CN103953925A - Photon energy boiler energy-saving and environment-friendly device - Google Patents

Photon energy boiler energy-saving and environment-friendly device Download PDF

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Publication number
CN103953925A
CN103953925A CN201410210768.1A CN201410210768A CN103953925A CN 103953925 A CN103953925 A CN 103953925A CN 201410210768 A CN201410210768 A CN 201410210768A CN 103953925 A CN103953925 A CN 103953925A
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firing
fuel
gas
photon energy
oxide
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CN201410210768.1A
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CN103953925B (en
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刘贡友
谢韵
刘昕
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Nanjing Yongze Environmental Protection Technology Co.,Ltd.
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刘贡友
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Abstract

The invention provides a photon energy boiler energy-saving and environment-friendly device which comprises a fuel oil and gas pretreatment device, a pre-mixing device and a burning chamber, wherein the fuel oil and gas pretreatment device comprises an outer shell, ceramic chips and a spring, one end of the outer shell is provided with a fuel oil and gas inlet, the other end of the outer shell is provided with a fuel oil and gas outlet, the ceramic chips are arranged inside the outer shell, and the spring is arranged between the ceramic chips; the pre-mixing device comprises a pre-mixing chamber and a turbofan, one end of the pre-mixing chamber is provided with a fuel oil and gas jetting mouth, the other end of the pre-mixing chamber is provided with an air outlet, the upper side, close to the fuel oil and gas jetting mouth, of the pre-mixing chamber is provided with an air inlet, and the turbofan is arranged in the middle part of the pre-mixing chamber. The photon energy boiler energy-saving and environment-friendly device is good in atomization effect and even in fuel oil, gas and air mixing, the heat transmission and heat collision speed is improved through a photon energy field, and the burning efficiency is improved.

Description

A kind of photon energy boiler energy-saving environmental protecting device
Technical field
The invention belongs to industrial energy saving and reduce discharging field, be specifically related to a kind of photon energy boiler energy-saving environmental protecting device.
Background technology
Industrial boilers in China has a large capacity and a wide range, and ends for the end of the year 2008, and China is using 570,000 of Industrial Boilers.Due to pollutants such as Industrial Boiler discharge volume of smoke and sulfur dioxide and nitrogen oxide, become one of China's atmosphere primary pollution source.The pollutant emission of the annual Industrial Boiler of China is about: flue dust: 8,000,000 t/a; CO2:12.5 hundred million t/a.At present, in general, Industrial Boiler energy resource consumption and disposal of pollutants all occupy national industrial trade the second, are only second to station boiler, energy-output ratio is far above the highly energy-consuming such as iron and steel, petrochemical industry industrial trade, and existing boiler combustion rate is low, the thermal efficiency is low, pollution from exhaust emission is serious.
Summary of the invention
The object of the invention is the defect in order to solve above-mentioned prior art, provide one can improve combustion rate, save the energy, reduce discharge photon energy saving emission reduction device of boiler.
The solution that the present invention adopts is: a kind of photon energy boiler energy-saving environmental protecting device, it is characterized in that, comprise fuel-firing gas-firing pretreatment unit, pre-mixing apparatus and combustion chamber, described fuel-firing gas-firing pretreatment unit comprises shell, ceramic chip and spring, one end of described shell arranges fuel-firing gas-firing import, the other end of described shell is fuel-firing gas-firing outlet, and described ceramic chip is arranged on described enclosure, and described spring is set between described ceramic chip; Described pre-mixing apparatus comprises premixer and turbofan, one end of described premixer arranges fuel-firing gas-firing jet, the other end of described premixer sets out gas port, described premixer arranges air inlet near the upside of fuel-firing gas-firing jet, described turbofan is arranged on the middle part of described premixer, the fuel-firing gas-firing outlet of described fuel-firing gas-firing pretreatment unit is connected with the fuel-firing gas-firing jet of described pre-mixing apparatus, and the gas outlet of described pre-mixing apparatus is connected with described combustion chamber.
Further, described shell is stainless steel material, and described spring is corrosion-resistant stainless steel material.
Further, described ceramic chip is alveolate texture, on described ceramic chip, air-vent is set.
Further, the component of described ceramic chip and proportioning are: zirconium cerium oxide solid solution: 2%-8%, manganese oxide: 1%-8%, cobalt oxide: 2%-5%, titanium oxide: 3%-6%, chromium oxide: 5%-8%, lanthana: 1%-9%, iron oxide: 2%-7%, yittrium oxide: 1%-3%, molybdenum sulfide: 2%-5%, carborundum: 25%-60%, tourmaline: 8%-30%, adhesive: 3%-5%.
Further, the angle of described fuel-firing gas-firing jet is 45 ° ~ 90 °.
Further, described turbofan blade lean angle is 15 °-45° angle, and turbofan blade is 5-25 sheet.
Further, described Inner Wall of Combustion Chamber spraying photon energy sprayed on material.
Further, described photon energy sprayed on material component and percentage by weight are: zirconium cerium oxide solid solution: 5%-20%, cobalt oxide: 1%-6%, iron oxide: 4%-10%, titanium oxide: 2%-7%, lanthana: 2%-8%, yittrium oxide: 1%-4%, carborundum: 30%-80%.
Further, the inner surface of described pre-mixing apparatus arranges ionized material.
Closer, the component of described ionized material and proportioning are: zirconium cerium oxide solid solution, 10%-15%; Tourmaline powder, 25%-35%; Radium stone flour, 10%-15%; Nano-titanium oxide, 10%-20%; Rare earth luminescent material, 5%-8%; Stabilizing agent, 0.5%.
Advantage of the present invention is: the present invention is by fuel-firing gas-firing pretreatment unit, activation of fuel oil combustion gas molecule, promote fission, reach the object of atomization, first mix fuel-firing gas-firing one end that fuel-firing gas-firing entrance and air inlet are set of pre-mixing apparatus with air, make mist become rotation form to carry out secondary mixing by turbofan, fuel-firing gas-firing is mixed more abundant with air.By at Inner Wall of Combustion Chamber spraying photon energy sprayed on material, form photon energy field, raising heat is transmitted and heat is sprayed the speed of hitting, and improves efficiency of combustion.
Brief description of the drawings
Fig. 1 is a kind of photon energy boiler energy-saving environmental protecting device structure that the present invention proposes;
Fig. 2 is the fuel-firing gas-firing pretreatment unit structure enlarged drawing described in Fig. 1;
Fig. 3 is the pre-mixing apparatus structure enlarged drawing described in Fig. 1;
Fig. 4 is ceramic chip side view of the present invention;
Fig. 5 is ceramic chip top view of the present invention.
Detailed description of the invention
Below in conjunction with specific embodiment, the present invention is introduced.
Embodiment mono-
Referring to Fig. 1 to Fig. 5, wherein Fig. 1 is a kind of photon energy boiler energy-saving environmental protecting device structure that the present invention proposes; Fig. 2 is the fuel-firing gas-firing pretreatment unit structure enlarged drawing described in Fig. 1; Fig. 3 is the pre-mixing apparatus structure enlarged drawing described in Fig. 1.
As shown in Figure 1, Figure 2 and Figure 3, a kind of photon energy boiler energy-saving environmental protecting device, it is characterized in that, comprise fuel-firing gas-firing pretreatment unit 1, pre-mixing apparatus 2 and combustion chamber 3, described fuel-firing gas-firing pretreatment unit 1 comprises shell 11, ceramic chip 12 and spring 13, and one end of described shell 11 arranges fuel-firing gas-firing import 14, and the other end of described shell 11 is fuel-firing gas-firing outlet 15, described ceramic chip 12 is arranged on described shell 11 inside, and described spring 13 is set between described ceramic chip 12; Described pre-mixing apparatus 2 comprises premixer 21 and turbofan 22, one end of described premixer 21 arranges fuel-firing gas-firing jet 23, the other end of described premixer 21 sets out gas port 24, described premixer 21 arranges air inlet 25 near the upside of fuel-firing gas-firing jet 23, described turbofan 22 is arranged on the middle part of described premixer 21, the fuel-firing gas-firing outlet 15 of described fuel-firing gas-firing pretreatment unit 1 is connected with the fuel-firing gas-firing jet 23 of described pre-mixing apparatus 2, and the gas outlet 24 of described pre-mixing apparatus 2 is connected with described combustion chamber 3.
In the embodiment of the present invention, fuel-firing gas-firing pretreatment unit carries out pretreated device to fuel oil or combustion gas, fuel oil or combustion gas enter pretreatment unit, by the photon energy high energy ceramic chip that is arranged on enclosure, fuel oil and combustion gas are carried out to pretreatment, fuel-firing gas-firing after treatment enters into pre-mixing apparatus and is mixed output to combustion chamber with air and burns.
In the embodiment of the present invention, some joint photon energy high energy ceramic chips are set in pretreatment unit, between photon energy high energy ceramic chip, corrosion-resistant spring are set.
In the embodiment of the present invention, by fuel-firing gas-firing pretreatment unit, activation of fuel oil combustion gas molecule, promotes fission, is conducive to reach the object of atomization.
Described shell 11 is stainless steel material, and described spring 13 is corrosion-resistant stainless steel material.In the embodiment of the present invention, described stainless steel casing is cylinder or other are irregularly shaped.
Described ceramic chip 12 is alveolate texture, on described ceramic chip 12, air-vent 16 is set.
In the embodiment of the present invention, described photon energy high energy ceramic chip is cellular, has some air-vents 12 so that combustion gas is passed through.Shown in Fig. 4 and Fig. 5, Fig. 4 is ceramic chip side view of the present invention; Fig. 5 is ceramic chip top view of the present invention.
The angle of described fuel-firing gas-firing jet 23 is 45 ° ~ 90 °.
In the embodiment of the present invention, described fuel-firing gas-firing entrance is set to 45 ° ~ 90 °, make fuel-firing gas-firing in when ejection, collision at tube wall, further break up fuel-firing gas-firing micel, be convenient to better mix with the air of air inlet.
Described turbofan 22 blade lean angles are 15 °-45° angle, and turbofan blade is 5-25 sheet.
In the embodiment of the present invention, first mix fuel-firing gas-firing one end that fuel-firing gas-firing entrance and air inlet are set of pre-mixing apparatus with air, make mist become rotation form to carry out secondary mixing by turbofan, the energetic ion formed material of pre-mixing apparatus inwall promotes fuel-firing gas-firing ionization, fuel-firing gas-firing is mixed more abundant with air, gaseous mixture connects burner injection finally by venthole and enters combustion chambers burn.
Described combustion chamber 3 inner-wall spraying photon energy sprayed on material.
In the embodiment of the present invention, Inner Wall of Combustion Chamber spraying photon energy sprayed on material, forms photon energy field, and raising heat is transmitted and heat is sprayed the speed of hitting, and improves efficiency of combustion.
 
The invention provides a kind of a kind of ceramic chip for fuel-firing gas-firing pretreatment unit, its component and proportioning are: zirconium cerium oxide solid solution 2%-8%, manganese oxide 1%-8%, cobalt oxide 2%-5%, titanium oxide 3%-6%, chromium oxide 5%-8%, lanthana 1%-9%, iron oxide 2%-7%, yittrium oxide 1%-3%,, molybdenum sulfide 2%-5%/, carborundum 25%-60%, tourmaline 8%-30%, adhesive 3%-5%.
In the embodiment of the present invention, carborundum described in the component of ceramic chip can be replaced with silica or silicon nitride or acetic acid silicon.
Ceramic chip provided by the invention has been applied lanthanide series and transition metal is afterwards synthetic and far-infrared material is collaborative uses in photon energy boiler energy-saving environmental protecting device.
Embodiment bis-
An embodiment of a kind of ceramic chip provided by the invention is: the component of ceramic chip and proportioning are: zirconium cerium oxide solid solution 15%, manganese oxide 4%, cobalt oxide 3%, titanium oxide 4%, chromium oxide 6%, lanthana 4%, iron oxide 2%, yittrium oxide 3%, molybdenum sulfide 5%, carborundum (or silica or silicon nitride or acetic acid silicon) 25%, tourmaline 25%, adhesive 4%.
After being milled to 1000 orders, mixes above-mentioned material (except lanthanide series rare-earth elements and zirconium cerium oxide solid solution), and after 10 hours, be again milled to 2000 orders with the temperature calcining of 750 degree, lanthanide series rare-earth elements and zirconium cerium oxide solid solution adopt impregnating method preparation, then add bonding agent punch forming, then form in 1232 degree calcinings.
Embodiment tri-
Second embodiment of a kind of ceramic chip provided by the invention is: the component of ceramic chip and proportioning are: zirconium cerium oxide solid solution 12%, manganese oxide 5%, cobalt oxide 3%, titanium oxide 5%, chromium oxide 6%, lanthana 5%, iron oxide 5%, yittrium oxide 2%, molybdenum sulfide 7%, carborundum (or silica or silicon nitride or acetic acid silicon) 20%, tourmaline 30%, adhesive 5%.
After being milled to 480 orders, mixes above-mentioned material (except lanthanide series rare-earth elements and zirconium cerium oxide solid solution), and after 8.5 hours, be again milled to 1800 orders with the temperature calcining of 900 degree, lanthanide series rare-earth elements and zirconium cerium oxide solid solution adopt impregnating method preparation, then add bonding agent punch forming, then form in 1180 degree calcinings.
Embodiment tetra-
Another embodiment of a kind of ceramic chip provided by the invention is: the component of ceramic chip and proportioning are: manganese oxide 8%, cobalt oxide 3%, titanium oxide 4.5%, chromium oxide 5%, lanthana 3%, iron oxide 2%, yittrium oxide 2%, zirconia 2.5%, carborundum (or silica or silicon nitride or acetic acid silicon) 44%, tourmaline 23%, adhesive 3%.
After being milled to 500 orders, mixes above-mentioned material (except lanthanide series rare-earth elements and zirconium cerium oxide solid solution), and after 12 hours, be again milled to 800 orders with the temperature calcining of 850 degree, lanthanide series rare-earth elements and zirconium cerium oxide solid solution adopt impregnating method preparation, then add bonding agent punch forming, then form in 1280 degree calcinings.
 
The invention provides a kind of photon energy sprayed on material spraying for combustion chamber, made by following percentage by weight raw material: zirconium cerium oxide solid solution 5%-20%, cobalt oxide 1%-6%, iron oxide 4%-10%, titanium oxide 2%-7%, lanthana 2%-8%, yittrium oxide 1%-4%, carborundum 30%-80%.
In the embodiment of the present invention, carborundum described in the component of ceramic chip can be replaced with silica or silicon nitride or acetic acid silicon.
Embodiment five
A kind of embodiment of a kind of photon energy sprayed on material provided by the invention is: cobalt oxide 3%, iron oxide 6%, titanium oxide 5%, zirconia 8%, lanthana 6%, cerium oxide 3%, yittrium oxide 2%, carborundum (or silica or silicon nitride or acetic acid silicon) 67%.
After above-mentioned material is milled to 600 orders, mix, and after 38 hours, be again milled to 2000 order dusty materials with the temperature calcining of 1300 degree, can spray.
Embodiment six
The second embodiment of a kind of photon energy sprayed on material provided by the invention is: cobalt oxide 4%, iron oxide 5%, titanium oxide 5%, zirconia 10%, lanthana 7%, cerium oxide 3%, yittrium oxide 2%, carborundum (or silica or silicon nitride or acetic acid silicon) 64%.
After above-mentioned material is milled to 600 orders, mix, and after 35 hours, be again milled to 2000 order dusty materials with the temperature calcining of 1320 degree, can spray.
Embodiment seven
The another kind of embodiment of a kind of photon energy sprayed on material provided by the invention is: cobalt oxide 3.5%, iron oxide 5.5%, titanium oxide 5%, zirconia 15%, lanthana 5%, cerium oxide 3%, yittrium oxide 2%, carborundum (or silica or silicon nitride or acetic acid silicon) 61%.
After above-mentioned material is milled to 800 orders, mix, and after 40 hours, be again milled to 2000 order dusty materials with the temperature calcining of 1280 degree, can spray.
Embodiment eight
The present invention also provides a kind of ionized material for pre-mixing apparatus inwall, and its component and proportioning are: zirconium cerium oxide solid solution 10%-15%, tourmaline powder 25%-35%, radium stone flour 10%-15%, nano-titanium oxide 10%-20%, rare earth luminescent material 5%-8%, stabilizing agent 0.5%.
After above-mentioned material fully mixes, adopt the how warm rank of time segment synthetic, application liquid-phase coprecipitation is produced, and after finally mixing with organic water-soluble binding agent 20%-30%, evenly mixing arrangement inwall is carried out to surface treatment.
The present invention can be used for existing boiler to carry out energy-saving and emission-reduction transformation, also can be applied to the manufacture of environmental protection energy-saving boiler.Photon energy sprayed on material of the present invention also can be applicable to the inwall processing of coal-burning boiler and other industrial furnaces, and therefore the application of photon energy sprayed on material of the present invention aspect burning is protection scope of the present invention.
Above a kind of photon energy boiler energy-saving environmental protecting device provided by the present invention is described in detail, applied specific case herein principle of the present invention and embodiment are set forth, the explanation of above embodiment is just for helping to understand method of the present invention and core concept thereof; , for one of ordinary skill in the art, according to thought of the present invention, all will change in specific embodiments and applications, in sum, this description should not be construed as limitation of the present invention meanwhile.

Claims (10)

1. a photon energy boiler energy-saving environmental protecting device, it is characterized in that, comprise: fuel-firing gas-firing pretreatment unit (1), pre-mixing apparatus (2) and combustion chamber (3), described fuel-firing gas-firing pretreatment unit (1) comprises shell (11), ceramic chip (12) and spring (13), one end of described shell (11) arranges fuel-firing gas-firing import (14), the other end of described shell (11) is fuel-firing gas-firing outlet (15), described ceramic chip (12) is arranged on described shell (11) inside, and described spring (13) is set between described ceramic chip (12), described pre-mixing apparatus (2) comprises premixer (21) and turbofan (22), one end of described premixer (21) arranges fuel-firing gas-firing jet (23), the other end of described premixer (21) sets out gas port (24), described premixer (21) arranges air inlet (25) near the upside of fuel-firing gas-firing jet (23), described turbofan (22) is arranged on the middle part of described premixer (21), the fuel-firing gas-firing outlet (15) of described fuel-firing gas-firing pretreatment unit (1) is connected with the fuel-firing gas-firing jet (23) of described pre-mixing apparatus (2), the gas outlet (24) of described pre-mixing apparatus (2) is connected with described combustion chamber (3).
2. a kind of photon energy boiler energy-saving environmental protecting device according to claim 1, is characterized in that, described shell (11) is stainless steel material, and described spring (13) is corrosion-resistant stainless steel material.
3. a kind of photon energy boiler energy-saving environmental protecting device according to claim 1, is characterized in that, described ceramic chip (12) is alveolate texture, and air-vent (16) is set on described ceramic chip (12).
4. a kind of photon energy boiler energy-saving environmental protecting device according to claim 3, is characterized in that, component and the proportioning of described ceramic chip (12) are: zirconium cerium oxide solid solution, 2%-8%; Manganese oxide, 1%-8%; Cobalt oxide, 2%-5%; Titanium oxide, 3%-6%; Chromium oxide, 5%-8%; Lanthana, 1%-9%; Iron oxide, 2%-7%; Yittrium oxide, 1%-3%; Molybdenum sulfide, 2%-5%; Carborundum, 25%-60%; Tourmaline, 8%-30%; Adhesive, 3%-5%.
5. a kind of photon energy boiler energy-saving environmental protecting device according to claim 1, is characterized in that, the angle of described fuel-firing gas-firing jet (23) is 45 ° ~ 90 °.
6. a kind of photon energy boiler energy-saving environmental protecting device according to claim 1, is characterized in that, described turbofan (22) blade lean angle is 15 °-45° angle, and turbofan blade is 5-25 sheet.
7. a kind of photon energy boiler energy-saving environmental protecting device according to claim 1, is characterized in that, described combustion chamber (3) inner-wall spraying photon energy sprayed on material.
8. a kind of photon energy boiler energy-saving environmental protecting device according to claim 7, is characterized in that, described photon energy sprayed on material component and percentage by weight are: zirconium cerium oxide solid solution, 5%-20%; Cobalt oxide, 1%-6%; Iron oxide, 4%-10%; Titanium oxide, 2%-7%; Lanthana, 2%-8%; Yittrium oxide, 1%-4%; Carborundum, 30%-80%.
9. a kind of photon energy boiler energy-saving environmental protecting device according to claim 1, is characterized in that, the inner surface of described pre-mixing apparatus (2) arranges ionized material.
10. a kind of photon energy boiler energy-saving environmental protecting device according to claim 9, is characterized in that, the component of described ionized material and proportioning are: zirconium cerium oxide solid solution, 10%-15%; Tourmaline powder, 25%-35%; Radium stone flour, 10%-15%; Nano-titanium oxide, 10%-20%; Rare earth luminescent material, 5%-8%; Stabilizing agent, 0.5%.
CN201410210768.1A 2014-05-19 2014-05-19 A kind of photon energy boiler energy-saving environmental protecting device Active CN103953925B (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106839412A (en) * 2016-12-26 2017-06-13 江西韵动新能源科技有限公司 Photon resonance energy electric boiler

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Publication number Priority date Publication date Assignee Title
US5044558A (en) * 1989-05-09 1991-09-03 Halliburton Company Burner nozzle with replaceable air jetting assembly
CN2227284Y (en) * 1995-03-07 1996-05-15 林益煌 Whole-function catalyst combustion aid
CN2446398Y (en) * 2000-09-14 2001-09-05 林家庆 Environmental protection non fuel products fuel improving unit
CN1549877A (en) * 2001-08-30 2004-11-24 TDA�о����޹�˾ Burners and combustion apparatus for carbon nanomaterial production
CN2748785Y (en) * 2004-11-22 2005-12-28 河南农业大学 Biomass gas combustor
CN103363797A (en) * 2013-07-28 2013-10-23 黄华杰 Efficient energy-saving environment-friendly organic waste gas burning treatment device and system
CN203848284U (en) * 2014-05-19 2014-09-24 刘贡友 Energy-saving environment-friendly device of photon energy boiler

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5044558A (en) * 1989-05-09 1991-09-03 Halliburton Company Burner nozzle with replaceable air jetting assembly
CN2227284Y (en) * 1995-03-07 1996-05-15 林益煌 Whole-function catalyst combustion aid
CN2446398Y (en) * 2000-09-14 2001-09-05 林家庆 Environmental protection non fuel products fuel improving unit
CN1549877A (en) * 2001-08-30 2004-11-24 TDA�о����޹�˾ Burners and combustion apparatus for carbon nanomaterial production
CN2748785Y (en) * 2004-11-22 2005-12-28 河南农业大学 Biomass gas combustor
CN103363797A (en) * 2013-07-28 2013-10-23 黄华杰 Efficient energy-saving environment-friendly organic waste gas burning treatment device and system
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106839412A (en) * 2016-12-26 2017-06-13 江西韵动新能源科技有限公司 Photon resonance energy electric boiler

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