US644806A - Apparatus for manufacturing gas. - Google Patents

Apparatus for manufacturing gas. Download PDF

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US644806A
US644806A US70601699A US1899706016A US644806A US 644806 A US644806 A US 644806A US 70601699 A US70601699 A US 70601699A US 1899706016 A US1899706016 A US 1899706016A US 644806 A US644806 A US 644806A
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gas
pipe
air
valve
superheater
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US70601699A
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Hawley Pettibone
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    • CCHEMISTRY; METALLURGY
    • C10PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
    • C10JPRODUCTION OF PRODUCER GAS, WATER-GAS, SYNTHESIS GAS FROM SOLID CARBONACEOUS MATERIAL, OR MIXTURES CONTAINING THESE GASES; CARBURETTING AIR OR OTHER GASES
    • C10J3/00Production of combustible gases containing carbon monoxide from solid carbonaceous fuels

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  • This invention relates to apparatus for manufacturing water-gas; and one object is to provide for producing an increased yield or volume of water-gas from a given quantityof fuel and to utilize all the producer-gas given 'off from the generator byburning it in superheaters and then superheating both air and steam by passage through such superheaters on their way to the generator.
  • Another object is to provide an improved construction and arrangement of the generator and connected superheaters and certain pipe and valve connection by means of which the body of fuel may be blasted with hot air passed both upward and downward through it and by which superheated steam may be passed both upward and downward through the body'o'f incandescent fuel and the gases passed off both'at top and bottom of the body of fuel at alternate periods.
  • the generator A and the superheaters E and Fare constructed of fire-brick and inclosed in tight iron jackets in the usual manner.
  • the generator is provided with a fuelopening a at the top and with the clean-out openings ct ct at or near the bottom in the usual manner, and such openings are provided with doors :0, w, and 0c.
  • the grate Z2 is preferably constructed of fire-brick arches in a well-known manner and separates the fuel-chamber from the usual ash-pit B.
  • the generator is provided at the topwith a gasoutlet 0 and at the bottom or ash-pit chamber with a gas-outlet D.
  • An air and steam superheater E connects with the upper gasoutlet 0, and a'separate air and steam superheater F connects with the lower gas-outlet D.
  • the superheaters E and F may be constructedin separate shells and each rest on its own foundation, if desired; but they are preferably built in one structure, one above the other, with a thick horizontal partition 9 between them, as shown in the drawing. 7
  • the superheaters may be filled with the usual fire-brick checker-work constructed in a well-known manner; but I preferably construct them with numerous vertical fire-clay partitions forming numerous vertical connected flues, as shown
  • the superheater E is constructed with the fire-clay partitions f, forming the vertical flues e and having, alternately at top and bottom, the connecting-passages e'.
  • the superheater F is constructed in a similar manner with vertical fire-clay partitions f, forming the vertical fiues g and having, alternately at top and bottom, the connecting passages 6.
  • a gas-outlet opening and pipe G connects the discharge side or end of superheater E with the valve-chamber g, and a separate gas outlet and pipe H eonnects the superheater F with the valve-box 71,.
  • the valve-box 77. is
  • valve-box g provided with the usual annular seat and a ball or disk valve K, to which is connected a rod 70, connecting at its upper end to the pivoted lever L.
  • the valve-box g is provided with a similar seat and valve.
  • valve-boxes g and h are surrounded by the Water-tank I, through which water is circulated in practice in a well-known manner.
  • the steam-boiler M is of the Well-known tubularkind and is provided with gas-chambers m and m at the lower and upper end.
  • a gas-take-off pipe T connects the upper gaschamber m with the stack or blow-off pipe T, which is provided at the top with a hinged stopper u.
  • a branch pipe T may connect pipe T with a valve-box and valve U for controlling the flow of water-gas to a holder or place of'im mediate use.
  • the pipe T may dip down into a water-seal box ⁇ V, from which a pipe may lead to a holder or scrubber in'a wellknown manner.
  • Air-blast is supplied to the generator and to the superheaters under pressure by means of the blower O.
  • An air-blast pipe N leads from the blower and connects with a vertical branch N, from which short branch pipes at and it connect, respectively, with the superheaters E and F near the connection of the upper and lower gasoutlet pipes O and D, leading from the top and bottom of the generator.
  • These branch pipes are provided with valves 0 and o.
  • second air-blast pipe N leads from pipe N and is provided with short branches n and n, which connect with the gas-discharge sides or ends of the superheaters E and F and are provided. with valves 0 and 0.
  • a steamsupply pipe S leads from the top of the boiler and is provided with a branch pipe 3, having valve 15, connecting with the superheater E at its gas-discharge end; also, with a second branch pipe 3, having valve t, which connects at the gas-discharge end of the superheater F.
  • the operation is very simple and may be conducted as follows:
  • the door 00 of the fuelopening Ct being opened, fire is kindled on the grate and is allowed to burn by natural draft and fuel is gradually supplied until a suitable body of fuel is well ignited, when the door so is closed.
  • the stopperu at the top of the blow-off pipe, the gas-outlet valve K, and the air-inlet valve 0 are opened and air is forced by the blower 0 through superheater F into the bottom of the generator, causing active combustion of the fuel.
  • producer-gas passes off through then pper outlet G into superheater E, where it is burned by the blast of air admitted through the valve 0.
  • the resulting hot products are passed up and down through the fines e and passages e, thereby heating the brick partitions f, and finally escape through pipe G (valve K being open) and pipe 11 into gas-chamber m and the air-blasts are shut off by closing valve 0
  • the resulting pass thence up through the tubes of the boiler and out through the stack-pipe T to the open air.
  • the body of fuel having been heated to incandescence and the superheater E heated to the desired temperature, the air-inlet valves 0 and 0", the valve K, and stopper u are closed and then the water-gas valve U and the valve K are opened, and steam is then admitted to the superheater E by opening valve i in branch pipe .9.
  • Air is now heated by passage through the superheater E and passes thence through passage 0 into the top of the generator and down through the body of fuel, causing combustion thereof for again heating it to incandescence.
  • the resulting producergas passes off through the lower outlet D into superheater F,where itis burned by the blast of air admitted through the valve 0, and the resulting hot products heat the superheater F and then pass off through pipes H and H, the steam-boiler, and out of the stack-pipe T.
  • Thebody of fuel in the generator havingbeen heated to the proper state of incandescence
  • valve K and stopper ware closed. Valves U and K are then opened, and steam is admitted to the superheater F by opening valve i in pipe 8. Steam is highly superheated by passing through the superheater F and passes therefrom through the By passing the air-blast both up'and down through the body of fuel at suitable intervals the fuel is more uniformly burned and heated to incandescence. By means of my apparatus constructed and arranged as shown both air and steam may be conveniently superheated and passed alternately up and down through the body of fuel. The producer-gas is also effectively used by being burned in the superheaters', so that the heat resulting from this combustion may be best utilized for superheating steam and air. 7
  • an exhauster may be connected with the gas-takeoiii' pipe T or the stack-pipe T and used for drawing off the waste products of combustion and also for drawing air into the superheaters through several valved inlet-openings in a well-known manner.

Description

m1. 644,806. Patented Mar.- 6, 1900. H. PETTlBONE.
APPARATUS FOR MANUFACTURING GAS.
(Appdcation filed Feb. 18, 1899.) N o [I o d a] kg /6 xg wibmmo I- I. away J A azt w,
mom-gnaw. WASHINGYON, I c.
ers skilled in the art to which it appertains water-gas for superheating both air and steam HE STATES PATENT Gusto-E.
APPARATUS FOR MA NuFAoTu RING GAS.
sPEoIrIcATIoN'rormin part of Letters Patent No. 644,806, dated March e, 1906.
' Application filed February 18, 1899p Serial No. 706,016. (No model.)
To (ZZZ whom it may concern:
Be it known that I, HAWLEY PETTIBONE, a citizen of the United States,residin g at Bridgeport, in the county of Fairfield and State of Connecticut, have invented certain new and useful Improvements in Apparatus for Mauu facturing Gas; and I do hereby declare the following to be a full, 0163.1,2tl1d exact description of the invention, such as will enable othto make and use the same.
This invention relates to apparatus for manufacturing water-gas; and one object is to provide for producing an increased yield or volume of water-gas from a given quantityof fuel and to utilize all the producer-gas given 'off from the generator byburning it in superheaters and then superheating both air and steam by passage through such superheaters on their way to the generator.
Another object is to provide an improved construction and arrangement of the generator and connected superheaters and certain pipe and valve connection by means of which the body of fuel may be blasted with hot air passed both upward and downward through it and by which superheated steam may be passed both upward and downward through the body'o'f incandescent fuel and the gases passed off both'at top and bottom of the body of fuel at alternate periods.
It is well known that it is advantageous to heat up the body of fuel in a Water-gas generator by admitting the air blast alternately at opposite ends or at the top and bottom thereof and also to decompose steam by passing it alternately in opposite directions or up and down through the body of fuel. By means of my apparatus this can be done, and, moreover, both the air and steam supplied to the generator are superheated by passage through separate superheaters, which are separately connected with both the top and bottom of the generator. My particular object isto increase the yield of the water-gas by utilizing all the heat resulting from the combustion of the producer-gas and the sensible heat of the which are supplied to the generator and for generating steam.
I will now describe the construction and ar rangement of my improved apparatus by reference to the accompanying drawing, which represents a vertical longitudinal section of the apparatus with certain parts in elevation. The generator A and the superheaters E and Fare constructed of fire-brick and inclosed in tight iron jackets in the usual manner. The generator is provided with a fuelopening a at the top and with the clean-out openings ct ct at or near the bottom in the usual manner, and such openings are provided with doors :0, w, and 0c. The grate Z2 is preferably constructed of fire-brick arches in a well-known manner and separates the fuel-chamber from the usual ash-pit B. The generator is provided at the topwith a gasoutlet 0 and at the bottom or ash-pit chamber with a gas-outlet D. An air and steam superheater E connects with the upper gasoutlet 0, and a'separate air and steam superheater F connects with the lower gas-outlet D. The superheaters E and F may be constructedin separate shells and each rest on its own foundation, if desired; but they are preferably built in one structure, one above the other, with a thick horizontal partition 9 between them, as shown in the drawing. 7
The superheaters may be filled with the usual fire-brick checker-work constructed in a well-known manner; but I preferably construct them with numerous vertical fire-clay partitions forming numerous vertical connected flues, as shown The superheater E is constructed with the fire-clay partitions f, forming the vertical flues e and having, alternately at top and bottom, the connecting-passages e'. The superheater F is constructed in a similar manner with vertical fire-clay partitions f, forming the vertical fiues g and having, alternately at top and bottom, the connecting passages 6. At the bottoms of the Superheaters and in the side Walls are provided the clean-out openings h and h, having in practice tight-closing doors for removing the dust and ashes. A gas-outlet opening and pipe G connects the discharge side or end of superheater E with the valve-chamber g, and a separate gas outlet and pipe H eonnects the superheater F with the valve-box 71,. Both of the valve-boxes g and h" conuect with the gas=discharge pipe H, which con nects with the gas'ohamber m at the lower end of the steam-boiler M. The valve-box 77. is
' provided with the usual annular seat and a ball or disk valve K, to which is connected a rod 70, connecting at its upper end to the pivoted lever L. The valve-box g is provided with a similar seat and valve.
The valve-boxes g and h are surrounded by the Water-tank I, through which water is circulated in practice in a well-known manner. The steam-boiler M is of the Well-known tubularkind and is provided with gas-chambers m and m at the lower and upper end. A gas-take-off pipe T connects the upper gaschamber m with the stack or blow-off pipe T, which is provided at the top with a hinged stopper u. A branch pipe T may connect pipe T with a valve-box and valve U for controlling the flow of water-gas to a holder or place of'im mediate use. The pipe T may dip down into a water-seal box \V, from which a pipe may lead to a holder or scrubber in'a wellknown manner.
Air-blast is supplied to the generator and to the superheaters under pressure by means of the blower O. (Indicatedby dotted lines.) An air-blast pipe N leads from the blower and connects with a vertical branch N, from which short branch pipes at and it connect, respectively, with the superheaters E and F near the connection of the upper and lower gasoutlet pipes O and D, leading from the top and bottom of the generator. These branch pipes are provided with valves 0 and o. A
second air-blast pipe N leads from pipe N and is provided with short branches n and n, which connect with the gas-discharge sides or ends of the superheaters E and F and are provided. with valves 0 and 0. A steamsupply pipe S leads from the top of the boiler and is provided with a branch pipe 3, having valve 15, connecting with the superheater E at its gas-discharge end; also, with a second branch pipe 3, having valve t, which connects at the gas-discharge end of the superheater F.
The operation is very simple and may be conducted as follows: The door 00 of the fuelopening Ct being opened, fire is kindled on the grate and is allowed to burn by natural draft and fuel is gradually supplied until a suitable body of fuel is well ignited, when the door so is closed. The stopperu at the top of the blow-off pipe, the gas-outlet valve K, and the air-inlet valve 0 are opened and air is forced by the blower 0 through superheater F into the bottom of the generator, causing active combustion of the fuel. producer-gas passes off through then pper outlet G into superheater E, where it is burned by the blast of air admitted through the valve 0. The resulting hot products are passed up and down through the fines e and passages e, thereby heating the brick partitions f, and finally escape through pipe G (valve K being open) and pipe 11 into gas-chamber m and the air-blasts are shut off by closing valve 0 The resulting pass thence up through the tubes of the boiler and out through the stack-pipe T to the open air. The body of fuel having been heated to incandescence and the superheater E heated to the desired temperature, the air-inlet valves 0 and 0", the valve K, and stopper u are closed and then the water-gas valve U and the valve K are opened, and steam is then admitted to the superheater E by opening valve i in branch pipe .9. In passing through the superheater the steam is heated to a high degree in contact with the fire-clay partitions f and then passes into the top of the generator and down through the body of fuel,where it is decomposed. The resulting water-gas passes off through the lower outlet-pipe D, through the flues and passages of superheater F, and out through pipes 11 and H, and thence through the tubes of the boiler and off through the valve U to a holder or other place of use. Decomposition of steam is thus continued un= til the temperature of the fuel is reduced too low for effective action, when steam is shut oif by closing valve 1, and valveU is closed. The stopper u and the air-inlet valves oand o are then opened. Air is now heated by passage through the superheater E and passes thence through passage 0 into the top of the generator and down through the body of fuel, causing combustion thereof for again heating it to incandescence. The resulting producergas passes off through the lower outlet D into superheater F,where itis burned by the blast of air admitted through the valve 0, and the resulting hot products heat the superheater F and then pass off through pipes H and H, the steam-boiler, and out of the stack-pipe T. Thebody of fuel in the generator havingbeen heated to the proper state of incandescence,
and 0 and the valve K and stopper ware closed. Valves U and K are then opened, and steam is admitted to the superheater F by opening valve i in pipe 8. Steam is highly superheated by passing through the superheater F and passes therefrom through the By passing the air-blast both up'and down through the body of fuel at suitable intervals the fuel is more uniformly burned and heated to incandescence. By means of my apparatus constructed and arranged as shown both air and steam may be conveniently superheated and passed alternately up and down through the body of fuel. The producer-gas is also effectively used by being burned in the superheaters', so that the heat resulting from this combustion may be best utilized for superheating steam and air. 7
Instead of using an air-blower for forcing blasts of air under pressure into the superheaters and thence into the generator an exhauster may be connected with the gas-takeoiii' pipe T or the stack-pipe T and used for drawing off the waste products of combustion and also for drawing air into the superheaters through several valved inlet-openings in a well-known manner.
Having described my invention, what I claim, and desire to secure by Letters Patent, 1s-
1. The combination with a gas-generating furnace having gas-outlet pipes as O and D at top and bottom, of two superheaters, one of which connects with the top of the generator through pipe 0 and the other of which connects with the bottom of the same through pipe D, a valved gas-outlet pipe as G and valved air and steam supply pipes as s and n connecting with the gas-discharge side or end of each superheater, substantially as described.
2. The combination with a gas-generating furnace having gas-outlet pipes as O and D at top and bottom, of a superheater connecting with the top of the generator through pipe 0 and having an air-inlet 0 adjacent to the gas-inlet, a second super-heater connecting with the bottom of the generator through pipe D and having an air-inlet 0 adjacent to the gas-inlet, a valved gas-outlet pipe and valved air and steam supply pipes connecting with the gas-discharge side or end of each superheater, substantially as described.
3. The combination with a gas-generating furnace having gas-outlet pipes as O and D at top and bottom, of two superheaters, one of which connects with the top of the generator and the other of which connects with the bottom of the same, a tubular steam-boiler having a gas-receiving chamber, a valved. gasoutlet pipe connecting each superheater with said chamber of the boiler, and valved air and steam supply pipes connecting with the gasdischarge side or end of each of said superheaters, substantially as described.
4. The combination with a gas-generating furnace having a gas-outlet pipe G at the top and a gas-outlet pipe D at the bottom, of a superheater, as E, connecting by said pipe 0 with the top of the generator, and having at its discharge side or end a valved gas-outlet pipe G, a valved air-supply pipe to and a valved steam-supply s, a second superheater, as F, connecting by said pipe D with the base of the generator and having at its discharge side or end a valved gas-outlet pipe H, and the valved air and steam supply pipes 11' and s, substantiallyas described.
In testimony whereof I affix my signature in presence of two witnesses.
I-IAVVLEY PETTIBONE.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070172427A1 (en) * 2003-11-05 2007-07-26 The Government Of The United States Of America, As Represented By The Secretary, Department Of Hea Biofunctionalized quantum dots for biological imaging

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070172427A1 (en) * 2003-11-05 2007-07-26 The Government Of The United States Of America, As Represented By The Secretary, Department Of Hea Biofunctionalized quantum dots for biological imaging

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