US146369A - Improvement in treating gases and vapors from offal - Google Patents

Improvement in treating gases and vapors from offal Download PDF

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US146369A
US146369A US146369DA US146369A US 146369 A US146369 A US 146369A US 146369D A US146369D A US 146369DA US 146369 A US146369 A US 146369A
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gases
steam
fire
boiler
heat
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G5/00Incineration of waste; Incinerator constructions; Details, accessories or control therefor
    • F23G5/34Incineration of waste; Incinerator constructions; Details, accessories or control therefor the waste being burnt in a pit or arranged in a heap for combustion

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  • the cylinder and its wet contents absorb heat so rapidly that the gases and steam escaping undecomposed through the fires and fire-places are, by contact with the cylinder, cooled below the temperature required for deodorization.
  • combustion-chamber containing a fire specially adapted therefor, and which may be devoted wholly to this purpose.
  • This chamber is built of refractory materials, preferably fire-brick,
  • a chimney of sufficient height and capacity to'create a good draft, as shown in the drawing in Fig. l; but it may be constructed separate from the chimney and connected therewith by a flue.
  • the chamber to be in properoperating condition, should be at a bright-red or white heat. It may be quickly heated by fire placed on the grate shown at P, Fig. 1. Instead of the perforated roof, jutting shelves, as shown at Q in Fig. 2, may be arranged at a proper distance above thefire, to retard sufiiciently the escape of the gases and to radiate heat upon them.
  • Adjustable dampers or valves, or other substitutes may also be used for this purpose-such, for instance, as a considerable narrowing of the exit, as shown at S, Fig. 3.
  • the shape and size of the chamber may be adapted to its location and the amountof work it is intended to perform.
  • FIG. 4- Another design for the deodorization of offensive gases and steam is to make them pass through a horizontal or inclined flue over a tire, as shown at Fig. 4-.
  • my plan is to have a fireplace, combustion-chamber, or flue for the ofiensive steam and gases, which may be devoted solely to their decomposition and deodori zation, and which shall be constructed of such shape and material that when heated there shall be, from all directions toward the central axis of the structure, radiation of heat sufficient to insure the desired results, while the steam and gases to be treated shall be retarded or retained therein long enough to receive the fulleflects of the heat.
  • I may find it of advantage to place a boiler over the roof or neck or at the exit end of the cornbustion-chamber, to'utilize the escaping heat, or the heat and flame may be made useful for drying animal matter; but in no case do I apply the escaping heat and flame to any purpose until the oifensive gases and steam are deodorized.
  • Another method designed by me is to pass offensive steam and gases under a boiler, first building over the boiler fire-place a brick arch nearly in contact with the boiler-bottom, and extending, say, from four to ten feet, more or less, along its length, as shown in Fig. 5,where T is the boiler, U the arch.
  • This arch prevents the contact of the gases and steam introduced into the fire-box with the heat-absorbin g boilersurface, and, becoming heated by the fire, presents a powerful heatradiating surface sufficient for the deodorization of considerable volumes of offensive gases. It also, by its superior radiating effects, causes so complete a com bustion of the solid fuel placed on the grate that no smoke escapes up the stack.
  • steam and gases 7 to be treated may be introduced either under or over the fires.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Processing Of Solid Wastes (AREA)

Description

I coils by oxidation.
'. fensive steam and gases from drying-cylin- JACOB J. sronnn, or nosron, MASSACHUSETTS.
IMPROVEMENT |N TREATING GASES AND VAPOR-S FROM OFFAL, ac.
Specification forming part of Letters Patent No. 146,369, dated January 13, 1874; application filed December 11, 1873.
To all whom it may concern:
Be it known that I, JAoon J. Sronnn, of
" Boston, in the county of Suffolk and State of Massachusetts," have invented a new and useful Improvement for Deodorizing Offensive Gases and 'Steam, of which the following is a specification:
of the gases and steam effected. 'The fires are rarely of sufficient capacity for the purpose,
and the flame chamber or space between the fire-surface and boiler is too small for the steam and gases, which require ampleroom for complete decomposition and deoclorization, while the boiler-surface absorbs heat so rapidly as to cool below the required heat that portion of them that passes through the fire unaffected, excepting as to temperature.
Another method designed to deodorize these gases and steam is to pass them through heated metallic tubular coils, and thence into a fire or This method is attended with the serious disadvantage of rapid destruction of the In some instances the ofders-cylinders used for drying animal matter for conversion into fertilizers-are passed into the boiler-fires which generate steam for the working of the cylinder, which is objectionable i for reasons above given, while in other cases the steam and gases are conducted into the fires which heat the cylinder and its contents.
' i In these last instances, also, the cylinder and its wet contents absorb heat so rapidly that the gases and steam escaping undecomposed through the fires and fire-places are, by contact with the cylinder, cooled below the temperature required for deodorization.
"Lack of room for the combustion of the steam and gases, and of time for thorough work or, rather, of sufficiently long and complete exposure to the required temperatureare the invariable causes of failure, in allinstances, to
effect their thorough deodorization. By limiting the volume of escaping oifensive gases and steam to the capacities of the boiler fire or fires under the drying-cylinder, complete de if odorization may be effected; but, in practice,
this rarely, if ever, can be done. To blow off a steam from a renderin g-tank slowly, in a volume not in excess of the decomposing capacity of the boiler-fires, would take so much time as to seriously interfere with the work of the slaughtering or rendering house. i
To regulate theescape of offensive steam and gases from drying-cylinders to the decomposing capacity of the drying-fires requires a (lelicacy of manipulation which'forbids itsibeing termed a practical method, while the process i requires so slow an escape of the gases and steam, and consequent slow drying of the animal matter, as to make it one of doubtful economy.
To insure the economical deodorizat on of offensive gases and steam generated bysteam-i.
ing, boiling, or drying animal matter, and to be able so to treat any large volumes of them that may escape from rendering-tanks or fertilizer-cylinders, an d seeing, too, that the ordinary boiler and drying fires are almost invariably inadequate for the purpose, I have designed a combustion-chamber containing a fire specially adapted therefor, and which may be devoted wholly to this purpose.- This chamber is built of refractory materials, preferably fire-brick,
and the bricks from the base of curve 0 are so laid that interstices-say, of three or four inches square-are left between them all. It is, by preference, made dome-shaped for the better radiation of heat inward and downward. The
heated gases and products of combustion and in the bottom of a chimney of sufficient height and capacity to'create a good draft, as shown in the drawing in Fig. l; but it may be constructed separate from the chimney and connected therewith by a flue. The chamber, to be in properoperating condition, should be at a bright-red or white heat. It may be quickly heated by fire placed on the grate shown at P, Fig. 1. Instead of the perforated roof, jutting shelves, as shown at Q in Fig. 2, may be arranged at a proper distance above thefire, to retard sufiiciently the escape of the gases and to radiate heat upon them. Adjustable dampers or valves, or other substitutes, may also be used for this purpose-such, for instance, as a considerable narrowing of the exit, as shown at S, Fig. 3. The shape and size of the chamber may be adapted to its location and the amountof work it is intended to perform.
Another design for the deodorization of offensive gases and steam is to make them pass through a horizontal or inclined flue over a tire, as shown at Fig. 4-.
It will be seenthat my plan is to have a fireplace, combustion-chamber, or flue for the ofiensive steam and gases, which may be devoted solely to their decomposition and deodori zation, and which shall be constructed of such shape and material that when heated there shall be, from all directions toward the central axis of the structure, radiation of heat sufficient to insure the desired results, while the steam and gases to be treated shall be retarded or retained therein long enough to receive the fulleflects of the heat.
In some instances I may find it of advantage to place a boiler over the roof or neck or at the exit end of the cornbustion-chamber, to'utilize the escaping heat, or the heat and flame may be made useful for drying animal matter; but in no case do I apply the escaping heat and flame to any purpose until the oifensive gases and steam are deodorized.
Another method designed by me is to pass offensive steam and gases under a boiler, first building over the boiler fire-place a brick arch nearly in contact with the boiler-bottom, and extending, say, from four to ten feet, more or less, along its length, as shown in Fig. 5,where T is the boiler, U the arch. This arch prevents the contact of the gases and steam introduced into the fire-box with the heat-absorbin g boilersurface, and, becoming heated by the fire, presents a powerful heatradiating surface sufficient for the deodorization of considerable volumes of offensive gases. It also, by its superior radiating effects, causes so complete a com bustion of the solid fuel placed on the grate that no smoke escapes up the stack.
In all these instances the steam and gases 7 to be treated may be introduced either under or over the fires.
Having thus described my process and ap paratus, what I claim, and desire to secure by Letters Patent, is"- 1. Fire-places, combustion-chambers, or fines provided with arches or radiating roofs and sides, so as to maintain a high temperature in the furnace, for the purpose of decomposing and deodorizing ofl'ensive vapors and gases, as set forth.
2. Fire-places, combustion-chambers, or lines provided with curved walls of refractory ma terial, arranged to radiate toward the central axis of the structure, as described.
3. The combination of an arched furnace with flues leading on one side to apparatus used for treating animal matter, and on the other to a steam-boiler or other furnace, so as to both deodorize and utilize the offensive gases and y'apors, as specified.
JACOB J. sronnn.
Witnesses:
CHARLES M. NrcKERsoN, OSCAR '1. PERRIGO.
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3056467A (en) * 1958-02-21 1962-10-02 Hupp Corp Methods and apparatus for control of combustion products
US4633790A (en) * 1981-09-30 1987-01-06 Meiko Industry Corporation, Ltd. Combustion chamber apparatus and method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3056467A (en) * 1958-02-21 1962-10-02 Hupp Corp Methods and apparatus for control of combustion products
US4633790A (en) * 1981-09-30 1987-01-06 Meiko Industry Corporation, Ltd. Combustion chamber apparatus and method

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