US1895765A - Artificial production of fog - Google Patents

Artificial production of fog Download PDF

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Publication number
US1895765A
US1895765A US309133A US30913328A US1895765A US 1895765 A US1895765 A US 1895765A US 309133 A US309133 A US 309133A US 30913328 A US30913328 A US 30913328A US 1895765 A US1895765 A US 1895765A
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fog
acid
artificial production
producing
gas
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US309133A
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Muller Ulrich
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41HARMOUR; ARMOURED TURRETS; ARMOURED OR ARMED VEHICLES; MEANS OF ATTACK OR DEFENCE, e.g. CAMOUFLAGE, IN GENERAL
    • F41H9/00Equipment for attack or defence by spreading flame, gas or smoke or leurres; Chemical warfare equipment
    • F41H9/06Apparatus for generating artificial fog or smoke screens

Description

Jain. 31, 1933.
U. MULLER ARTIFICIAL PRODUCTION OF FOG Filed Sept. 28; 1928 Patented Jan. 31, 1933 fiAFENT ULRICH MTTLLER, F KIEL, GERMANY ARTIFICIAL PRODUCTION OF FOG Application filed September 28, I928, Serial No. 309,133, and in Germany October 18, 1927.
The present invention relates to the artificial production of fog.
For the artificial production of fog, the atomization or spraying of the fog-forming substances through special nozzles under pressure has been practiced with great advantage. The pressure employed for this purpose has heretofore been supplied by compressed air or other gas. This practice,
however, has several disadvantages which hinder the general use or adoption of such fog-spraying equipment. More particularly, the fog apparatus becomes comparatively heavy through the necessity of carrying a flask of compressed gas, and furthermore such apparatus is dependent upon a filling station with special mechanical equipment. The conveyance of a steel flask containing gas under high pressure also represents a source of some danger, particularly in field operations.
The present invention contemplates the production of the operating pressure only at the time of placing the apparatus in use, by
taking advantage of the dehydrating property of the fog-producing acids (for example, sulphur trioxide dissolved in chlorosulphonic acid). It is known that formic acid or oxalic acid can be dehydrated by interaction with sulphuric acid in a heated state, and carbon monoxide or a mixture of carbon monoxide and carbonic acid produced. It was not heretofore known that this reaction occurred with a solution of sulphuric anhydride in chlorosulphonic acid in the unheated state. These materials decompose under the influence of a strong dehydrating agent into gaseous bodies without forming a solid residue. In this action, carbon monoxide and carbonic acid are produced, thus from oxalic acid equal volumes of the two, or from each 90 .grams of dry oxalic acid there will be produced 44 liters of this mixture. In the decomposition of dry formic acid, 22
45 liters of pure carbon monoxide are produced from 46 grams of the formic acid.
The accompanying drawing illustrates diagrammatically a conventional form of apparatus in which the process may be per- 50 formed.
The apparatus illustrated can be employed as stationary equipment or it may serve as a buoy. It comprises a completely closed con-' tainer a, the lower portion 72 of which is supplied with a fog-producing acid. The opening 0, which may be closed by a screw 'cap, serves for filling the container. From the space Z) rises a pipe 6, which is closed by the valve (Z, and carries on its top an atomizing nozzle f. Delivering into the upper portion 9 of the container a, is a reservoir 71, the discharge from which is controlled by a shutofi' valve h, the reservoir 2' having at the top an opening which is closed by a screw cap. Reservoir i is supplied with a suitable organic compound indicated at Z.
When the valve 72, is opened, the organic compound Z (for example, oxalic acid) flows into the fog-producing acid at b (for example sulphur trioxide dissolved in cl1l0rosulphonic acid) and is at once decomposed with the formation of the desired gas pressure. The gas thus produced accumulates in the space g and upon opening of the valve d, expels the fog-producing acid in the direction of the arrow through the riser pipe 6 from which it is discharged through the nozzle 7 in an atomized condition as a result of which it produces the fog.
I claim The method of creating a pressure in a fog-producing apparatus for the purpose of expelling a fog-producing solution of sulphur trioxide in chlorosulphonic acid which comprises introducing a carboxylic acid dissociable by dehydration into the said solution to generate a gas without a solid residue.
In testimony whereof I aflix my signature.
ULRICH MIJLLER.
US309133A 1927-10-18 1928-09-28 Artificial production of fog Expired - Lifetime US1895765A (en)

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DE1895765X 1927-10-18

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2437963A (en) * 1943-03-24 1948-03-16 Gen Electric Method and apparatus for producing aerosols
US4990290A (en) * 1989-05-08 1991-02-05 Gill James G Diffusion fogger
US5057243A (en) * 1988-06-08 1991-10-15 Pro Efx, Inc. Aerosol diffusion fogger
US5240648A (en) * 1992-02-14 1993-08-31 Gill James G Compact fogger

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2437963A (en) * 1943-03-24 1948-03-16 Gen Electric Method and apparatus for producing aerosols
US5057243A (en) * 1988-06-08 1991-10-15 Pro Efx, Inc. Aerosol diffusion fogger
US4990290A (en) * 1989-05-08 1991-02-05 Gill James G Diffusion fogger
US5240648A (en) * 1992-02-14 1993-08-31 Gill James G Compact fogger

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