US1882329A - Fuel pulverizing system - Google Patents

Fuel pulverizing system Download PDF

Info

Publication number
US1882329A
US1882329A US334591A US33459129A US1882329A US 1882329 A US1882329 A US 1882329A US 334591 A US334591 A US 334591A US 33459129 A US33459129 A US 33459129A US 1882329 A US1882329 A US 1882329A
Authority
US
United States
Prior art keywords
gas
separator
outlet
line
chamber
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US334591A
Inventor
Kreisinger Henry
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
International Combustion Engineering Corp
Original Assignee
Int Comb Eng Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Int Comb Eng Corp filed Critical Int Comb Eng Corp
Priority to US334591A priority Critical patent/US1882329A/en
Application granted granted Critical
Publication of US1882329A publication Critical patent/US1882329A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23KFEEDING FUEL TO COMBUSTION APPARATUS
    • F23K1/00Preparation of lump or pulverulent fuel in readiness for delivery to combustion apparatus
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23KFEEDING FUEL TO COMBUSTION APPARATUS
    • F23K2201/00Pretreatment of solid fuel
    • F23K2201/10Pulverizing
    • F23K2201/1006Mills adapted for use with furnaces

Definitions

  • the primary object of the invention is to provide an improved system in which such difliculties are overcome.
  • A-more specific object of the invention is to associate an improved simple and effective device with the usual separator of the system which will enable gas to be with drawn from the system without carrying off any objectionable amount of dust or pulverized material,
  • Another object of the invention is to pro vide an improved pufl vent for systems of the character described.
  • a further object is to relieve pressure at the bottom of separator means of the system.
  • FIG. 1 is a more or less-dlagrammatlc elevationalview of a system embodying the invention with portions of the apparatus appearing in section to expose certain interior parts to View. 7
  • Fig.2 is a plan section taken on the line 2-2 of Fig. 1, and
  • Fig. 3 is a plan section taken on the line 33 of Fig. 1.
  • the system comprises in general a pulverizer mill A, a separator device B, a delivery line C' leading from the mill to the separator device, a blower D located in the line C, a return line E leading from the separator device to the mill, and means F for supplying heat to the system.
  • a feeder 2 is provided for introducing the material to (be pulverized into the mill and when the system is to be used in connection with pulverized coal burning installations, the material would be raw coal drawn from a suitable source of supply such as a bunker or bin.
  • the coal pulverized in the mill is carried .to the separator device B through the lineC, by a current of .gas setup by the blower D.
  • the separator device includes a cyclone.
  • An auxiliary cyclone separator-G is located between the main separator 3 and the inlet to the return line, and comprises a cylindrical chamber 5 having a conical bottom 6 terminating in an axial inlet 7, and having an outlet opening 8 in its cylindrical surface with which the return line E is connected to receive the mixture from the chamber tan gentially.
  • An adjustable damper 9 is provided for the outlet o ening 8, which damper is hinged at 10 to t e chamber 5 along an edge of the outlet opening.
  • the damper is preferably curved with a radius the same as the radius of the cylindrical chamber 5.
  • the axial inlet 7 of the auxiliary separator G registers with the top axial outlet of the main separator 3 and a sleeve or neck 11 extends downwardly into the separator 3.
  • The. rotating gas, together with any-coal particles not separated axially enters the chamagainst the free edge of the damper 9 so that the damper acts as a deflector to cause that part of the mixture having the greatest concentration of dust to be tangentially discharged into the return line.
  • the damper '9 scrapes off from the rotatmg mixture that part which contains the most dustand returns it to the mill through the return line.
  • the dam er in addition, may be adjusted to control t e amount of flow into the return line.
  • the return line E discharges into thetlower' portion of the mill A and it is to be noted that adjacent the point where this line enters the mill, a hot air or gas inlet 12 is rovided through whichheat is introduced into the system.
  • the heat may be supplied from any suitable source, for example, from an air heater 13.
  • a suitable damper 14 is provided to control the admission of heat.
  • the chamber 16 has conveyor in the event that there is pressure at 6 i.
  • a vane 21 preferably triangular in' shape is associated with the outlet opening 17 and is adapted to guide the rotating gas into the line 18. This vane changes the rotation of the gases into a straight line motion so that most of theenergy in the rotation of the gas is converted into static pressure in the line 18.
  • a dust catcher 18c may be provided adjacent the entrance end of the line 18 for catch-' ing any dust particles gravitating out of the gasstream entering this line.
  • the dust catcher is shown discharging into the return e.
  • the cylindrical chamber 16 preferably extends through the roof of the building and it is provided with a suitable relief valve as diagrammatically illustrated at 22.
  • a pnfi vent is provided which, owing to its location in a direct line with the axis of the main and auxilia cyclone separators, is very advantageous cause any pressure suddenly developed in the main cyclone is relieved by the straight line vent
  • the damper and the vane only expose their edges to the gases to be vented and, therefore, there are no obstructions in the venting of gases in case of pufl.
  • ⁇ a' system is provided in which the gases to be withdrawn are com aratively clean and in which the gases having the greatest concens tration of dust are returned to the mill.
  • the material separated in the main separator discharges through a chute 23 into.
  • the pressure is relieved throu h a damper controlled con- .nection 24 lea ing to the return line, which line is under a slight suction.
  • a main separator having a tangential inlet for a mixture of material and gas and an axial outlet for the discharge of unseparated gas and du'st;- a" skimmer having an axial inlet for receiving said discharge from the main separator, a tangential outlet,and an axial outlet; and an adjustable damper controlling the flow through the tangential outlet of the skimmer, said damper being hinged toopen with its free edge against the rotating mixture in the skimmer whereby that port on of the mixture having the greatest concentration of dust will be deflected through said tangential outlet.
  • a separating dev1ce in a separating system, means for setting up current of as through the system, and a separating dev1ce includmg a separator chamber tangentially receivin a, mixture of material and gas and axially ischar 'n the rotating unseparated mixture, a cylm rical chamber associated withsaid separating chamber-t0 axially receive said discharge,
  • said cylindrical chamber having a peripheral outlet and an axial outlet, and a second cylindrical chamber associated with said first cylindrical chamber to receive the discharge leaving said axial outlet, said secondv cylindrical chamber having a peripheral outlet and a relief valvecontrolled axial outlet.
  • an a separating device including a separator chamber tangentiall receivin a mixture of material and gas an axially discharging the rotating unseparated mixture, a cylindrical chamber associated with said separating chamber to axially receive said dlscharge said cylindrical chamber having a peripheral outlet and an axial outlet, and a second cylindrical'chamber associated with said first cylindrical chamber to receive the discharge leaving said axial outlet, said second cylindrical chamber having a peripheral outlet and a relief valve controlled axial outlet, together with means in said second cylindrical chamber for changing the rotary motion of the gas into straight line motion.
  • a centrifugal separator having an axial outlet for rotating gas and dust, a cylindrical chamber for receiving the rotating gas and dust dischargin through said outlet, an outlet opening in the cylindrical portion of said rent of gas in the system; a conveyor receiving said discharge; and means communicably connecting the lower portion of the separator to a point of suction in the system for relieving pressure from the lower portion of the separator.

Description

Oct. 11, 1932. H. KREISINGER 9 FUEL PULVERIZING SYSTEM I Filed Jan. 23. 1929 INVENTO R v Mans Patented Oct. 11, 1932 UNITED STATES PATENT? OFFICE HENRY KREISINGER, OF PIERMONT, YORK, ASSIGNOR TO INTERNATIONAL COK- ZBUSTION ENGINEERING CORPORATION, OF NEW YORK, N. Y., A CORPORATION 01 DELAWARE runn runvnnizme SYSTEM,
6 in the system and in which the unseparated mixture leaving the separator is returned to the mill. p
In such systems, particularly when heat is added, for example, hot gas for the purpose .1 of drying the fuel in the system, it is necessary to exhaust an amount of gas equal to the amount of hot gas introduced. This leads to difficulties because of the escape of pulverized material with the gas which is being withdrawn or .exhausted.
The primary object of the invention is to provide an improved system in which such difliculties are overcome.
A-more specific object of the invention is to associate an improved simple and effective device with the usual separator of the system which will enable gas to be with drawn from the system without carrying off any objectionable amount of dust or pulverized material,
Another object of the invention is to pro vide an improved pufl vent for systems of the character described.
A further object is to relieve pressure at the bottom of separator means of the system.
How the foregoing, together with such other objects and advantages as may hereinafter appear, or are incident to the invention, are realized is illustrated in preferred form in the accompanying drawing, where Fig. 1 is a more or less-dlagrammatlc elevationalview of a system embodying the invention with portions of the apparatus appearing in section to expose certain interior parts to View. 7
Fig.2 is a plan section taken on the line 2-2 of Fig. 1, and
Fig. 3 is a plan section taken on the line 33 of Fig. 1.
The system comprises in general a pulverizer mill A, a separator device B, a delivery line C' leading from the mill to the separator device, a blower D located in the line C, a return line E leading from the separator device to the mill, and means F for supplying heat to the system.
- A feeder 2 is provided for introducing the material to (be pulverized into the mill and when the system is to be used in connection with pulverized coal burning installations, the material would be raw coal drawn from a suitable source of supply such as a bunker or bin.
The coal pulverized in the mill is carried .to the separator device B through the lineC, by a current of .gas setup by the blower D.
The separator device includes a cyclone.
chamber 3 into which the mixture from the mill is tangentially delivered and in which the coal and gas are separated, the coal discharging through a check valve controlled outlet 4 preferably to a bin or conveyor and the gas passing to the return line E.
An auxiliary cyclone separator-G is located between the main separator 3 and the inlet to the return line, and comprises a cylindrical chamber 5 having a conical bottom 6 terminating in an axial inlet 7, and having an outlet opening 8 in its cylindrical surface with which the return line E is connected to receive the mixture from the chamber tan gentially. An adjustable damper 9 is provided for the outlet o ening 8, which damper is hinged at 10 to t e chamber 5 along an edge of the outlet opening. The damper is preferably curved with a radius the same as the radius of the cylindrical chamber 5.
The axial inlet 7 of the auxiliary separator G registers with the top axial outlet of the main separator 3 and a sleeve or neck 11 extends downwardly into the separator 3. The. rotating gas, together with any-coal particles not separated, axially enters the chamagainst the free edge of the damper 9 so that the damper acts as a deflector to cause that part of the mixture having the greatest concentration of dust to be tangentially discharged into the return line. Stated in another way, the damper '9 scrapes off from the rotatmg mixture that part which contains the most dustand returns it to the mill through the return line. The dam er, in addition, may be adjusted to control t e amount of flow into the return line.
The return line E discharges into thetlower' portion of the mill A and it is to be noted that adjacent the point where this line enters the mill, a hot air or gas inlet 12 is rovided through whichheat is introduced into the system. The heat may be supplied from any suitable source, for example, from an air heater 13. A suitable damper 14 is provided to control the admission of heat.
comparatively clean rotating gas leaves the auxiliary separator G through the upper axial outlet 15 with which is associated the m cylindrical chamber lti. The chamber 16 has conveyor in the event that there is pressure at 6 i.
an outlet opening 17 in the cylindrical surface thereof, through which outlet the gas with any dust still carried therewith is tangentially discharged into a line 18 leading away from the system. ,In this instance the line 18 leads to a gas washer 19 operating to further clean the gas prior to its discharge through a stack 20.
A vane 21 preferably triangular in' shape is associated with the outlet opening 17 and is adapted to guide the rotating gas into the line 18. This vane changes the rotation of the gases into a straight line motion so that most of theenergy in the rotation of the gas is converted into static pressure in the line 18.
A dust catcher 18c may be provided adjacent the entrance end of the line 18 for catch-' ing any dust particles gravitating out of the gasstream entering this line. The dust catcher is shown discharging into the return e. The cylindrical chamber 16 preferably extends through the roof of the building and it is provided with a suitable relief valve as diagrammatically illustrated at 22. Thus a pnfi vent is provided which, owing to its location in a direct line with the axis of the main and auxilia cyclone separators, is very advantageous cause any pressure suddenly developed in the main cyclone is relieved by the straight line vent The damper and the vane only expose their edges to the gases to be vented and, therefore, there are no obstructions in the venting of gases in case of pufl. Y I 7 From the foregoing it will be seen that \a' system is provided in which the gases to be withdrawn are com aratively clean and in which the gases having the greatest concens tration of dust are returned to the mill.
The material separated in the main separator discharges through a chute 23 into.
the conveyor H and in order to avoid a dusty the bottom of the separator, the pressure is relieved throu h a damper controlled con- .nection 24 lea ing to the return line, which line is under a slight suction.
No specific claim is made herein to the broad combination of aconcentrator and step .arator disclosed, as claims directed thereto cific' form.
I claim:
1-. In a separating system, a main separator having a tangential inlet for a mixture of material and gas and an axial outlet for the discharge of unseparated gas and du'st;- a" skimmer having an axial inlet for receiving said discharge from the main separator, a tangential outlet,and an axial outlet; and an adjustable damper controlling the flow through the tangential outlet of the skimmer, said damper being hinged toopen with its free edge against the rotating mixture in the skimmer whereby that port on of the mixture having the greatest concentration of dust will be deflected through said tangential outlet.
2. In a separating system, means for setting up current of as through the system, and a separating dev1ce includmg a separator chamber tangentially receivin a, mixture of material and gas and axially ischar 'n the rotating unseparated mixture, a cylm rical chamber associated withsaid separating chamber-t0 axially receive said discharge,
said cylindrical chamber having a peripheral outlet and an axial outlet, and a second cylindrical chamber associated with said first cylindrical chamber to receive the discharge leaving said axial outlet, said secondv cylindrical chamber having a peripheral outlet and a relief valvecontrolled axial outlet.-
3. In a separating system, means for settin up a current of gas through the system, an a separating device including a separator chamber tangentiall receivin a mixture of material and gas an axially discharging the rotating unseparated mixture, a cylindrical chamber associated with said separating chamber to axially receive said dlscharge said cylindrical chamber having a peripheral outlet and an axial outlet, and a second cylindrical'chamber associated with said first cylindrical chamber to receive the discharge leaving said axial outlet, said second cylindrical chamber having a peripheral outlet and a relief valve controlled axial outlet, together with means in said second cylindrical chamber for changing the rotary motion of the gas into straight line motion. I
4. A centrifugal separator having an axial outlet for rotating gas and dust, a cylindrical chamber for receiving the rotating gas and dust dischargin through said outlet, an outlet opening in the cylindrical portion of said rent of gas in the system; a conveyor receiving said discharge; and means communicably connecting the lower portion of the separator to a point of suction in the system for relieving pressure from the lower portion of the separator. v
In testimony whereof I have hereunto signed my name.
HENRY KREISINGER.
US334591A 1929-01-23 1929-01-23 Fuel pulverizing system Expired - Lifetime US1882329A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US334591A US1882329A (en) 1929-01-23 1929-01-23 Fuel pulverizing system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US334591A US1882329A (en) 1929-01-23 1929-01-23 Fuel pulverizing system

Publications (1)

Publication Number Publication Date
US1882329A true US1882329A (en) 1932-10-11

Family

ID=23307911

Family Applications (1)

Application Number Title Priority Date Filing Date
US334591A Expired - Lifetime US1882329A (en) 1929-01-23 1929-01-23 Fuel pulverizing system

Country Status (1)

Country Link
US (1) US1882329A (en)

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2440285A (en) * 1943-04-28 1948-04-27 Henry G Lykken Pulverizing and classifying machine having a rotor comprising superimposed sections
US2604956A (en) * 1948-12-04 1952-07-29 Aaron Kantrow Cyclone separator
US2934276A (en) * 1953-09-22 1960-04-26 Majac Inc Jet pulverizer
US3010579A (en) * 1959-08-17 1961-11-28 Duesling Clarence Lehi Mineral desliming concentrating and separating apparatus
US3017993A (en) * 1958-12-31 1962-01-23 Aerofall Mills Inc Air classification system
US3282515A (en) * 1963-09-17 1966-11-01 J B Sedberry Inc Mobile classified materials disintegrator
US4217207A (en) * 1977-12-14 1980-08-12 Liller Delbert I Continuous method of cleaning a slurry of crushed raw coal
US4219409A (en) * 1977-12-14 1980-08-26 Liller Delbert I Inlet line deflector and equalizer means for a classifying cyclone used for washing and method of washing using deflectors and equalizers
US4246013A (en) * 1979-11-21 1981-01-20 Andrew Truhan Cyclone type air/particulate concentrator and collector
US5839673A (en) * 1996-09-10 1998-11-24 Williams; Robert M. Apparatus for grinding material
US20220143622A1 (en) * 2019-03-19 2022-05-12 Airgrinder Ab Method and apparatus for grinding and drying a material or a mixture of materials

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2440285A (en) * 1943-04-28 1948-04-27 Henry G Lykken Pulverizing and classifying machine having a rotor comprising superimposed sections
US2604956A (en) * 1948-12-04 1952-07-29 Aaron Kantrow Cyclone separator
US2934276A (en) * 1953-09-22 1960-04-26 Majac Inc Jet pulverizer
US3017993A (en) * 1958-12-31 1962-01-23 Aerofall Mills Inc Air classification system
US3010579A (en) * 1959-08-17 1961-11-28 Duesling Clarence Lehi Mineral desliming concentrating and separating apparatus
US3282515A (en) * 1963-09-17 1966-11-01 J B Sedberry Inc Mobile classified materials disintegrator
US4217207A (en) * 1977-12-14 1980-08-12 Liller Delbert I Continuous method of cleaning a slurry of crushed raw coal
US4219409A (en) * 1977-12-14 1980-08-26 Liller Delbert I Inlet line deflector and equalizer means for a classifying cyclone used for washing and method of washing using deflectors and equalizers
US4246013A (en) * 1979-11-21 1981-01-20 Andrew Truhan Cyclone type air/particulate concentrator and collector
US5839673A (en) * 1996-09-10 1998-11-24 Williams; Robert M. Apparatus for grinding material
US20220143622A1 (en) * 2019-03-19 2022-05-12 Airgrinder Ab Method and apparatus for grinding and drying a material or a mixture of materials

Similar Documents

Publication Publication Date Title
US1882329A (en) Fuel pulverizing system
US3794251A (en) Material reducing system and apparatus
US2435927A (en) Drying and disintegrating of gasborne material
US2153026A (en) Dust collector
KR900000884B1 (en) Vertical roller mill
US2152367A (en) Drying apparatus
US2290664A (en) Separating apparatus
US3397845A (en) Grinding mill plant
US2822153A (en) Agricultural dehydrating system
US3013734A (en) Method of and apparatus for the drying of goods to be ground in a grinding and sifting apparatus
US2174630A (en) Classification system for pulverized materials
US2662694A (en) Tempered air swept pulverizer and classifier with common fan means to transport unclassified material and pulverized oversize particles to the classifier
US3477650A (en) Apparatus to provide inert atmosphere in material reducing mills
US2100734A (en) Mill and classifier
US3229650A (en) Process for burning coal in a pulverized fuel burner
US2270143A (en) Separating mill
US3002472A (en) Comminution system for wet solid materials
US2373969A (en) Combined centrifugal fan and dust collector
US1686719A (en) Fuel-pulverizing system
US1920117A (en) Pulverized fuel burner
US3565349A (en) Installation for pulverizing and drying crude quarry products
US3354555A (en) Apparatus for drying finely divided particles
US3263338A (en) Flash drying system for fine coal
US1719119A (en) Separator
US2796249A (en) Apparatus for heating finely divided solid material