EP1504804A1 - Arrangement for partial recirculation of exhaust gases from heating boilers powered by gas or other fuels - Google Patents

Arrangement for partial recirculation of exhaust gases from heating boilers powered by gas or other fuels Download PDF

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Publication number
EP1504804A1
EP1504804A1 EP03017442A EP03017442A EP1504804A1 EP 1504804 A1 EP1504804 A1 EP 1504804A1 EP 03017442 A EP03017442 A EP 03017442A EP 03017442 A EP03017442 A EP 03017442A EP 1504804 A1 EP1504804 A1 EP 1504804A1
Authority
EP
European Patent Office
Prior art keywords
fumes
scrubbing
flue
previous
comburent air
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.)
Withdrawn
Application number
EP03017442A
Other languages
German (de)
French (fr)
Inventor
Ignazio Giacalone
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.)
TECNO AIR S.R.L
Original Assignee
Eurotecno Srl
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 Eurotecno Srl filed Critical Eurotecno Srl
Priority to EP03017442A priority Critical patent/EP1504804A1/en
Publication of EP1504804A1 publication Critical patent/EP1504804A1/en
Withdrawn legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23JREMOVAL OR TREATMENT OF COMBUSTION PRODUCTS OR COMBUSTION RESIDUES; FLUES 
    • F23J13/00Fittings for chimneys or flues 
    • F23J13/02Linings; Jackets; Casings
    • F23J13/025Linings; Jackets; Casings composed of concentric elements, e.g. double walled
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23CMETHODS OR APPARATUS FOR COMBUSTION USING FLUID FUEL OR SOLID FUEL SUSPENDED IN  A CARRIER GAS OR AIR 
    • F23C9/00Combustion apparatus characterised by arrangements for returning combustion products or flue gases to the combustion chamber
    • F23C9/06Combustion apparatus characterised by arrangements for returning combustion products or flue gases to the combustion chamber for completing combustion
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03CMAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03C3/00Separating dispersed particles from gases or vapour, e.g. air, by electrostatic effect
    • B03C3/02Plant or installations having external electricity supply
    • B03C3/04Plant or installations having external electricity supply dry type
    • B03C3/09Plant or installations having external electricity supply dry type characterised by presence of stationary flat electrodes arranged with their flat surfaces at right angles to the gas stream
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23CMETHODS OR APPARATUS FOR COMBUSTION USING FLUID FUEL OR SOLID FUEL SUSPENDED IN  A CARRIER GAS OR AIR 
    • F23C2202/00Fluegas recirculation
    • F23C2202/30Premixing fluegas with combustion air

Definitions

  • the present invention aims at providing simple devices for reducing polluting exhaust fumes emitted by balanced flue boilers powered by any type of fuel, whether gaseous, liquid or solid.
  • the comburent air inlet flue is coaxial, and generally external to the exhaust fume flue.
  • co-axial flues the combination of these two co-axial flues for comburent air and fume expulsion will be referred to using the term "co-axial flues".
  • the main aim of the present invention is to identify means able to modify the chemical composition of fumes downstream of the combustion chamber in order to reduce the concentration of unburnt gas.
  • a further aim of the present invention in a balanced flue boiler is to identify means able to destroy solid particle content in fumes downstream of the combustion chamber.
  • Another further aim of the present invention in a balanced flue boiler is to limit the installation of said means adapted for at least one of the aforesaid aims, within the co-axial flues.
  • Figure 1 shows the co-axial flues of a balanced flue boiler containing a first embodiment of the device according to the invention.
  • Figure 2 shows the co-axial flues of a balanced flue boiler containing a second embodiment of the device according to the invention.
  • the combustion products 5 (or fumes) pass through the fume expulsion flue 4 and are expelled into the external environment, while the comburent air 7 is sucked in through the air inlet flue 6.
  • said recirculation provides an improvement in energy performance, because more complete combustion permits greater utilization of the fuel calorific power, and because said part 5.1 of the recirculated fumes releases heat to the comburent air 7 instead of being lost in the environment.
  • said appropriate passages 8.1 or 8.2 can be composed of a simple opening 8.1, performed in the wall that separates the outlet flue 4° from inlet flue 6.
  • said appropriate passages 8.1 or 8.2 can alternatively be composed of ducts 8.2 of an appropriate shape to deflect the said part of the fumes 5.1 towards the interior of the inlet flue 6.
  • both figures 1 and 2 show that panels 9 are appropriately positioned and maintained inside the outlet flue 4, in a manner so that the fumes 5 can be filtered through the panels.
  • Said panels 9 can be composed of suitable perforated metal foil, or a well known type obtained through so-called micro-stretching, composed of sheets that have been previously subject to multiple cutting into regular rows, followed by stretching to obtain a type of net or mesh.
  • Said panels 9 are preferably maintained by suitable means at a potential which is different from that of the fumes 5 and the suspended particles transported by the fumes, so that the panels will attract and collect the particles through electrostatic attraction; methods and means for attracting particles using electrostatic attraction are well known and do not require further description.
  • a further advantage consists in the fact all the aforesaid means according to the present invention are enclosed within the unit formed by the co-axial flues 1.

Abstract

The aim of the present invention is to provide a method and device for partially recycling exhaust fumes (5) from the combustion chamber in a balanced flue boiler.
Suitable passages (8.1;8.2) are foreseen to connect the outlet flue (4) of the fumes (5) to the inlet flue (6) of the comburent air (7); said passages (8.1;8.2) being designed to take in part (5.1) of the fumes, that are then mixed with the comburent air (7) thus returning into the combustion chamber.
Inside the outlet flue (4) are positioned panels (9) in perforated or streched metal foil, electrostatically charged by well-known means, to filter and retain the suspended particles transported by the fumes (5).

Description

  • The present invention aims at providing simple devices for reducing polluting exhaust fumes emitted by balanced flue boilers powered by any type of fuel, whether gaseous, liquid or solid.
  • Balanced flue boilers have been well known for many years. In these models, the comburent air is taken in from the exterior, and obviously the combustion gas (or fumes) is expelled to the exterior.
  • For easy installation and other reasons such as the pre-heating of the comburent air using combustion gases through heat exchange in countercurrent, for example, the comburent air inlet flue is coaxial, and generally external to the exhaust fume flue. Hereafter the combination of these two co-axial flues for comburent air and fume expulsion will be referred to using the term "co-axial flues".
  • It is also a well-known fact that large efforts have been made to increase boiler heating efficiency as well as to reduce toxicity and the pollution levels of the emitted fumes.
  • Progress has been made in these directions using various devices, sometimes quite simple, but often very complex and costly, which act inside the combustion chamber during the combustion action itself, for example, by adjusting excess air and/or choosing appropriate shapes and materials for burners, while no interventions have been applied downstream of the combustion chamber so that the fumes are emitted into the external environment with the chemical composition and possible solid suspensions that have been produced in combustion, just as the comburent air used contains the same chemical composition found in the environment.
  • It is obvious that however sophisticated combustion control may be, it is impossible to generate fumes that are completely free of unburnt substances, or in the case of particular fuels, that are free of suspended particles.
  • The main aim of the present invention is to identify means able to modify the chemical composition of fumes downstream of the combustion chamber in order to reduce the concentration of unburnt gas.
  • A further aim of the present invention in a balanced flue boiler is to identify means able to destroy solid particle content in fumes downstream of the combustion chamber.
  • Another further aim of the present invention in a balanced flue boiler is to limit the installation of said means adapted for at least one of the aforesaid aims, within the co-axial flues.
  • These and other aims are attained through the means explained in the present description and in the appended claims that constitute an integral part of the basic description as well as the appended figures.
  • Figure 1 shows the co-axial flues of a balanced flue boiler containing a first embodiment of the device according to the invention.
  • Figure 2 shows the co-axial flues of a balanced flue boiler containing a second embodiment of the device according to the invention.
  • With reference to both figures, with 1 is identified the unit of the co-axial flues that connect the boiler 2 with the external environment 3.
  • The combustion products 5 (or fumes) pass through the fume expulsion flue 4 and are expelled into the external environment, while the comburent air 7 is sucked in through the air inlet flue 6.
  • It is well known that the circulation of the aeriform substances that pass to and from the boiler 2 is activated by a fan that, compared to the external environment 3, places the inlet flue 6 in a state of depression and the outlet flue 4 in a state of overpressure.
  • According to the present invention, it is foreseen that a part 5.1 of the fumes recirculate inside the combustion chamber. As stated previously, it is impossible to expel the fumes 5 from the combustion chamber completely free of unburnt gas such as carbon monoxide CO, or carbon dioxide CO2.
  • However, it has been discovered that by recirculating said part 5.1 of the fumes inside the combustion chamber, the part 5.2 of the same fumes expelled towards the exterior possess a lower level of unburnt gas, than fumes that are not sent for recirculation; therefore recirculation provides a lower pollution level than fumes that are not recirculated.
  • Moreover, said recirculation provides an improvement in energy performance, because more complete combustion permits greater utilization of the fuel calorific power, and because said part 5.1 of the recirculated fumes releases heat to the comburent air 7 instead of being lost in the environment.
  • To obtain said recirculation, it is sufficient to connect the outlet flue 4 with the inlet flue 6 through appropriate passages 8.1 or 8.2. Because of the relative pressures present, instead of being expelled towards the exterior 3, part of the fumes 5.1 pass from the outlet flue 4 to the inlet flue 6, to mix with the comburent air 7, returning in this manner into the combustion chamber.
  • With reference to figure 1, said appropriate passages 8.1 or 8.2 can be composed of a simple opening 8.1, performed in the wall that separates the outlet flue 4° from inlet flue 6.
  • With reference to figure 2, said appropriate passages 8.1 or 8.2 can alternatively be composed of ducts 8.2 of an appropriate shape to deflect the said part of the fumes 5.1 towards the interior of the inlet flue 6.
  • As far as the scrubbing of the suspended particles in the fumes 5 is concerned, both figures 1 and 2 show that panels 9 are appropriately positioned and maintained inside the outlet flue 4, in a manner so that the fumes 5 can be filtered through the panels.
  • Said panels 9 can be composed of suitable perforated metal foil, or a well known type obtained through so-called micro-stretching, composed of sheets that have been previously subject to multiple cutting into regular rows, followed by stretching to obtain a type of net or mesh. Said panels 9 are preferably maintained by suitable means at a potential which is different from that of the fumes 5 and the suspended particles transported by the fumes, so that the panels will attract and collect the particles through electrostatic attraction; methods and means for attracting particles using electrostatic attraction are well known and do not require further description.
  • Naturally said panels 9 must be cleaned regularly to remove all impurities attached; for this reason it is foreseen that the panels can be removed from the outlet flue 4 for cleaning, or alternatively, at least one part of the outlet flue 4 in which the panels 9 are mounted can be removed.
  • The advantages of the present invention are obvious: with the application of suitable means described previously, or other equivalent means, it is possible to scrub fumes 5 of any chemical type, and to reduce unburnt substances of physical type while retaining the transported powder particles. Moreover, it is possible to improve the thermal efficiency of the boilers on which the invention is applied, because of the improved utilization of the heating power of the combustible, as well as the fact that part of the thermal energy of the fumes is released to heat the comburent air.
  • A further advantage consists in the fact all the aforesaid means according to the present invention are enclosed within the unit formed by the co-axial flues 1.

Claims (11)

  1. Method for scrubbing exhaust fumes (5) from the combustion chamber of a balanced flue boiler
    consisting of the recirculation of part (5.1.) of said fumes (5) inside the combustion chamber, mixing said fumes with the comburent air (7).
  2. Method for scrubbing exhaust fumes (5) according to the previous claim,
    characterised in that
    the method also foresees the filtration of suspended particles transported by said fumes (5).
  3. Method for scrubbing exhaust fumes (5) according to any of the previous claims,
    characterised in that
    the method also foresees electrostatic attraction of the particles transported by said fumes (5).
  4. Device for the scrubbing of exhaust fumes (5) from the combustion chamber of a balanced flue boiler
    characterised in that
    said device foresees suitable passages (8.1; 8.2) that connect the outlet flue (4) for the expulsion of said fumes (5) with the inlet flue (6) of the comburent air (7), said passages (8.1; 8.2) being designed to take in part (5.1) of the fumes, that are then mixed with the comburent air (7).
  5. Device for the scrubbing of fumes (5) according to the previous claim
    characterised in that
    said passages (8.1; 8.2) are openings (8.1) performed in the wall that separates the outlet flue (4) of said fumes (5) and the inlet flue (6) of the comburent air (7).
  6. Device for the scrubbing of fumes (5) according to claim 4
    characterised in that
    said passages (8.1; 8.2) are ducts (8.2) realised in the most appropriate shape and adapted to deflect part (5.1) of said fumes (5) inside the inlet flue (6) of the comburent air (7).
  7. Device for the scrubbing of fumes (5) according to any of the previous claims from 4 to 6
    characterised in that
    said device foresees means (9) positioned inside the outlet flue (4) of said fumes (5) adapted to filter and retain the suspended particles transported by said fumes (5).
  8. Device for the scrubbing of fumes (5) according to the previous claim
    characterised in that
    said means (9) are composed of panels realised in perforated or stretched metal foil of various types.
  9. Device for the scrubbing of fumes (5) according to the previous claim
    characterised in that
    said perforated or stretched foil (9) is electrostatically charged with means well known in the art, in the most suitable manner to attract and retain said suspended particles transported by said fumes (5).
  10. Device for the scrubbing of fumes (5) according to any of the previous claims from 7 to 9
    characterised in that
    said means (9) adapted to filter and retain the suspended particles transported by said fumes (5) can be removed for cleaning.
  11. Device for the scrubbing of fumes (5) according to any of the previous claims from 4 to 10
    characterised in that
    said device is positioned inside the unit formed by the co-axial flues (1), said co-axial flues (1) being composed of the outlet flue (4) of said fumes (5) and the inlet flue (6) of the comburent air (7).
EP03017442A 2003-08-01 2003-08-01 Arrangement for partial recirculation of exhaust gases from heating boilers powered by gas or other fuels Withdrawn EP1504804A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP03017442A EP1504804A1 (en) 2003-08-01 2003-08-01 Arrangement for partial recirculation of exhaust gases from heating boilers powered by gas or other fuels

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP03017442A EP1504804A1 (en) 2003-08-01 2003-08-01 Arrangement for partial recirculation of exhaust gases from heating boilers powered by gas or other fuels

Publications (1)

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EP1504804A1 true EP1504804A1 (en) 2005-02-09

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EP03017442A Withdrawn EP1504804A1 (en) 2003-08-01 2003-08-01 Arrangement for partial recirculation of exhaust gases from heating boilers powered by gas or other fuels

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITUB20155050A1 (en) * 2015-10-19 2017-04-19 Bertelli & Partners Srl METHOD FOR THE REDUCTION OF NOVICI GAS EMISSIONS IN A GAS CHAMBER WITH COMBUSTION CHAMBER, WATER-RESISTANT AND FORCED DRAW AND BOILER SO OBTAINED
CN110657573A (en) * 2019-09-29 2020-01-07 安徽益禾机械有限公司 High-air-temperature hot blast stove with high-temperature flue gas flow equalizer

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3668836A (en) * 1970-01-22 1972-06-13 Chemical Construction Corp Electrostatic precipitator
US4411204A (en) * 1981-12-07 1983-10-25 Combustion Engineering, Inc. Method of firing a pulverized fuel-fired steam generator
EP0153046A2 (en) * 1984-02-02 1985-08-28 CARVER & CO. (ENGINEERS) LIMITED Improvements in or relating to heating apparatus
EP0244569A2 (en) * 1986-05-03 1987-11-11 Lentjes BWE Energietechnik GmbH Method and device of operating a steam generator
EP0634610A1 (en) * 1993-07-15 1995-01-18 MEULINK & GROL B.V. Combined burner air supply and combustion gas discharge system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3668836A (en) * 1970-01-22 1972-06-13 Chemical Construction Corp Electrostatic precipitator
US4411204A (en) * 1981-12-07 1983-10-25 Combustion Engineering, Inc. Method of firing a pulverized fuel-fired steam generator
EP0153046A2 (en) * 1984-02-02 1985-08-28 CARVER & CO. (ENGINEERS) LIMITED Improvements in or relating to heating apparatus
EP0244569A2 (en) * 1986-05-03 1987-11-11 Lentjes BWE Energietechnik GmbH Method and device of operating a steam generator
EP0634610A1 (en) * 1993-07-15 1995-01-18 MEULINK & GROL B.V. Combined burner air supply and combustion gas discharge system

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITUB20155050A1 (en) * 2015-10-19 2017-04-19 Bertelli & Partners Srl METHOD FOR THE REDUCTION OF NOVICI GAS EMISSIONS IN A GAS CHAMBER WITH COMBUSTION CHAMBER, WATER-RESISTANT AND FORCED DRAW AND BOILER SO OBTAINED
WO2017068407A1 (en) * 2015-10-19 2017-04-27 Bertelli & Partners S.R.L. Method for reducing harmful gas emissions from a gas-fired sealed combustion chamber forced-draught boiler using flue gas recirculation and according boiler
US20180299122A1 (en) * 2015-10-19 2018-10-18 Bertelli & Partners S.R.L. Method for reducing harmful gas emissions from a gas-fired sealed combustion chamber forced-draught boiler and boiler so obtained
EA036581B1 (en) * 2015-10-19 2020-11-26 Бертелли Энд Партнерс С.Р.Л. Method for reducing harmful gas emissions from a gas-fired sealed combustion chamber forced-draught boiler and boiler so obtained
US10851991B2 (en) 2015-10-19 2020-12-01 Bertelli & Partners S.R.L. Method for reducing harmful gas emissions from a gas-fired sealed combustion chamber forced-draught boiler and boiler so obtained
CN110657573A (en) * 2019-09-29 2020-01-07 安徽益禾机械有限公司 High-air-temperature hot blast stove with high-temperature flue gas flow equalizer

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