AT90263B - Gas generator with a shaft divided into a smoldering chamber and a gas guide chamber by a partition. - Google Patents

Gas generator with a shaft divided into a smoldering chamber and a gas guide chamber by a partition.

Info

Publication number
AT90263B
AT90263B AT90263DA AT90263B AT 90263 B AT90263 B AT 90263B AT 90263D A AT90263D A AT 90263DA AT 90263 B AT90263 B AT 90263B
Authority
AT
Austria
Prior art keywords
chamber
gas
partition
gas generator
smoldering
Prior art date
Application number
Other languages
German (de)
Inventor
Rudolf Bergmans
Original Assignee
Rudolf Bergmans
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 Rudolf Bergmans filed Critical Rudolf Bergmans
Application granted granted Critical
Publication of AT90263B publication Critical patent/AT90263B/en

Links

Description

  

   <Desc/Clms Page number 1> 
 



  Gaserzeuger mit durch eine Scheidewand in eine Schwelkammer und eine   Gasabfilhrnngskainmer unterteiltem Schacht.   
 EMI1.1 
 Roste geleitet werden, um dort zwecks Zersetzung in eine Zone zu gelangen, wo nur glühender Kohlenstoff   und   heisse   Kohlensäure.   jedoch kein freier Sauerstoff vorhanden ist. Zu diesem Zwecke wird der Gaserzeuger durch eine Seheidewand in eine   Sehwel- und   eine   Gasabführungskammer   geteilt und sowohl mit einem Schräg-als auch mit einem Planrost ausgestattet.

   Unterhalb dieser Roste befinden sieh zwei getrennte Kammern : von denen die eine zur   Zuführung der Verbreimungsluft nach dem Schrägrost und   die andere zur Leitung der Schwelgase durch den Planrost nach der heissen Zone des Gaserzeugers dient, so dass eine Berührung des Sauerstoffes der Verbrennungsluft mit den Schwelgasen nicht stattfinden kann. 
 EMI1.2 
 bei dem sich dieser Vorgang vollzieht. Er dient zum Beheizen eines Flammrohrkessels und eignet sich besonders zum Verfeuern von gasreiehen Brennstoffen. 



   Der Gaserzeuger besitzt den   Schrägrost-/und   den Planrost 2. Dieser ist zwecks Entfernung der 
 EMI1.3 
 zuerst zu Kohlensäure verbrennt und dass im weiteren Verlaufe dieses Gas dann zu   KoMenoxyd reduziert   wird. Die unten im   Gaserzeuger erzeugten Gase strömen in   die Gasabführungskammer 10, wo sie durch 
 EMI1.4 
 



   Die in der   Schwelkammer   8 entstehenden Entgasungsprodukte werden durch die Rohrleitung 9 in die Kammer 3 unterhalb des Rostes 2 geleitet und gelangen dann durch die Rostspalten in eine heisse Zone des Gaserzeugers, wo nur glühende Kohle und heisse Kohlensäure   vorhanden ist. Hier zerlegen sich   die leichten und schweren   Kohlenwasserstoffe,   und der   freis : ewordene Kohlenstoff verbindet sieh mit   
 EMI1.5 
 

**WARNUNG** Ende DESC Feld kannt Anfang CLMS uberlappen**.



   <Desc / Clms Page number 1>
 



  Gas generator with a shaft divided into a smoldering chamber and a gas discharge chamber by a partition.
 EMI1.1
 Grates are directed to reach a zone for the purpose of decomposition where only glowing carbon and hot carbonic acid. however, there is no free oxygen present. For this purpose, the gas generator is divided by a siding wall into a Sehwel- and a gas discharge chamber and equipped with both an inclined and a plan grate.

   Below these grids are two separate chambers: one is used to supply the combustion air to the inclined grate and the other to convey the carbonization gases through the plan grate to the hot zone of the gas generator, so that the oxygen in the combustion air does not come into contact with the carbonization gases can take place.
 EMI1.2
 in which this process takes place. It is used to heat a flame tube boiler and is particularly suitable for burning high-gas fuels.



   The gas generator has the inclined grate / and the plan grate 2. This is for the purpose of removing the
 EMI1.3
 first burns to carbonic acid and that in the further course this gas is then reduced to KoMenoxyd. The gases generated below in the gas generator flow into the gas discharge chamber 10, where they pass through
 EMI1.4
 



   The degassing products arising in the smoldering chamber 8 are passed through the pipeline 9 into the chamber 3 below the grate 2 and then pass through the grate gaps into a hot zone of the gas generator, where only glowing coal and hot carbonic acid are present. Here the light and heavy hydrocarbons break down, and the free carbon that has become associated with them
 EMI1.5
 

** WARNING ** End of DESC field may overlap beginning of CLMS **.

 

Claims (1)

anterteiltem Schacht, dadurch gekennzeichnet, dass der Raum unter dem Rost (1, in zwei getrennte Kammern f3, 5) geteilt ist, von denen die eine unter der Schwelkammer liegende (3) die Verbrennungsluft EMI1.6 **WARNUNG** Ende CLMS Feld Kannt Anfang DESC uberlappen**. divided shaft, characterized in that the space under the grate (1, is divided into two separate chambers f3, 5), one of which is located under the smoldering chamber (3) the combustion air EMI1.6 ** WARNING ** End of CLMS field may overlap beginning of DESC **.
AT90263D 1918-12-31 1921-03-23 Gas generator with a shaft divided into a smoldering chamber and a gas guide chamber by a partition. AT90263B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE90263X 1918-12-31

Publications (1)

Publication Number Publication Date
AT90263B true AT90263B (en) 1922-12-11

Family

ID=5643134

Family Applications (1)

Application Number Title Priority Date Filing Date
AT90263D AT90263B (en) 1918-12-31 1921-03-23 Gas generator with a shaft divided into a smoldering chamber and a gas guide chamber by a partition.

Country Status (1)

Country Link
AT (1) AT90263B (en)

Similar Documents

Publication Publication Date Title
DE2061829C2 (en) Process for the thermal treatment of fine-grained solids in a fluidized bed with internal combustion
AT90263B (en) Gas generator with a shaft divided into a smoldering chamber and a gas guide chamber by a partition.
DE569211C (en) Process for gasifying dust-like or fine-grain fuels in suspension
US1963167A (en) Method of and apparatus for generating water gas from pulverized fuel
DE330728C (en) Gas generator with a shaft divided into a smoldering chamber and a gas discharge chamber by a partition
GB321422A (en) Improvements in and apparatus for the production of combustible gases from granular and dust fuels
US538908A (en) Emile gobbe
AT83261B (en) Firing for flame tube boilers.
DE1091091B (en) Method and device for heating fluidized bed ovens
AT90262B (en) Shaft furnace for fuels rich in water and gas.
AT83089B (en) Firing for steam boilers.
AT99077B (en) Firing for pulverulent fuels.
US1888123A (en) Process for the manufacture of gas
DE45964C (en) Pressurized gas firing
DE457895C (en) Firing system for wood waste in connection with coal dust
Booth et al. Smoke Prevention and Fuel Economy:(based on the German Work of E. Schmatolla)
GB198530A (en) Improvements relating to the manufacture of coal-gas
US884869A (en) Burner.
AT86298B (en) Heating devices, in particular for cooking purposes.
US630282A (en) Process of combustion of liquid hydrocarbons.
AT111574B (en) Process for producing a mixture of water gas and distillation gas from bituminous fuels.
GB755634A (en) Improvements in or relating to the manufacture of combustible gases
US1129258A (en) Gas-producer.
US1716676A (en) Process of making mixed water gas and oil gas
AT37230B (en) Boiler gas firing.