US183934A - Improvement in ore-roasting furnaces - Google Patents
Improvement in ore-roasting furnaces Download PDFInfo
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- US183934A US183934A US183934DA US183934A US 183934 A US183934 A US 183934A US 183934D A US183934D A US 183934DA US 183934 A US183934 A US 183934A
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- ore
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- 239000003517 fume Substances 0.000 description 6
- 239000007789 gas Substances 0.000 description 6
- 238000010276 construction Methods 0.000 description 5
- 238000000034 method Methods 0.000 description 5
- 238000001816 cooling Methods 0.000 description 4
- QSHDDOUJBYECFT-UHFFFAOYSA-N mercury Chemical compound [Hg] QSHDDOUJBYECFT-UHFFFAOYSA-N 0.000 description 4
- 238000002485 combustion reaction Methods 0.000 description 2
- 239000000446 fuel Substances 0.000 description 2
- 238000005192 partition Methods 0.000 description 2
- 240000001973 Ficus microcarpa Species 0.000 description 1
- 241000282320 Panthera leo Species 0.000 description 1
- LZCDAPDGXCYOEH-UHFFFAOYSA-N adapalene Chemical compound C1=C(C(O)=O)C=CC2=CC(C3=CC=C(C(=C3)C34CC5CC(CC(C5)C3)C4)OC)=CC=C21 LZCDAPDGXCYOEH-UHFFFAOYSA-N 0.000 description 1
- 238000004891 communication Methods 0.000 description 1
- 229940002658 differin Drugs 0.000 description 1
- 238000002474 experimental method Methods 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 239000004576 sand Substances 0.000 description 1
- 238000012216 screening Methods 0.000 description 1
- 239000002893 slag Substances 0.000 description 1
- -1 vapors Substances 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F27—FURNACES; KILNS; OVENS; RETORTS
- F27B—FURNACES, KILNS, OVENS OR RETORTS IN GENERAL; OPEN SINTERING OR LIKE APPARATUS
- F27B1/00—Shaft or like vertical or substantially vertical furnaces
- F27B1/005—Shaft or like vertical or substantially vertical furnaces wherein no smelting of the charge occurs, e.g. calcining or sintering furnaces
Definitions
- Our invention relates to an improvement in the process and the construction of furnaces for roasting and desulphurizing the ores of quicksilver and other ores, and principally the finer quicksilver ores,kncwn as Tierras, differin g greatly in size, and found from the grain of sand to pieces of two and three inches in diameter, without the necessity of stamping or screening the same 5 and it consists in a novel process, and in the construction of furnace, whereby the ore is fed regularly and by the force of gravity without the aid of mechanical means, and during its descent becomes roasted and burned, while the fresh or uuburned ore is supplied from the hopper as fast as the roasted ore or slag is withdrawn from the bottom, a Wall of ore thus being formed within the furnace with proper spaces or channels through it for the passage of the fumes and gases from the tire, as also the vapors and gases produced by the roasting of the ores 5 and, further, for the passage of heated air, as will be more fully described herein
- FIG. l a vertical section of our furnace through M N in Fig. 2, with the front wall removed;
- Fig. 2 a vertical section through O P in Fig. l.
- Fig. 3 represents a section of Fig. 1 on the line R S.
- FIG. 2 of the drawing shows a space or chamber, A, between the walls B B of the furnace, with a series of inclined shelves, b b.
- the spaces or openings 'a a in A, between the shelves communicate not only with each other, but also with' the orehopper at C on the top of the furnace, and with the outlet D at the bottom of the same.
- the chambers G G at either end of the orechamber A are divided by a series of partitions, g g, as shown in Figs. l and 3. his an inlet for air, and F is a grate-surface for combustion of the fuel.
- the air which enters at the inlet h is guided over the cooling ore, through and over the grate-surface F, where it mingles with the heat, llames, and gases from the fuel used, and then enters the lower chamber G on the right-hand side of the furnace, passes then through the openings c c in the right-hand wall E, over and under the ore which rests on the shelves b b, enters then, together with the gases, vapors, and fumes arising from the heating and roasting of the ore, into the lower chamber G on the left-hand side of the furnace 5 then rises to the upper part of this chamber G then is led back through the upper openings c e in said chamber, over the shelves b b to the right-hand side of the furnace, into the second chamber G on that side; and in this manner all the heated air, vapor, gases, and fumes pursue a curved path back and forth, and upward from one side of the furnace to the other, over the inclined shelves b
- the shelves b b placed lower than the gratesnrface F, as seen in Fig. 1, serve for the cooling of the roasted ore.
- Atmospheric air is admitted only at h, and is then guided over the already-roasted ore into the fire-place.
- the heat which is contained in the burned ore is made useful, but, if any metallic fumes should remain in the roasted ore, they are carried back into the furnace, .thereby avoiding all possible loss.
- Grate-surface and 4ash-pits are arranged in connection with the two sets of ore-chambers A.
- Our improved furnace operates to sustain a column of ore to be roasted in such a manner that it remains always in place, and forms a wall or column that gravitates downward over and upon the inclined shelves b b as often as the burned ore is drawn from the outlet at the bottom, and a new supply of unburned ore is fed down to supply the place of that withdrawn.
- a constant supply of ore is thus kept up in the ore-chamber without the aid of mechanical means; yet the ore does not fall in a shower, but is held to receive the action of the dames and heated air in a stationary position upon the inclined shelves, and in a mass or wall, as it were, that moves downward as the burned portion at the bottom is withdrawn.
- each shelf forms the roof of the chamber immediately underneath it, and therefore becomes heated from the llames, gases, and vapors passing through said chamber, and. communicates this heat to the ore placed on its upper surface, securing thereby not only the roasting of the ore from its surface, but also allowing the heat to pass through it in the manner described.
- the furnace is further provided with an orehopper and condensers of ordinary construction, and it can be made not only of any suitable height, but can also be put up with a single chamber, A, or double chamber A, as shown in the drawing; or, on account of its peculiar construction, two furnaces with ⁇ two double ore-chambers, A, can 'be put up in juxtaposition, and connect in the middle by a Hue common to both, for the outlet of the fumes into the condensers, saving thereby a great expense in construction, as the building of two heavy outside walls is done away with, and, instead, only a thin partitionwall will be required to divide the chambers Gr of' the two furnaces.
- An ore-roasting furnace consisting of a central chamber, A, provided with a series of inclined shelves, a b, side nes or chambers G, divided by the alternating partitions g, fire-grate F, and air-inlet h, thearrangement of these several parts being such that the entering air-current is made to pass through a body of calcined and cooling ore, thence through the tire-grate, and, finally, to and fro across the furnace with the products of combustion, and through the roasting ore, substantially as shown and described.
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- Engineering & Computer Science (AREA)
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- General Engineering & Computer Science (AREA)
- Furnace Details (AREA)
Description
H. I. HUTTNER vl R.. SCOTT.
ORE ROASTING FURNACE.
No. l, Patentd Oct. 31,R18'76. ,l 1
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D /mgw UNITED STATES PATENT CDEEICEo HENRY J. HUTTNER, OF SAN FRANCISCO, AND ROBERT SCOTT, OF NEW ALMADEN, CALIFORNIA; SAID SCOTT ASSIGNOR TO SAID HUTTN ER.
IMPROVEMENT IN ORE-ROASTING FURNACES.
Specification forming part of Letters Patent No. 183,934, dated October 31, 1876; application filed March 13,1876.
To all whom it may concern:
Be it known that we, HENRY J. HUTTNER,
of San Francisco, and ROBERT SCOTT, of N ew Almaden, both of the State of California, have invented an Improved Furnace and Process for Roasting and Desulphu'rizing the Orcs of Quicksilver; and we do hereby declare th at the following description and accompanying drawing are sufficient to enable any person skilled in the art or science to which it most nearly appertaius to make and use our said invention and improvements without further invention or experiment. Our invention relates to an improvement in the process and the construction of furnaces for roasting and desulphurizing the ores of quicksilver and other ores, and principally the finer quicksilver ores,kncwn as Tierras, differin g greatly in size, and found from the grain of sand to pieces of two and three inches in diameter, without the necessity of stamping or screening the same 5 and it consists in a novel process, and in the construction of furnace, whereby the ore is fed regularly and by the force of gravity without the aid of mechanical means, and during its descent becomes roasted and burned, while the fresh or uuburned ore is supplied from the hopper as fast as the roasted ore or slag is withdrawn from the bottom, a Wall of ore thus being formed within the furnace with proper spaces or channels through it for the passage of the fumes and gases from the tire, as also the vapors and gases produced by the roasting of the ores 5 and, further, for the passage of heated air, as will be more fully described hereinafter.
The accompanying drawing shows, in Fig. l, a vertical section of our furnace through M N in Fig. 2, with the front wall removed; Fig. 2, a vertical section through O P in Fig. l. Fig. 3 represents a section of Fig. 1 on the line R S.
The sectional view in Fig. 2 of the drawing shows a space or chamber, A, between the walls B B of the furnace, with a series of inclined shelves, b b. The spaces or openings 'a a in A, between the shelves, communicate not only with each other, but also with' the orehopper at C on the top of the furnace, and with the outlet D at the bottom of the same. The wall formed by the ore from the hopper C to the outlet D in its uniform descent, and filling the spaces between the shelves b bat their point of communication with each other, divides the spaceA into channels or compartments a a.. These channels are connected with the chambers G G through openings eein the end walls E E. (Shown in section in Fig. l.) The chambers G G at either end of the orechamber A are divided by a series of partitions, g g, as shown in Figs. l and 3. his an inlet for air, and F is a grate-surface for combustion of the fuel. Now, therefore, the air which enters at the inlet h is guided over the cooling ore, through and over the grate-surface F, where it mingles with the heat, llames, and gases from the fuel used, and then enters the lower chamber G on the right-hand side of the furnace, passes then through the openings c c in the right-hand wall E, over and under the ore which rests on the shelves b b, enters then, together with the gases, vapors, and fumes arising from the heating and roasting of the ore, into the lower chamber G on the left-hand side of the furnace 5 then rises to the upper part of this chamber G then is led back through the upper openings c e in said chamber, over the shelves b b to the right-hand side of the furnace, into the second chamber G on that side; and in this manner all the heated air, vapor, gases, and fumes pursue a curved path back and forth, and upward from one side of the furnace to the other, over the inclined shelves b b to the top of the furnace, where the products from the roasting of the ores are conducted into proper condensers.
The arrangements of these channels-formed partly by the inclined shelves b b and partly by the wall of ore in its descent over the same, allowing the heated air to pass over and to come in intimate contact with the ore in process of roasting-are shown in Fig. 2 of the drawing.
Proper outlets for the removal of the burned ore are provided at the bottom of the orechamber.
The shelves b b, placed lower than the gratesnrface F, as seen in Fig. 1, serve for the cooling of the roasted ore.
Atmospheric air is admitted only at h, and is then guided over the already-roasted ore into the fire-place. By this means not only the heat which is contained in the burned ore is made useful, but, if any metallic fumes should remain in the roasted ore, they are carried back into the furnace, .thereby avoiding all possible loss.
Grate-surface and 4ash-pits are arranged in connection with the two sets of ore-chambers A.
Our improved furnace operates to sustain a column of ore to be roasted in such a manner that it remains always in place, and forms a wall or column that gravitates downward over and upon the inclined shelves b b as often as the burned ore is drawn from the outlet at the bottom, and a new supply of unburned ore is fed down to supply the place of that withdrawn. A constant supply of ore is thus kept up in the ore-chamber without the aid of mechanical means; yet the ore does not fall in a shower, but is held to receive the action of the dames and heated air in a stationary position upon the inclined shelves, and in a mass or wall, as it were, that moves downward as the burned portion at the bottom is withdrawn.
The position of the shelves b b is such, as seen in Fig. 2, that each shelf forms the roof of the chamber immediately underneath it, and therefore becomes heated from the llames, gases, and vapors passing through said chamber, and. communicates this heat to the ore placed on its upper surface, securing thereby not only the roasting of the ore from its surface, but also allowing the heat to pass through it in the manner described.
The furnace is further provided with an orehopper and condensers of ordinary construction, and it can be made not only of any suitable height, but can also be put up with a single chamber, A, or double chamber A, as shown in the drawing; or, on account of its peculiar construction, two furnaces with `two double ore-chambers, A, can 'be put up in juxtaposition, and connect in the middle by a Hue common to both, for the outlet of the fumes into the condensers, saving thereby a great expense in construction, as the building of two heavy outside walls is done away with, and, instead, only a thin partitionwall will be required to divide the chambers Gr of' the two furnaces. y
Having thus fully described our invention, what we claim as new, and desire to secure by Letters Patent, is-
1. The process of roasting and desulphurizing the ores of quicksilver, which consists in passing currents of air through the lower part of a wall or column of roasted and cooling ore, to reduce the temperature of the same and to take up any remaining fumes, and then passing the air, in a highly-heated condition, from side to side through the upper parts of the said wall or column, to roast and desnlphurize the said ore, substantially as described.
2. An ore-roasting furnace, consisting of a central chamber, A, provided with a series of inclined shelves, a b, side nes or chambers G, divided by the alternating partitions g, fire-grate F, and air-inlet h, thearrangement of these several parts being such that the entering air-current is made to pass through a body of calcined and cooling ore, thence through the tire-grate, and, finally, to and fro across the furnace with the products of combustion, and through the roasting ore, substantially as shown and described.
In witness whereof we have hereunto set our hands and seals this 31st day of January, A. D. 1876.
HENRY J. EUTTNER. ROBERT soorr. l
Witnesses RALPH LOWE, RICHARD TURNER.
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US183934A true US183934A (en) | 1876-10-31 |
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US20030180782A1 (en) * | 2002-03-25 | 2003-09-25 | The Regents Of The University Of California | Synthesis of DNA |
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Cited By (1)
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US20030180782A1 (en) * | 2002-03-25 | 2003-09-25 | The Regents Of The University Of California | Synthesis of DNA |
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