller cell is of the two fluid type. A pyramidal block of zinc at the
end of a metallic rod covered with gutta-percha is placed in the bottom of
a porous cup containing an ounce of mercury. The cup is then filled with a
very dilute solution of sulphuric acid or water and placed in a jar of
glass or earthenware containing the bichromate solution and the carbon
plate. The diffusion of the acid through the porous cup is sufficiently
rapid to attack the zinc, which being well amalgamated, prevents local
action; while the hydrogen passes through the porous cup and combines with
the oxygen in the bichromate of potassium. This type of cell has an
electromotive force of 2.14 volts, and is suited to open circuit, or
semi-closed circuit work. The directions for setting up a Fuller cell are
as follows:
1. To make the “electropoion” fluid, mix together one gallon of
sulphuric acid and three gallons of water, and in a separate
vessel, dissolve six pounds of bichromate of potash in two
gallons of boiling water; then thoroughly mix together the two
solutions.
2. Immerse the zinc in a solution of dilute sulphuric acid, and
then in a bath of mercury, and rub it with a brush or cloth so
as to reach all parts of the surface.
3. Pour into the porous cell one ounce (a tablespoonful) of
mercury, and fill the porous cell with water up to within two
inches of the top.
4. Place the porous cell and the carbon plate in the glass jar,
as in fig. 46, and fill glass jar to within about three inches
of the top with a mixture of three parts of electropoion fluid
to two parts of water.
[Illustration: FIGS. 46 and 47.--The telephone standard and compound forms
of the Fuller cell. The type shown in fig. 46 is especially adapted to
long distance telephoning, and that shown in fig. 47 to incandescent
lamps, motors, nickel and other electroplating. The Fuller cell is a
double fluid variety and has the advantage over the Grenet type, in that
the zinc is always kept well amalgamated and does not require removal from
the solution. The Fuller cell is suitable for open and semi-closed circuit
work; its electromotive force is about 2.14 volts.]
5. The zinc should be lifted out occasionally and the sulphate
washed off.
6. The supply of mercury in the porous cell should be
maintained, so as to have the zinc always well amalgamated.
7. To renew, clean all deposits from carbon plate and zinc, and
set up with fresh solution.
=The Edison Cell.=--This is a single fluid cell with a solid depolarizer,
as shown in fig. 48, and is well adapted for use on closed circuits.
[Illustration: FIG. 48.--Edison cell, type R R. The electrolyte used is
caustic soda, the positive element zinc, and the negative element copper
oxide. The Edison cell is suitable for large stationary gas engine
ignition, railroad crossing signals, electroplating, fire alarms,
telephone circuits, etc.]
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