CN202281241U - Combined structure of high-temperature spiral secondary air and furnace arches in biomass fuel chain-grate boiler - Google Patents

Combined structure of high-temperature spiral secondary air and furnace arches in biomass fuel chain-grate boiler Download PDF

Info

Publication number
CN202281241U
CN202281241U CN2011203744814U CN201120374481U CN202281241U CN 202281241 U CN202281241 U CN 202281241U CN 2011203744814 U CN2011203744814 U CN 2011203744814U CN 201120374481 U CN201120374481 U CN 201120374481U CN 202281241 U CN202281241 U CN 202281241U
Authority
CN
China
Prior art keywords
chimney arch
wind
biomass fuel
furnace
grate
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Withdrawn - After Issue
Application number
CN2011203744814U
Other languages
Chinese (zh)
Inventor
凌少东
唐海荣
曹卫
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.)
ZHANGJIAGANG WEIFU HEAT ENERGY TECHNOLOGY Co Ltd
Original Assignee
ZHANGJIAGANG WEIFU HEAT ENERGY TECHNOLOGY Co Ltd
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 ZHANGJIAGANG WEIFU HEAT ENERGY TECHNOLOGY Co Ltd filed Critical ZHANGJIAGANG WEIFU HEAT ENERGY TECHNOLOGY Co Ltd
Priority to CN2011203744814U priority Critical patent/CN202281241U/en
Application granted granted Critical
Publication of CN202281241U publication Critical patent/CN202281241U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E20/00Combustion technologies with mitigation potential
    • Y02E20/34Indirect CO2mitigation, i.e. by acting on non CO2directly related matters of the process, e.g. pre-heating or heat recovery

Landscapes

  • Solid-Fuel Combustion (AREA)

Abstract

The utility model discloses a combined structure of high-temperature spiral secondary air and furnace arches in a biomass fuel chain-grate boiler, which includes a front furnace arch, a rear furnace arch, a secondary air main pipe and an inclined secondary air pipe, wherein the parabola-shaped front furnace arch protruding to the interior of a furnace chamber is arranged on the front wall of the furnace chamber of the furnace; an L-shaped furnace arch and an inclined furnace arch are combined to form the rear furnace arch of the furnace; the secondary air main pipe taking the shape of a Chinese character 'hui' and enabling the secondary air to rise spirally is arranged between the parabola-shaped front furnace arch and the L-shaped furnace arch; the inclined secondary air pipe is arranged on the lower side of the inclined furnace arch; and both the inclined secondary air pipe and the secondary air main pipe taking the shape of the Chinese character 'hui' are communicated with an air preheater and a secondary induced draft fan. As per the characteristics of biomass fuel and through adopting the ingenious combined furnace arch structure and the reasonable primary and secondary air distribution structure, the combined structure enables the temperature field inside the furnace chamber to be distributed uniformly, guarantees that the biomass fuel is quickly and completely combusted, avoid biological tar and black smoke, has the combustion efficiency higher than 79%, and realizes the efficient and clean combustion of biomass fuel.

Description

The combining structure of high-temperature spiral secondary wind and chimney arch in the biomass fuel chain-grate boiler
Technical field
The utility model relates to the chain-grate boiler field, is specifically related to use secondary air distribution and furnace arch structure in the chain-grate boiler of biomass fuel.
Background technology
The biomass solid forming granular fuel (be called for short: combustion mechanism biomass fuel) is following: the one, and temperature on fire is low, burning is fast, has reduced the nitrogen oxide that high-temp combustion produces; The 2nd, the biomass fuel fugitive constituent is high, is about 3 times of coal, and the fugitive constituent in the granular fuel (cigarette) once separating out completing combustion, can be realized smokeless combustion at low-temperature condition; The 3rd, in the static combustion process, dust discharge amount is extremely low; The 4th, the biomass fuel sulfur-bearing is low, less than 1/10 of fire coal, need not to adopt the solid sulphur desulfurization of additive, compliance with environmental protection requirements; The 5th, behind the biomass combustion, in particle, form micropore, it is inner combustion-supporting to be beneficial to the air entering, and efficiency of combustion is high, and the lime-ash remaining carbon is extremely low.At present, biomass fuel is mainly used in various families warming stove, small size hot-water boiler, hot-blast stove etc.Traditional combustion coal chain boiler; Be provided with skewed back chimney arch in its burner hearth, be provided with an air distribution structure that constitutes by primary air fan and air compartment in its chain fire-gate bottom, no secondary air distribution structure in its burner hearth; This furnace arch structure and air distribution structure can not adapted biomass fuel high-volatiles, the fast combustion characteristics of burnout velocity; It is insufficient to cause burning, and makes the chimney over-emitting black exhaust, drips tar, is difficult to satisfy environmental protection requirement.
The utility model content
The utility model technical problem to be solved is: the combining structure that high-temperature spiral secondary wind and chimney arch in a kind of biomass fuel chain-grate boiler that can guarantee the biomass fuel high performance clean burning will be provided.
For addressing the above problem, the technical scheme below the utility model has adopted.
The combining structure of high-temperature spiral secondary wind and chimney arch in the described biomass fuel chain-grate boiler; Be characterized in: be provided with chimney arch before the projecting inward parabolic shape of burner hearth at the antetheca of boiler furnace; The lower end of the inclination chimney arch that is obliquely installed is connected the bottom position of burner hearth rear wall; The upper end of inclination chimney arch is connected with the horizontal segment of " L " shape chimney arch; " L " shape chimney arch becomes the back chimney arch of boiler with inclination chimney arch mutual group; Before parabolic shape, be provided with the Back Word secondary wind that is " returning " font layout between the vertical section of chimney arch and " L " shape stove baking and be responsible for, be respectively arranged with at least three branch branch wind pipes on four sides that the Back Word secondary wind is responsible for, and all wind curls above the traveling-grate stoker face that divide branch wind pipes to blow out rise to up-draught; At the downside of inclination chimney arch, be provided with inclination secondary air channel to canyon along the incline direction of squint chimney arch; Inclination secondary air channel and Back Word secondary wind are responsible for and all are connected on the secondary wind air intake house steward, and secondary wind air intake house steward is connected with first hot-blast outlet of air preheater, is connected with the secondary air-introduced machine in the first cold wind import of air preheater.
Further; The combining structure of high-temperature spiral secondary wind and chimney arch in the aforesaid biomass fuel chain-grate boiler; Wherein: above the traveling-grate stoker porch, be provided with chain-grate boiler in the first cooling by wind airduct that is connected of primary air fan, the air outlet of first cooling by wind airduct is downward-sloping and become 45 degree~60 degree angles with the traveling-grate stoker face along the fire grate feed direction.
Further, the combining structure of high-temperature spiral secondary wind and chimney arch in the aforesaid biomass fuel chain-grate boiler, wherein: the angle of inclination chimney arch and traveling-grate stoker face is 10~15 degree.
Further, the combining structure of high-temperature spiral secondary wind and chimney arch in the aforesaid biomass fuel chain-grate boiler, wherein: described Back Word secondary wind is responsible for the minimum place of overflow section that is arranged between the preceding chimney arch of parabolic shape and " L " shape chimney arch.
Further; The combining structure of high-temperature spiral secondary wind and chimney arch in the aforesaid biomass fuel chain-grate boiler; Wherein: second air inlet of described air preheater is connected with the exhanst gas outlet of economizer in the chain-grate boiler; The gas approach of economizer is connected with the exhanst gas outlet of chain-grate boiler, and second air outlet of air preheater is connected with the emptying air-introduced machine.
Further, the combining structure of high-temperature spiral secondary wind and chimney arch in the aforesaid biomass fuel chain-grate boiler, wherein: in the charging baffle plate of boiler feed bucket inboard, be provided with water-cooling wall, described water-cooling wall is made up of the water-cooled coiled pipe that coats helical fin.
The beneficial effect of the utility model is: chimney arch and the back chimney arch of being made up of " L " shape chimney arch and inclination chimney arch constitute the combined furnace arch of boiler jointly before the parabolic shape; The side wall on the upper vertical of chimney arch and " L " shape chimney arch part and burner hearth both sides constitutes the combustion chamber of boiler before the parabolic shape, and the side wall on inclination chimney arch and burner hearth both sides forms the secondary furnace of boiler.The radiation heating interaction energy of chimney arch makes biomass fuel separate out a large amount of volatile matters rapidly before the parabolic shape; The Back Word secondary wind is responsible for the secondary wind air-flow of the rising of shape in the shape of a spiral of ejection; Strengthened mixing of biomass fuel is separated out on the traveling-grate stoker face a large amount of fugitive constituents and combustion air, because the strong spiral perturbation action of secondary wind, the flame shape that rises in the shape of a spiral in the burner hearth; The flying dust that particle is bigger is thrown toward chamber wall; Fall into grate surface, reduced the content of flying dust in the flue gas, promoted the high temperature efficient burning of fugitive constituent in the combustion chamber.Be arranged in that inclination secondary air channel in the secondary furnace can increase and additional traveling-grate stoker on fixed carbon required oxygen-supplying amount when burning, it is fully burnt.
Description of drawings
Fig. 1 is the structural representation of the combining structure of high-temperature spiral secondary wind and chimney arch in the described biomass fuel chain-grate boiler of the utility model.
Fig. 2 is the catenation principle sketch map of first cooling by wind airduct and primary air fan in the utility model.
Fig. 3 is the syndeton sketch map of overlooking among Fig. 1 between the inclination secondary air channel shown in the direction, the Back Word secondary wind person in charge and the secondary air-introduced machine.
Fig. 4 is the structural representation of the water-cooling wall shown in Fig. 1 right-of-center in political views's apparent direction.
Fig. 5 is the structure for amplifying sketch map of B part among Fig. 1.
Fig. 6 is the structure for amplifying sketch map of A part among Fig. 1.
The specific embodiment
Be further described below in conjunction with the combining structure of accompanying drawing high-temperature spiral secondary wind and chimney arch in the described biomass fuel chain-grate boiler of the utility model.
Like Fig. 1, Fig. 6, Fig. 2, shown in Figure 3; The combining structure of high-temperature spiral secondary wind and chimney arch in the described biomass fuel chain-grate boiler; Comprise: be provided with chimney arch 4 before the projecting inward parabolic shape of burner hearth at the antetheca of boiler furnace 33; The lower end of the inclination chimney arch 51 that is obliquely installed is connected the bottom position of burner hearth 33 rear walls; The upper end of inclination chimney arch 51 is connected with the horizontal segment of " L " shape chimney arch 5; " L " shape chimney arch 5 and inclination chimney arch 51 be the back chimney arch of composition boilers jointly, before parabolic shape, be provided with between the vertical section of chimney arch 4 and " L " shape stove baking 5 to be the Back Word secondary wind person in charge 6 that " returning " font is arranged, and the Back Word secondary wind person in charge 6 are arranged on the minimum place of overflow section between the preceding chimney arch 4 of parabolic shape and " L " shape chimney arch 5; Be respectively arranged with four branch branch wind pipes 61 on four sides of the Back Word secondary wind person in charge 6 to up-draught; And all wind curls above traveling-grate stoker face 7 that divide branch wind pipe 61 to blow out rise; At the downside of inclination chimney arch 51, be provided with inclination secondary air channel 8 to canyon along the incline direction of squint chimney arch 51; Inclination secondary air channel 8 is connected on the secondary wind air intake house steward 18 through valve 82; The Back Word secondary wind is responsible for 6 and is connected on the secondary wind air intake house steward 18 through valve 62, and secondary wind air intake house steward 18 is connected with first hot-blast outlet of air preheater 16, is connected with secondary air-introduced machine 14 in the first cold wind import of air preheater 16; In the present embodiment; Second air inlet of described air preheater 16 is connected with the exhanst gas outlet of economizer 15 in the chain-grate boiler, and the gas approach of economizer 15 is connected with the exhanst gas outlet of chain-grate boiler, and second air outlet of air preheater 16 is connected with emptying air-introduced machine 17.Like this, the high-temperature flue gas that can further utilize boiler to discharge heats the secondary wind that secondary air-introduced machine 14 is introduced, and makes the secondary wind that gets in the boiler furnace 33 obtain preheating, forms high temperature secondary wind.
In the present embodiment; Like Fig. 1, Fig. 5, shown in Figure 2; Above traveling-grate stoker 7 porch, be provided with chain-grate boiler in the first cooling by wind airduct 3 that is connected of primary air fan 13, the air outlet 31 of first cooling by wind airduct 3 is downward-sloping and become 45 degree~60 degree angles with the traveling-grate stoker face along the feed direction of traveling-grate stoker 7.In the present embodiment, inclination chimney arch 51 is 10~15 degree with the angle of traveling-grate stoker face.In the present embodiment, like Fig. 1, shown in Figure 4, in the charging baffle plate of boiler feed bucket 1 inboard, be provided with water-cooling wall 2, described water-cooling wall 2 is made up of the water-cooled coiled pipe 21 that coats helical fin.
In the utility model; Chimney arch 4 and the back chimney arch of being made up of " L " shape chimney arch 5 and inclination chimney arch 51 constitute the combined furnace arch of boiler jointly before the parabolic shape; The side wall on the upper vertical of chimney arch 4 and " L " shape chimney arch 5 part and burner hearth 33 both sides constitutes the combustion chamber of boiler before the parabolic shape, and the side wall on inclination chimney arch 51 and burner hearth 33 both sides forms the secondary furnace of boiler.
The operation principle of the combining structure of high-temperature spiral secondary wind and chimney arch and advantage summary is as follows in the described biomass fuel chain-grate boiler of the utility model:
During chain-grate boiler work; Biomass fuel is entered on the traveling-grate stoker 7 by the feed hopper 1 of boiler; Be fed forward by traveling-grate stoker 7; The cold air that primary air fan 13 is carried enters into the both sides air compartment of traveling-grate stoker 7 bottoms, provides a required wind of burning for the biomass fuel on the traveling-grate stoker 7, makes biomass fuel acutely burning on traveling-grate stoker 7; Cold air also enters into first cooling by wind airduct 3 through the air compartment of these both sides simultaneously; The air outlet 31 of first cooling by wind airduct 3 will successively be seen cold wind off; Form the cold wind curtain wall that tilts to blow to the traveling-grate stoker face together, a small amount of fugitive constituent that biomass fuel is separated out is blown into before the parabolic shape in the combustion chamber behind the chimney arch 4, and blocks fugitive constituent and get into boiler feed bucket 1; Simultaneously; Water-cooling wall 2 in the charging baffle plate also can absorb heat, to reduce the temperature of biomass fuel inlet, so just can prevent the anti-burning phenomenon that general biomass fuel chain-grate boiler is prone to.
Along with moving up into the combustion chamber stage before the biomass fuel, separate out a large amount of fugitive constituents under the radiation effects of biomass fuel chimney arch 4 before parabolic shape, secondary wind is responsible for 6 through the Back Word secondary wind that air preheater 16 and connecting line get in the combustion chamber under the effect of secondary air-introduced machine 14; Rise from all wind curls above traveling-grate stoker face 7 that divide branch wind pipe 61 to blow out; The continuous spiral of secondary wind blows out, and the violent disturbance mixing auger of a large amount of fugitive constituents that fuel is separated out and high temperature secondary wind rises, and accomplishes the gasification clean burning; Simultaneously; The flying dust that particle is bigger is thrown toward chamber wall, falls into grate surface, has reduced the content of flying dust in the flue gas; Continuous reach along with traveling-grate stoker 7; The fixed carbon that biomass fuel combustion forms moves to secondary furnace; The fixed carbon that the high temperature secondary wind that secondary air-introduced machine 14 is blown into from top to bottom blows on the traveling-grate stoker 7 through inclination secondary air channel 8; Blow to grate surface on the wind direction of traveling-grate stoker 7 bottom air compartments simultaneously, under the double action of high temperature secondary wind and a wind, the fixed carbon burning is to complete after-flame.The high-temperature flue gas that biomass fuel combustion produces is along with the wind action of spiral secondary; Carry out heat exchange through convection bank 9; Convection bank 9 is connected between upper drum 10 and the next part case 11; Get into the inside flue of upper drum 10 through the high-temperature flue gas after the heat exchange after, the exhanst gas outlet through chain-grate boiler gets into economizer 15 and air preheater 16 again, under the effect of air-introduced machine 17, discharges at last.A small amount of dirt slag that burning produces drops in the ash dropping hopper 12 of chain-grate boiler bottom.
The utility model is according to the characteristic of biomass fuel, adopted the first cooling by wind airduct at water-cooling wall 2 and feed entrance place in the charging baffle plate to reduce the fuel temperature of charging aperture, stoped the generation of anti-burning phenomenon; Adopt chimney arch behind chimney arch before the parabolic shape, the combined type, combined to adopt an air distribution structure of traveling-grate stoker bottom air compartment and the cool air hose formation of fire grate porch, and the secondary air distribution structure of high temperature inclination secondary air channel formation in spiral high temperature secondary airduct and the secondary furnace in the burner hearth inner combustion chamber; Above-mentioned this structure of combined furnace arch cleverly and rational primary and secondary air air distribution structure; Make uniform distribution of temperature field in the burner hearth, guaranteed biomass fuel can be rapidly after-flame completely, prevent the generation of biological tar and black smoke; Efficiency of combustion is higher; Reach more than 79%, and fume amount is low in the smoke evacuation, does not contain tar and SO 2Etc. atmosphere pollution, meet environmental protection requirement, realized the high performance clean burning of biomass fuel.

Claims (6)

1. the combining structure of high-temperature spiral secondary wind and chimney arch in the biomass fuel chain-grate boiler; It is characterized in that: be provided with chimney arch before the projecting inward parabolic shape of burner hearth at the antetheca of boiler furnace; The lower end of the inclination chimney arch that is obliquely installed is connected the bottom position of burner hearth rear wall; The upper end of inclination chimney arch is connected with the horizontal segment of " L " shape chimney arch; " L " shape chimney arch becomes the back chimney arch of boiler with inclination chimney arch mutual group; Before parabolic shape, be provided with the Back Word secondary wind that is " returning " font layout between the vertical section of chimney arch and " L " shape stove baking and be responsible for, be respectively arranged with at least three branch branch wind pipes on four sides that the Back Word secondary wind is responsible for, and all wind curls above the traveling-grate stoker face that divide branch wind pipes to blow out rise to up-draught; At the downside of inclination chimney arch, be provided with inclination secondary air channel to canyon along the incline direction of squint chimney arch; Inclination secondary air channel and Back Word secondary wind are responsible for and all are connected on the secondary wind air intake house steward, and secondary wind air intake house steward is connected with first hot-blast outlet of air preheater, is connected with the secondary air-introduced machine in the first cold wind import of air preheater.
2. the combining structure of high-temperature spiral secondary wind and chimney arch in the biomass fuel chain-grate boiler according to claim 1; It is characterized in that: above the traveling-grate stoker porch, be provided with chain-grate boiler in the first cooling by wind airduct that is connected of primary air fan, the air outlet of first cooling by wind airduct is downward-sloping and become 45 degree~60 degree angles with the traveling-grate stoker face along the fire grate feed direction.
3. the combining structure of high-temperature spiral secondary wind and chimney arch in the biomass fuel chain-grate boiler according to claim 1 and 2 is characterized in that: the angle of inclination chimney arch and traveling-grate stoker face is 10~15 degree.
4. the combining structure of high-temperature spiral secondary wind and chimney arch in the biomass fuel chain-grate boiler according to claim 1 and 2 is characterized in that: described Back Word secondary wind is responsible for the minimum place of overflow section that is arranged between the preceding chimney arch of parabolic shape and " L " shape chimney arch.
5. the combining structure of high-temperature spiral secondary wind and chimney arch in the biomass fuel chain-grate boiler according to claim 1 and 2; It is characterized in that: second air inlet of described air preheater is connected with the exhanst gas outlet of economizer in the chain-grate boiler; The gas approach of economizer is connected with the exhanst gas outlet of chain-grate boiler, and second air outlet of air preheater is connected with the emptying air-introduced machine.
6. the combining structure of high-temperature spiral secondary wind and chimney arch in the biomass fuel chain-grate boiler according to claim 1 and 2; It is characterized in that: in the charging baffle plate of boiler feed bucket inboard, be provided with water-cooling wall, described water-cooling wall is made up of the water-cooled coiled pipe that coats helical fin.
CN2011203744814U 2011-10-08 2011-10-08 Combined structure of high-temperature spiral secondary air and furnace arches in biomass fuel chain-grate boiler Withdrawn - After Issue CN202281241U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011203744814U CN202281241U (en) 2011-10-08 2011-10-08 Combined structure of high-temperature spiral secondary air and furnace arches in biomass fuel chain-grate boiler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011203744814U CN202281241U (en) 2011-10-08 2011-10-08 Combined structure of high-temperature spiral secondary air and furnace arches in biomass fuel chain-grate boiler

Publications (1)

Publication Number Publication Date
CN202281241U true CN202281241U (en) 2012-06-20

Family

ID=46227408

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011203744814U Withdrawn - After Issue CN202281241U (en) 2011-10-08 2011-10-08 Combined structure of high-temperature spiral secondary air and furnace arches in biomass fuel chain-grate boiler

Country Status (1)

Country Link
CN (1) CN202281241U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102330993A (en) * 2011-10-08 2012-01-25 张家港市威孚热能科技有限公司 Composite structure for high-temperature spiral secondary air and arch in biomass fuel chain boiler
CN112815303A (en) * 2021-03-02 2021-05-18 烟台龙源电力技术股份有限公司 Coal and biomass coupled combustion system and boiler

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102330993A (en) * 2011-10-08 2012-01-25 张家港市威孚热能科技有限公司 Composite structure for high-temperature spiral secondary air and arch in biomass fuel chain boiler
CN102330993B (en) * 2011-10-08 2013-07-10 张家港市威孚热能科技有限公司 Composite structure for high-temperature spiral secondary air and arch in biomass fuel chain boiler
CN112815303A (en) * 2021-03-02 2021-05-18 烟台龙源电力技术股份有限公司 Coal and biomass coupled combustion system and boiler

Similar Documents

Publication Publication Date Title
CN102330993B (en) Composite structure for high-temperature spiral secondary air and arch in biomass fuel chain boiler
CN101949535B (en) Low-ratio biomass circulating fluidized bed boiler and combustion method thereof
CN202747317U (en) Biomass fuel burning fuel boiler
CN204693377U (en) High-moisture biomass fuel boiler
CN102537975A (en) Circulating fluidized bed garbage incineration boiler and pollution control system with same
CN2864378Y (en) Multistage multi-room gas boiler for coal gasification
CN103017145A (en) Efficient segmentation control combustion method and system for biomass boiler with charcoal combustion cell
CN102297425B (en) Pulverized coal decoupling combustor and decoupling combustion method thereof
CN106352343A (en) Gasifying incinerator applicable to household garbage with high heat value
CN101881433A (en) Steam boiler capable of burning biomass
CN104566338A (en) Hearth structure of biomass chain boiler
CN102012038A (en) Air distribution system of biomass moulding fuel boiler
CN202281241U (en) Combined structure of high-temperature spiral secondary air and furnace arches in biomass fuel chain-grate boiler
CN103322676B (en) A kind of biomass fuel hot air apparatus
CN103206703B (en) Biomass smoke boiler
CN104964269B (en) A kind of pre- hot air boiler of two-stage for burning fin type water pipe furnace grate with being all-trans
CN104654266B (en) Water boiler with single boiler barrel and four return strokes
CN201852128U (en) Multi-purpose biomass boiler
CN105333416B (en) Coke particle clean combustion stove
CN102425785B (en) Biomass combustion equipment with double fire grates
CN204084433U (en) Two drum longitudinal chain grate boiler
CN201764524U (en) Air distribution system of biomass molding fuel boiler
CN106838879A (en) A kind of biomass bundling fuel chain-grate boiler
CN104791766A (en) High-water-content biomass fuel boiler
CN103175224B (en) Saving furnace

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20120620

Effective date of abandoning: 20130710

RGAV Abandon patent right to avoid regrant