US167755A - Improvement in processes and apparatus for preventing the accumulation of tar - Google Patents

Improvement in processes and apparatus for preventing the accumulation of tar Download PDF

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US167755A
US167755A US167755DA US167755A US 167755 A US167755 A US 167755A US 167755D A US167755D A US 167755DA US 167755 A US167755 A US 167755A
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main
tar
steam
accumulation
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    • CCHEMISTRY; METALLURGY
    • C10PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
    • C10BDESTRUCTIVE DISTILLATION OF CARBONACEOUS MATERIALS FOR PRODUCTION OF GAS, COKE, TAR, OR SIMILAR MATERIALS
    • C10B33/00Discharging devices; Coke guides
    • C10B33/006Decoking tools, e.g. hydraulic coke removing tools with boring or cutting nozzles

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Organic Chemistry (AREA)
  • Filling Or Discharging Of Gas Storage Vessels (AREA)

Description

D. H. FOX.
Process and Apparatus for Preventing the Accumulation of Tar in Hydraulic Mains.
No. l67,755, Patentedsept.14,1875.
XAllll UivrrnnA STATES 'r Error?.
DAVID H. FOX, OF READING, PENNSYLVANIA.
IMPROVEMENT IN PROCESSES AND APPARATUS FOR PREVENTING THE ACCUMULATION 0F TAR IN HYDRAULIC MAINS. v
Specification forming part of Letters Patent No. 167,755, dated September 14, 1875; application filed July 3o, 1875. f f
To all whom it may concern:
Be it known that I, DAVID H. Fox, of Reading, in the county of Berks and State of Pennsylvania, have invented an Improved Process and Apparatus for Preventing the Accumulation of Tarry Deposits in the Hydraulic Main and Conduit-Pipes used in the Production of Illuminating-Gas, of which the following is a specification My improvement relates more especially to the process and apparatus for which Letters Patent, dated Novem ber 8, 1859, were granted to Leonard D. Gale, reissued March 8, 1870, and extended November 11,1873, whereby the volatilized vapor of hydrocarbon is subjected to a sufcient heat, in retorts, to produce a ixed gas, and then drawn ott' from the receiving hydraulic main through a condenserby an exhauster.
In the practice of this invention I find that the excess of carbon deposited in the main and conduit-pipes is so abundant and rapid as to render it necessary to open the said main and conduit-pipes very frequently to remove the deposit, in order to prevent stoppings and possibly disastrous results.
4The object of my invention is to prevent the accumulation in the hydraulic main and outlet gas-pipes of the excess of carbon, (before referred to herein,) and thus, consequently, render the practice of said Gales invention free from the dangerous liabilities to which it is subject from said cause 5 and this highly important result I accomplish in a perfect and reliable manner, first, by injecting streams of steam into the carbonaceous liquid in the hydraulic main in such a manner as to keep the said liquid sufficiently agitated to effectually prevent such a thickening of the same, by the deposit of carbon, as would retard o'r prevent its flowing out into the usual tar-line wastepipe which enters the ordinary underground drip-tank 5 second, by an arrangement of pipes injecting jet-sprays of cold water horizontally across in opposite directions into the upper portion of the take-off pipe, which leads vertically upward from the hydraulic main, and thus more effectually Wash down into the said main all the free carbon that may have been carried up by the gas from the main, or liberated in the take-off pipe, than can be accomplished by the vertically-dripping water heretofore used for the purpose; and, moreover, the said horizontal jet-sprays of water effectually prevent the passage of any vapor or uniixed gas from passing them, and, consequently, depositing by condensation throughout the succeeding apparatus and pipes; and the Wash-water, with the free carbon, falls down into the hydraulic main and is carried 0E to the drip-tank; and, third, by making a direct communication between the steam-heated vaporizer and the underground tank (both of which are well known and in common use, and therefore need not be shown nor described,) by means of a gas-pipe provided with a stopcock and leading directly from the upper part of the vaporizer directly down into the contents of the drip-tank. in such a manner that, when a sufficient quantity'of gas has been made, the attendant can direct the volatilized vapor which continues to be produced in the hot vaporizer directly downward into the driptank, instead of directing the said vapor into the gas-pipe which passes through the condenser, as heretofore has been the practice. By this improved mode of disposing of the surplus vapor, it becomes condensed in the drip-tank, and at any time can be pumped up and used again in the vaporizer to supply the retorts; and the very objectionable deposit of free carbon in the condenser, and the possible dangerous consequences, entirely prevented; and, moreover, the usual prolonged operation of the exhauster ceases to be required.
My saidprocess and apparatus will hereinafter be more fully and clearly described, with reference to the accompanying drawings, in` which- Y l Figure 1 is a perspective view of a bench of retorts with the main and usual connectingpipes, embodying my improvement in the apparatus 5 and, Fig. 2 a perspective view of the opposite side of the upper portion of Fig. 1; Fig. 3, a diagram explanatory of the relative positions of the drip-tank and vaporizer, and the communicating-pipe between the same.
Three retorts, A A A, are shown in Fig. 1, built in with brick-Work in the usual manner, and the lids or covers provided each with a section of the usual vapor-pipe a! for introducing the hydrocarbon-vapor volatilized in any suitable steam-heating yolatilizilig vessel or apparatus. The retorts communicate with the usual.. main B through lthe stand-pipes O C C, and the main communicates with the underground drip-tank through the drain-pipe b', and with the take-ofi' pipe D, which communicates with the pipe d', th at passes through the usual condenser, all substantially in the usual manner. (See Figs. l and 2.) For the purpose of introducing the jets, of steam into the carbonaceous liquid in the hydraulic main B, I construct and secure a pipe, E, in communication with any suitable steam-generator, along beside the hydraulic' main B, and by means of a plurality of lateral pipes, e e', in communication therewith and with the interior of the said main B, I inject steam into the liquid carbonaceous deposit therein in such a manner as to keep the said liquid in a sufficient state of agitation to prevent such a thickening of the same by the constant deposit of free carbon as would retard or prevent the said liquid from tlowing out into the usual tar-line Waste-pipe b'. This steam-pipe E is provided with a stop-cock, e, for the purpose of regulating and stopping off the steam, as occasion may require. For the purpose of introducing the jet sprays of water horizontally across in opposite directions into the upper portion of the take-ofi' pipe D, I construct, in connection with the usual drip-water supplypipe F, a horizontal portion, f', provided with two jet-spray pipes, 2 2, which enter, the one a little below the other, into the opposite sides of the upper portion of the take-off pipe D, so that jet sprays of the cold Water will be driven horizontally across the interior of said take-off pipe D, the effect of which will be a `thorough washing down of all carbon that may have risen from the hydraulic main B or been set free in the take-off pipe D, in
consequence of its cooler position or the incomplete combination of the carbon with the hydrogen.
The diagram, Fig. 3, is intended to represent a vertical section of the usual underground drip-tank G, and a steam-heated vaporizer, H, in communication with each other by the pipe I, and it will be readily understood Without any further description that, if
the stop-cock i be opened at the time of closing the stop-cock h to stop the entrance of vapor from H into the retorts, the vapor,
`which will continue to be produced until lthe said generator becomes cooled, will pass directly down into the contents of the drip-tank G, from whence it can be readily pumped up and again vaporized in the steam-heated vaporizer H and transmitted into the retorts through the conduit-pipes a a a.
Having thus fully described my invention, I claiml. For the purpose of preventing the continuous deposits of carbonaceous matter or tar in the hydraulic main B from becoming too thick or stili'l to flow freely out through the usual tar-line waste-pipe b', the process of injecting live steam down into the liquid contents of said main, and thus, by the constant agitation and the consequent intimate mixing of the steam with the carbonaceous matter in the main, keeping the contents in a freely fluent condition, as hereinbefore set forth.
2, The apparatus consisting of the steampipe E provided with a plurality of lateral pipes, e e', opening into the interior ofthe hydraulic main, and receiving steam from any suitable generator, substantially as and for the purpose hereinbefore described.
3. The cold-waterjet pipes 2 2, horizontally arranged to inject sprays of cold water in opposite directions into the takeoif pipe D from any suitable pressuresource, substantially as and for the purpose described.
4. The pipe I, provided .with the stop-cock i at its upper end, in combination with the steam-heated vaporizer H, provided with a stop-cock, h', near its upper end, and the sunken tank G, having the lower end of said pipe I immersed in the liquid in said tank, the said parts being constructed and arranged substantially as set forth, for the purpose of relieving the vaporizer H from the pressure of vapor by opening the stop-cock i as soon as the stop-cock h shall be closed, especially at the close of the days work, as described.
DAVID H. FOX.
Witnesses:
WM. B. ScHoENER, JOHN H. REILEY.
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3432396A (en) * 1966-07-07 1969-03-11 United States Steel Corp Method of clearing tar accumulations from a coke-oven collector main
US20050011174A1 (en) * 2002-09-13 2005-01-20 Sungtae Hong Honeycomb structure
US20050016140A1 (en) * 2002-09-13 2005-01-27 Teruo Komori Honeycomb structure

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3432396A (en) * 1966-07-07 1969-03-11 United States Steel Corp Method of clearing tar accumulations from a coke-oven collector main
US20050011174A1 (en) * 2002-09-13 2005-01-20 Sungtae Hong Honeycomb structure
US20050016140A1 (en) * 2002-09-13 2005-01-27 Teruo Komori Honeycomb structure

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