Carbolineum.
—This German preparation
is made in three colors.I.—Pale.—Melt together in an iron
kettle, over a naked fire, 30 parts of
American rosin F and 150 parts of pale
paraffine oil and stir in 10 parts of single
rectified rosin oil.
II.—Dark.—Melt 100 parts of anthracene
oil and 20 parts of American
rosin F on a slow fire. Next stir in 2
parts of Para rubber solution (or solution
of caoutchouc waste) and keep on boiling
until all is dissolved. When this is
done there should be still added 5 parts
of crude concentrated carbolic acid and
5 parts of zinc chloride lye, 50° Bé., stirring
until cool. The last-named admixture
is not absolutely necessary, but
highly advisable, owing to its extraordinary
preservative and bactericidal
properties.
III.—Colored.—For red, melt 100
parts of coal-tar oil, then stir in 50 parts
of pale paraffine oil, and finally 75 parts
of bole or iron minium, and pass through
the paint mill. Although the addition of
iron minium is very desirable, it is considerably
more expensive. For gray,
proceed as above, with the exception
that metallic gray is used in place of the
bole. For green, metallic green is employed.
The colors are identical with
those used in the manufacture of roof
varnish. To increase the antiseptic
properties of the colored carbolineum,
any desired additions of phenol or zinc
chloride solutions may be made, but the
chief requirement in the case of colored
carbolineum is good covering power of
the coating.
Paints for Roofs Covered with Tar
Paper, for Roofing Paper, etc.—
| I.— |
Distilled coal tar |
70 parts |
| Heavy mineral oil (lubricating oil) |
10 parts |
| American rosin |
20 parts |
| II.— |
Distilled coal tar |
50 parts |
| Trinidad asphalt |
15 parts |
| Mineral oil, containing paraffine |
10 parts |
| Dry clay, finely ground |
25 parts |
Imitation Oil Paint.
—Schulz’s German
patent paint is cheap, and claimed to be {498}
durable, weatherproof, and glossy, like
oil paint. The application consists of a
ground coat, upon which the surface
coat proper is applied after the former is
dry. For the preparation of the grounding
dissolve 1,000 parts, by weight,
of Marseilles soap in 10,000 parts of
boiling water and stir. In a separate
vessel dissolve 2,000 parts of glue in
10,000 parts of boiling water, adding
17,500 parts of spirit of sal ammoniac.
These two solutions are poured together
and well stirred. Then dissolve
400 parts of chrome alum in 5,000
parts of water, and pour into the above
mixture. To this mixture add 10,000
parts of pipe clay, stirring the whole well
and tinting with earth colors, ocher,
Vandyke brown, etc. The solid ingredients
must be dissolved in boiling hot
water, and sifted so as to obtain a finely
divided ground color. This priming is
applied in a warm state. The coating
proper is put on the ground coat after it
is dry, in about one-half to one hour.
For this coat dissolve 2,000 parts of crystallized
alum in 10,000 parts of boiling
water and add to this liquid a solution of
2,000 parts of glue in 10,000 parts of
water; in a special vessel prepare soapsuds
of 1,000 parts of Marseilles soap in
12,000 parts of boiling water; dissolve
120 parts of chrome alum in 1,500 parts
of boiling water, and mix the three solutions
together with diligent stirring. This
paint or liquid should also be put on hot,
and assures a durable exterior paint.Paints, Stains, Etc., For Ships.
Anti-fouling Composition.
—Make an
agglutinant by heating together
|
By weight |
| White lead, ground in oil |
2 parts |
| Red lead, dry |
1 part |
| Raw linseed oil |
14 parts |
While hot stir in yellow ocher, kaolin,
baked clay in powder, or any inert
body, such as silica, barytes, gypsum, etc.,
to form a stiff dough, and, without allowing
this compound to become cold (the
vessel should not be removed from the
source of heat), dilute with more or less
manganese linoleate to the required
consistency.
Marine Paint To Resist Sea Water.
—First
prepare the water-resisting agglutinant
by heating together
| Dry white lead, carbonate only |
1 part |
| Litharge |
1 part |
| Linseed oil (fluid measure) |
14 parts |
Heat these and stir until of the consistency
of thick glue, and for every 36
parts, by weight, of this compound add
3 parts, by weight, of turpentine, and 1
part, by weight, of mastic varnish (mastic
rosin dissolved in turpentine); reheat
the whole, and for every 32 parts, by
weight, stir in and mix the following:
| Baked and powdered clay |
4 parts |
| Portland cement |
16 parts |
| Zinc white |
1 part |
| Red lead |
1 part |
After well mixing, dilute with more or
less turpentine (not exceeding 25 per
cent of the whole), or linoleate of manganese,
the latter being preferable, as
it has greater binding power. For colored
paints use red oxide of iron or green
oxide of chrome, but do not use chrome
green or lead, as they will not stand the
action of the sea water.
Compositions For Ships’ Bottoms.—
| Green. |
| Pale rosin |
25 pounds |
| Prepared mineral green |
8 pounds |
| D. L. zinc |
13 pounds |
| Boiled oil |
2 pounds |
| Mineral naphtha |
1 gallon |
| Petroleum spirit |
1 1/2 gallons |
| Prepared Mineral Green. |
| Dry levigated mineral green |
28 pounds |
| Turpentine |
7 pounds |
| Turpentine varnish |
7 pounds |
| Refined linseed oil |
7 pounds |
| Copper Color. |
| Pale rosin |
25 pounds |
| Light Italian ocher |
15 pounds |
| D. L. zinc |
5 pounds |
| Turkey red paint |
1/2 pound |
| Petroleum spirit |
1 1/2 pounds |
| Mineral naphtha |
1 pound |
| Pink. |
| Pale rosin |
25 pounds |
| D. L. zinc |
16 pounds |
| Deep vermilion |
7 pounds |
| Mineral naphtha |
1 gallon |
| Petroleum spirit |
1 1/2 gallons |
Paints For Walls Of Cement, Plaster, Hard Finish, Etc.
Coating For Bathrooms.
—As a rule
cement plastering, as well as oil paint,
suffices for the protection of walls and
ceilings in bathrooms, but attention
must be called to the destructive action
of medicinal admixtures. For such
rooms as well as for laboratories, an
{499}
application of Swedish wood tar, made
into a flowing consistency with a little
oil of turpentine and put on hot, has
been found very excellent. It is of
advantage previously to warm the wall
slightly. To the second coat add some
wax. A very durable coating is obtained,
which looks so pleasing that it is
only necessary to draw some stripes with
a darker paint so as to divide the surface
into fields.
Cement, To Paint Over Fresh.
—The
wall should be washed with dilute sulphuric
acid several days before painting.
This will change the surplus caustic lime
to sulphate of lime or gypsum. The
acid should be about one-half chamber
acid and one-half water. This should be
repeated before painting, and a coat of
raw linseed oil flowed on freely should
be given for the first coat. While this
cannot be always guaranteed as effectual
for making the paint hold, it is the best
method our correspondent has heard of
for the purpose, and is worth trying when
it is absolutely necessary to paint over
fresh cement.
Damp Walls, Coating For.
—Thirty
parts of tin are dissolved in 40 parts of
hydrochloric acid, and 30 parts of sal
ammoniac are added. A powder composed
of freestone, 50 parts; zinc oxide,
20 parts; pounded glass, 15 parts; powdered
marble, 10 parts; and calcined
magnesia, 5 parts, is prepared, and made
into a paste with the liquid above mentioned.
Coloring matter may be added.
The composition may be used as a
damp-proof coating for walls, or for
repairing stonework, or for molding
statues or ornaments.
Facade Paint.
—For this zinc oxide is
especially adapted, prepared with size
or casein. Any desired earth colors may
also be added. The surfaces are coated
3 times with this mass. After the third
application is dry, put on a single coating
of zinc chloride solution of 30° Bé.
to which 3 per cent borax is added.This coating is very solid, can be
washed, and is not injured by hydrogen
sulphide.
Hard-finished Walls.
—The treatment
for hard-finished walls which are to be
painted in flat colors is to prime with a
thin coat of lead and oil well brushed
into the wall. Next put on a thin coat of
glue size; next a coat mixed with 1/3 oil
and 2/3 turpentine; next a coat of flat
paint mixed with turpentine. If you use
any dry pigment mix it stiff in oil and
thin with turps. If in either case the
paint dries too fast, and is liable to show
laps, put a little glycerine in, to retard
the drying.Paints, Waterproof And Weatherproof:
See also Fireproof Paint.
The following are claimed to be both
waterproof and weatherproof:
I.—In 50 parts, by weight, of spirit
of 96 per cent, dissolve 16 parts, by
weight, of shellac, orange, finely powdered;
3 parts, by weight, of silver lake,
finely powdered; and 0.6 parts, by
weight, of gamboge, finely powdered.
This paint may be employed without admixture
of any siccative, and is excellently
adapted for painting objects which
are exposed to the inclemencies of the
weather, as it is perfectly weatherproof.
II.—Mix glue water with zinc oxide
(zinc white) and paint the respective
object with this mixture. When this is
dry (after about 2 hours) it is followed
up with a coating of glue water and zinc
chloride in a highly diluted state. Zinc
oxide enters into a chemical combination
with zinc chloride, which acquires the
hardness of glass and a mirror-like
bright surface. Any desired colors can
be prepared with the glue water (size)
and are practically imperishable. This
zinc coating is very durable, dries quickly,
and is 50 per cent cheaper than oil
paint.
Water- and Acid-resisting Paint.
—Caoutchouc
is melted with colophony at
a low temperature, after the caoutchouc
has been dried in a drying closet (stove)
at 158° to 176° F., until no more considerable
increase in weight is perceptible,
while the colophony has completely
lost its moisture by repeated melting.
The raw products thus prepared will
readily melt upon slight heating. To
the melted colophony and caoutchouc
add in a hot liquid state zinc white or any
similar pigment. Thin with a varnish
consisting of 50 parts of perfectly anhydrous
colophony, 40 parts of absolute
alcohol, and 40 parts of benzine. The
whole syrupy mass is worked through in
a paint mill to obtain a uniform product,
at which operation more or less colophony
varnish is added according to the
desired consistency.
Water- and Air-proof Paint.
—An air-proof
and waterproof paint, the subject
of a recent French patent, is a compound
of 30 parts, by weight, acetone; 100
parts acetic ether; 50 parts sulphuric
ether; 100 parts camphor; 50 parts gum
lac; 200 parts cotton; 100 parts paper {500}
(dissolved in sulphuric acid); 100 parts
mastic in drops. These proportions
may fluctuate according to need. The
paper is reduced well and dissolved without
heat with sufficient sulphuric ether;
the cotton is dissolved in the acetone and
the whole is mixed together with the
other ingredients and stirred well. The
application is performed as with any
other varnish. The coating is said not
to crack or shrink and to be particularly
useful as a protection against moisture
for all stuffs.Paints For Wood:
See also Wood.
Floor Coating.
—A new paint for floors,
especially those of soft wood: Mix together
2.2 pounds joiners’ glue; a little
over 1 ounce powdered bichromate of
potash; 3 1/2 ounces aniline brown; and
10 1/2 quarts water in a tin vessel. After
6 hours have elapsed (when the glue is
completely soaked), heat gradually to
the boiling point. The coating becomes
perfectly water-tight after 2 or 3 days; it
is not opaque, as the earthy body is lacking.
The glue causes the wood fibers
to be firmly united. It becomes insoluble
by the addition of bichromate
of potash, under the influence of light.
Without this admixture a simple glue
coat has formerly not been found satisfactory,
as it dissolves if cleaned with
water.
Durable House Paint.
—I.—New
houses should be primed once with pure
linseed oil, then painted with a thin
paint from white lead and chalk, and
thus gradually covered. The last coat
is prepared of well-boiled varnish, white
lead, and chalk. The chalk has the
mission to moderate the saponification
of the linseed oil by the white lead.
Mixing colors such as ocher and black,
which take up plenty of oil, materially
assist in producing a durable covering.II.—Prime with zinc white and let
this be succeeded by a coating with zinc
chloride in glue water (size). The zinc
oxide forms with the zinc chloride an
oxy-chloride of great hardness and
glossy surface. By admixture of pigments
any desired shade may be produced.
The zinc coating is indestructible,
dries quickly, does not peel, is free
from the smell of fresh oil paint, and
more than 5 per cent cheaper.
Ivory Coating For Smooth, Light Wood.
—In
order to cover the articles, which
may be flat or round, with this coating,
they must first be polished quite smooth
and clean; then they are coated with
thin, hot, white glue. When the coat is
thoroughly dry, the glue is rubbed off
again with fine glass paper. The mass
is prepared as follows: Take 3 pounds
(more or less, according to the number
of articles) of the purest and best collodion;
grind upon a clean grinding stone
twice the quantity that can be taken up
with the point of a knife of Krems white,
with enough good pale linseed oil as is
necessary to grind the white smooth and
fine. Take a clean bottle, into which
one-half of the collodion is poured; to
this add the ground white, which can be
removed clean from the stone by means
of a good spatula and put in the bottle.
Add about 100 drops of linseed oil, and
shake the mass till it looks like milk.Now painting with this milky substance
may be commenced, using a fine
hair pencil of excellent quality. The
pencil is not dipped in the large bottle;
but a glass is kept at hand with an opening
of about 1 inch, so as to be able to
immerse the pencil quickly. The substance
is not flowing like the alcohol
lacquers, for which reason it may be put
on thick, for the ether, chiefly constituting
the mass, evaporates at once and
leaves but a very thin film which becomes
noticeable only after about 10 such
applications have been made. Shake
the bottle well each time before filling
the small glass, as the heavy Krems
white is very apt to sink to the bottom of
the bottle. If it is observed that the
substance becomes too thick, which may
easily occur on account of the evaporation,
a part of the remaining ether is
added, to which in turn 30 to 40 drops
of oil are added, shaking it till the oil
appears to be completely dissolved.
The operator must put on the mass
in quick succession and rather thick.
After about 10 coats have been applied
the work is allowed to rest several hours;
then 3 or 4 coats of pure collodion, to
which likewise several drops of oil have
been added, are given. Another pause
of several hours having been allowed to
intervene, application of the mass is once
more begun.
When it is noticed that a layer of the
thickness of paper has formed, the articles,
after drying thoroughly, should be
softly rubbed off with very fine glass
paper, after which they require to be
wiped off well with a clean linen rag, so
that no dust remains. Then coating is
continued till the work seems serviceable.
A few applications of pure collodion
should be made, and when this has
become perfectly hard, after a few
hours, it can be rubbed down with a rag, {501}
tripoli, and oil, and polished by hand,
like horn or ivory. This work can be
done only in a room which is entirely free
from dust. The greatest cleanliness
must be observed.
Miscellaneous Recipes, Paints, Etc.:
Bathtub Paint.
—Take white keg lead,
tint to any desired color and then add,
say, 1/8 boiled oil (pure linseed) to 7/8 hard
drying durable body varnish. Clean the
surface of the tub thoroughly before applying
the paint. Benzine or lime wash
are good cleaning agents. Coat up until
a satisfactorily strong, pure color is
reached. This will give good gloss and
will also wear durably.
Coating For Name Plates.
—A durable
coating for name plates in nurseries is
produced as follows: Take a woolen rag,
saturate it with joiners’ polish, lay it
into a linen one, and rub the wooden surface
with this for some time. Rub down
with sandpaper and it can be written on
almost like paper. When all is dry,
coat with dammar lacquer for better
protection. If the wood is to receive a
color it is placed in the woolen rag before
rubbing down, in this case chrome
yellow.
To Keep Flies From Fresh Paint.
—For
the purpose of keeping flies and other
insects away from freshly painted surfaces
mix a little bay oil (laurel oil) with
the oil paint, or place a receptacle containing
same in the vicinity of the painted
objects. The pungent odor keeps off
the flies.
Heat-indicating Paint.
—A heat-indicating
paint composed of a double iodide
of copper and mercury was first discovered
years ago by a German physicist.
At ordinary temperatures the
paint is red, but when heated to 206° F.
it turns black. Paper painted with this
composition and warmed at a stove exhibits
the change in a few seconds. A
yellow double iodide of silver and mercury
is even more sensitive to heat,
changing from yellow to dark red.
To Keep Liquid Paint In Workable Condition.
—To prevent liquid paint
which, for convenience sake, is kept in
small quantities and flat receptacles,
from evaporating and drying, give the
vessels such a shape that they can be
placed one on top of the other without
danger of falling over, and provide the
under side with a porous mass—felt or
very porous clay, etc.—which, if
moistened, will retain the water for a long
time. Thus, in placing the dishes one
on top of the other, a moist atmosphere is
created around them, which will inhibit
evaporation and drying of the paint. A
similar idea consists in producing covers
with a tight outside and porous inside,
for the purpose of covering up, during
intermission in the work, clay models
and like objects which it is desired to
keep soft. In order to avoid the formation
of fungous growth on the constantly
wet bottom, it may be saturated with
non-volatile disinfectants, or with volatile
ones if their vapors are calculated to
act upon the objects kept underneath the
cover. If the cover is used to cover up
oil paints, it is moistened on the inside
with volatile oil, such as oil of turpentine,
oil of lavender, or with alcohol.
Peeling Of Paints.
—For the prevention
of peeling of new coatings on old oil
paintings or lakes, the latter should be
rubbed with roughly ground pumice
stone, wet by means of felt rags, and to
the first new coat there should be added
fine spirit in the proportion of about
1/10 of the thinning necessary for stirring
(turpentine, oil, etc.). This paint
dries well and has given good results,
even in the most difficult cases. The
subsequent coatings are put on with the
customary paint. Fat oil glazes for
graining are likewise mixed with spirit,
whereby the cracking of the varnish
coating is usually entirely obviated.
Polychroming Of Figures.
—This paint
consists of white wax, 1 part, and powdered
mastic, 1 part, melted together
upon the water bath and mixed with
rectified turpentine. The colors to be
used are first ground stiffly in turpentine
on the grinding slab, and worked into
consistency with the above solution.
Priming Coat For Water Spots.
—A very
simple way to remove rain spots, or
such caused by water soaking through
ceilings, has been employed with good
results. Take unslaked white lime,
dilute with alcohol, and paint the spots
with it. When the spots are dry—which
ensues quickly, as the alcohol evaporates
and the lime forms a sort of insulating
layer—one can proceed painting with
size color, and the spots will not show
through again.PAINT FOR PROTECTING CEMENT AGAINST ACID: See Acid-Proofing.
PAINT, GREASE: See Cosmetics. {502}
PAINT REMOVERS: See Cleaning Compounds.
PALLADIUM ALLOYS: See Alloys.
PALLADIUMIZING: See Plating.
PALMS, THEIR CARE.
Instead of washing the leaves of palms
with water, many florists employ a mixture
of milk and water, the object being
to prevent the formation of disfiguring
brown stains.
PAPER
Paper Pads
(see also Adhesives, under
Glue).
| I.— |
Glue |
3 1/2 ounces |
| Glycerine |
8 ounces |
| Water, a sufficient quantity. |
Pour upon the glue more than enough
water to cover it and let stand for several
hours, then decant the greater portion of
the water; apply heat until the glue is
dissolved, and add the glycerine. If the
mixture is too thick, add more water.
| II.— |
Glue |
6 ounces |
| Alum |
30 grains |
| Acetic acid |
1/2 ounce |
| Alcohol |
1 1/2 ounces |
| Water |
6 1/2 ounces |
Mix all but the alcohol, digest on a
water bath till the glue is dissolved, allow
to cool, and add the alcohol.
Papier Maché.
—The following are the
ingredients necessary to make a lump of
papier maché a little larger than an ordinary
baseball and weighing 17 ounces:Wet paper pulp, dry paper, 1 ounce;
water, 3 ounces; 4 ounces (avoirdupois);
dry plaster Paris, 8 ounces (avoirdupois);
hot glue, 1/2 gill, or 4 1/2 tablespoonfuls.
While the paper pulp is being prepared,
melt some best Irish glue in the
glue pot and make it of the same thickness
and general consistency as that used
by cabinet makers. On taking the paper
pulp from the water squeeze it gently,
but do not try to dry it. Put in a
bowl, add about 3 tablespoonfuls of
the hot glue, and stir the mass up into a
soft and very sticky paste. Add the
plaster of Paris and mix thoroughly.
By the time about 3 ounces of the
plaster have been used, the mass is so dry
and thick that it can hardly be worked.
Add the remainder of the glue, work
it up again until it becomes sticky once
more, and then add the remainder of
the plaster. Squeeze it vigorously through
the fingers to thoroughly mix the mass,
and work it until free from lumps,
finely kneaded and sticky enough to adhere
to the surface of a planed board.
If it is too dry to stick fast add a few
drops of either glue or water, and work
it up again. When the paper pulp is
poor and the maché is inclined to be
lumpy, lay the mass upon a smooth
board, take a hammer and pound it hard
to grind it up fine.
If the papier maché is not sticky enough
to adhere firmly to whatever it is rubbed
upon, it is a failure, and requires more
glue. In using it the mass should be
kept in a lump and used as soon as
possible after making. Keep the surface
of the lump moist by means of a wet
cloth laid over it, for if you do not, the
surface will dry rapidly. If it is to be
kept overnight, or longer, wrap it up in
several thicknesses of wet cotton cloth,
and put under an inverted bowl. If it
is desired to keep a lump for a week, to
use daily, add a few drops of glycerine
when making, so that it will dry more
slowly.
The papier maché made according to
this formula has the following qualities:
When tested by rubbing between the
thumb and finger, it was sticky and covered
the thumb with a fine coating.
(Had it left the thumb clean, it would
have been because it contained too
much water.) When rubbed upon a
pane of glass it sticks tightly and dries
hard in 3 hours without cracking, and
can only be removed with a knife.
When spread in a layer as thin as writing
paper it dries in half an hour. A mass
actually used dried hard enough to coat
with wax in 18 hours, and, without
cracking, became as hard as wood; yet
a similar quantity wrapped in a wet cloth
and placed under an inverted bowl kept
soft and fit for use for an entire week.
Parchment Paper.
—I.—Dip white unsized
paper for half a minute in strong
sulphuric acid, specific gravity, 1.842,
and afterwards in water containing a
little ammonia.II.—Plunge unsized paper for a few
seconds into sulphuric acid diluted with
half to a quarter its bulk of water (this
solution being of the same temperature
as the air), and afterwards wash with
weak ammonia.
Razor Paper.
—I.—Smooth unsized
paper, one of the surfaces of which,
while in a slightly damp state, has been
rubbed over with a mixture of calcined
peroxide of iron and emery, both in impalpable
powder. It is cut up into {503}
pieces (about 5 x 3 inches), and sold in
packets. Used to wipe the razor on,
which thus does not require stropping.II.—From emery and quartz (both in
impalpable powder), and paper pulp
(estimated in the dry state), equal parts,
made into sheets of the thickness of
drawing paper, by the ordinary process.
For use, a piece is pasted on the strop
and moistened with a little oil.
Safety Paper.
—White paper pulp
mixed with an equal quantity of pulp
tinged with any stain easily affected by
chlorine, acids, alkalies, etc., and made
into sheets as usual, serves as a safety
paper on which to write checks or the
like. Any attempt to wash out the writing
affects the whole surface, showing
plainly that it has been tampered with.
Tracing Paper.
—Open a quire of
smooth, unsized white paper, and place
it flat upon a table. Apply, with a clean
sash tool to the upper surface of the first
sheet, a coat of varnish made of equal
parts of Canada balsam and oil of turpentine,
and hang the prepared sheet
across the line to dry; repeat the operation
on fresh sheets until the proper
quantity is finished. If not sufficiently
transparent, a second coat of varnish
may be applied as soon as the first has
become quite dry.
Strengthened Filter Paper.
—When ordinary
filter paper is dipped into nitric
acid (specific gravity, 1.42), thoroughly
washed and dried, it becomes a tissue of
remarkable properties, and one that deserves
to be better known by chemists
and pharmacists. It shrinks somewhat
in size and in weight, and gives, on burning,
a diminished ash. It yields no nitrogen,
nor does it in the slightest manner
affect liquids. It remains perfectly
pervious to liquids, its filtering properties
being in no wise affected, which, it is
needless to say, is very different from
the behavior of the same paper “parchmented”
by sulphuric acid. It is as
supple as a rag, yet may be very roughly
handled, even when wet, without tearing
or giving way. These qualities make it
very valuable for use in filtration under
pressure or exhaust. It fits closely to the
funnel, upon which it may be used direct,
without any supports, and it thus prevents
undue access of air. As to strength,
it is increased upward of 10 times. A
strip of ordinary white Swedish paper,
1/5 of an inch wide, will sustain a load of
from 1/2 to 3/4 of a pound avoirdupois, according
to the quality of the paper. A
similar strip of the toughened paper
broke, in 3 trials, with 5 pounds, 7 ounces,
and 3 drachms; 5 pounds, 4 ounces, and
36 grains; and 5 pounds, 10 ounces respectively.
These are facts that deserve
to be better known than they seem to be
to the profession at large.
Blotting Paper.
—A new blotting paper
which will completely remove wet as
well as dry ink spots, after moistening the
paper with water, is produced as follows:
Dissolve 100 parts of oxalic acid in 400
parts of alcohol, and immerse porous
white paper in this solution until it is
completely saturated. Next hang the
sheets up separately to dry over threads.
Such paper affords great advantages,
but in its characteristic application is
serviceable for ferric inks only, while
aniline ink spots cannot be removed with
it, after drying.
Carbon Paper.
—Many copying papers
act by virtue of a detachable pigment,
which, when the pigmented paper is
placed between two sheets of white paper,
and when the uppermost paper is written
on, transfers its pigment to the lower
white sheet along lines which correspond
to those traced on the upper paper, and
therefore gives an exact copy of them on
the lower paper.The pigments used are fine soot or
ivory black, indigo carmine, ultramarine,
and Paris blue, or mixtures of them.
The pigment is intimately mixed with
grain soap, and then rubbed on to thin
but strong paper with a stiff brush.
Fatty oils, such as linseed or castor oil,
may be used, but the grain soap is preferable.
Graphite is frequently used
for black copying paper. It is rubbed
into the paper with a cotton pad until a
uniform light-gray color results. All
superfluous graphite is then carefully
brushed off.
It is sometimes desired to make a copying
paper which will produce at the same
time a positive copy, which is not required
to be reproduced, and a negative or reversed
copy from which a number of
direct copies can be taken. Such paper
is covered on one side with a manifolding
composition, and on the other with a
simple copying composition, and is used
between 2 sheets of paper with the manifolding
side undermost.
The manifolding composition is made
by mixing 5 ounces of printers’ ink with
40 of spirits of turpentine, and then mixing
it with a fused mixture of 40 ounces
of tallow and 5 ounces of stearine. When
the mass is homogeneous, 30 ounces of
the finest powdered protoxide of iron,
first mixed with 15 ounces of pyrogallic {504}
acid and 5 ounces of gallic acid, are
stirred in till a perfect mixture is obtained.
This mass will give at least 50
copies on damp paper in the ordinary
way. The copying composition for the
other side of the prepared paper consists
of the following ingredients:
| Printers’ ink |
5 parts |
| Spirits of turpentine |
40 parts |
| Fused tallow |
30 parts |
| Fused wax |
3 parts |
| Fused rosin |
2 parts |
| Soot |
20 parts |
It goes without saying that rollers or
stones or other hard materials may be
used for the purpose under consideration
as well as paper. The manifolding
mass may be made blue with indigotin,
red with magenta, or violet with methyl
violet, adding 30 ounces of the chosen
dye to the above quantities of pigment.
If, however, they are used, the oxide of
iron and gallic acids must be replaced by
20 ounces of carbonate of magnesia.
Celloidin Paper.
—Ordinary polished
celluloid and celloidin paper are difficult
to write upon with pen and ink.
If, however, the face is rubbed over with
a chalk crayon, and the dust wiped off
with a clean rag, writing becomes easy.
Cloth Paper.
—This is prepared by
covering gauze, calico, canvas, etc., with
a surface of paper pulp in a Foudrinier
machine, and then finishing the compound
sheet in a nearly similar manner
to that adopted for ordinary paper.
Drawing Paper.
—The blue drawing
paper of commerce, which is frequently
employed for technical drawings, is not
very durable. For the production of a
serviceable and strong drawing paper,
the following process is recommended.
Mix a solution of
| Gum arabic |
2 parts |
| Ammonia iron citrate |
3 parts |
| Tartaric acid |
2 parts |
| Distilled water |
20 parts |
After still adding 4 parts of solution of
ammonia with a solution of
| Potassium ferricyanide |
2.5 parts |
| Distilled water |
10.0 parts |
allow the mixture to stand in the dark
half an hour. Apply the preparation on
the paper by means of a soft brush, in artificial
light, and dry in the dark. Next,
expose the paper to light until it appears
dark violet, place in water for 10 seconds,
air a short time, wash with water, and
finally dip in a solution of
| Eau de javelle |
50 parts |
| Distilled water |
1,000 parts |
until it turns dark blue.
Filter Paper.
—This process consists in
dipping the paper in nitric acid of 1.433
specific gravity, subsequently washing it
well and drying it. The paper thereby
acquires advantageous qualities. It
shrinks a little and loses in weight, while
on burning only a small quantity of ash
remains. It possesses no traces of nitrogen
and does not in any way attack the
liquid to be filtered. Withal, this paper
remains perfectly pervious for the most
varying liquids, and its filtering capacity
is in no wise impaired. It is difficult to
tear, and still elastic and flexible like
linen. It clings completely to the funnel.
In general it may be said that the
strength of the filtering paper thus
treated increases 100 per cent.
Fireproof Papers.
—I.—Ammonium
sulphate, 8 parts, by weight; boracic
acid, 3 parts; borax, 2 parts; water, 100
parts. The temperature should be about
122° F.II.—For paper, either printed or unprinted,
bills of exchange, deeds, books,
etc., the following solution is recommended:
Ammonium sulphate, 8 parts;
boracic acid, 3 parts; sodium borate,
1.7 parts; water, 10,000 parts. The solution
is heated to 122° F., and may be
used when the paper is manufactured.
As soon as the paper leaves the machine
it is passed through this solution, then
rolled over a warm cylinder and dried.
If printed or in sheets, it is simply immersed
in the solution, at a temperature
of 122° F., and spread out to dry, finally
pressed to restore the luster.
Hydrographic Paper.
—This is paper
which may be written on with simple
water or with some colorless liquid having
the appearance of water.I.—A mixture of nut galls, 4 parts, and
calcined sulphate of iron, 1 part (both
perfectly dry and reduced to very fine
powder), is rubbed over the surface of
the paper, and is then forced into its
pores by powerful pressure, after which
the loose portion is brushed off. The
writing shows black when a pen dipped
in water is used.
II.—A mixture of persulphate of iron
and ferrocyanide of potassium may be
employed as in formula I. This writes
blue.
Iridescent Paper.
—Sal ammoniac and
sulphate of indigo, of each 1 part;
sulphate of iron, 5 parts; nut galls, 8
parts; gum arabic, 1/8 part. Boil them in
water, and expose the paper washed
with the liquid to (the fumes of) ammonia. {505}
Lithographic Paper.
—I.—Starch, 6
ounces; gum arabic, 2 ounces; alum, 1
ounce. Make a strong solution of each
separately, in hot water, mix, strain
through gauze, and apply it while still
warm to one side of leaves of paper, with
a clean painting brush or sponge; a second
and a third coat must be given as
the preceding one becomes dry. The
paper must be, lastly, pressed, to make
it smooth.II.—Give the paper 3 coats of thin
size, 1 coat of good white starch, and 1
coat of a solution of gamboge in water,
the whole to be applied cold, with a
sponge, and each coat to be allowed to
dry before the other is applied. The
solutions should be freshly made.
Lithographic paper is written on with
lithographic ink. The writing is transferred
simply by moistening the back of
the paper, placing it evenly on the stone,
and then applying pressure. A reversed
copy is obtained, which, when printed
from, yields corrected copies resembling
the original writing or drawing. In this
way the necessity of executing the writing
or drawing in a reversed direction is
obviated.
Marbling Paper For Books.
Provide a wooden trough 2 inches deep
and the length and width of any desired
sheet; boil in a brass or copper pan a
quantity of linseed and water until a
thick mucilage is formed; strain it into
a trough, and let cool; then grind on a
marble slab any of the following colors
in small beer:
For Blue.—Prussian blue or indigo.
Red.—Rose pink, vermilion, or drop
lake.
Yellow.—King’s yellow, yellow ocher,
etc.
White.—Flake white.
Black.—Burnt ivory or lampblack.
Brown.—Umber, burnt; terra di
sienna, burnt.
Black mixed with yellow or red also
makes brown.
Green.—Blue and yellow mixed.
Orange.—Red and yellow mixed.
Purple.—Red and blue mixed.
For each color have two cups, one for
the color after grinding, the other to mix
it with ox gall, which must be used to
thin the colors at discretion. If too
much gall is used, the colors will spread.
When they keep their place on the surface
of the trough, when moved with a
quill, they are fit for use. All things in
readiness, the colors are successively
sprinkled on the surface of the mucilage
in the trough with a brush, and are waved
or drawn about with a quill or a stick,
according to taste. When the design is
just formed, the book, tied tightly between
cutting boards of the same size, is
lightly pressed with its edge on the surface
of the liquid pattern, and then withdrawn
and dried. The covers may be
marbled in the same way, only letting the
liquid colors run over them. In marbling
paper the sides of the paper are gently
applied to the colors in the trough.
The film of color in the trough may be as
thin as possible, and if any remains after
the marbling it may be taken off by applying
paper to it before you prepare
for marbling again. To diversify the
effects, colors are often mixed with a
little sweet oil before sprinkling them on,
by which means a light halo or circle
appears around each spot.
Waterproof Papers.
I.—Wall papers may be easily rendered
washable, either before or after
they are hung, by preparing them in the
following manner: Dissolve 2 parts of
borax and 2 parts of shellac in 24 parts
of water, and strain through a fine cloth.
With a brush or a sponge apply this to
the surface of the paper, and when it is
dry, polish it to a nigh gloss with a soft
brush. Thus treated the paper may be
washed without fear of removing the
colors or even smearing or blurring
them.
II.—This is recommended for drawing
paper. Any kind of paper is lightly primed
with glue or a suitable binder, to which a
finely powdered inorganic body, such as
zinc white, chalk, lime, or heavy spar, as
well as the desired coloring matter for the
paper, are added. Next the paper thus
treated is coated with soluble glass—silicate
of potash or of soda—to which
small amounts of magnesia have been
admixed, or else it is dipped into this
mixture, and dried for about 10 days in
a temperature of 77° F. Paper thus
prepared can be written or drawn upon
with lead pencil, chalk, colored crayons,
charcoal, India ink, and lithographic
crayon, and the writing or drawing may
be washed off 20 or more times, entirely
or partly, without changing the paper
materially. It offers the convenience
that anything may be readily and quickly
removed with a moist sponge and immediately
corrected, since the washed places
can be worked on again at once.