CN114686250A - Recovery device, equipment and method for biomass carbonization - Google Patents

Recovery device, equipment and method for biomass carbonization Download PDF

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Publication number
CN114686250A
CN114686250A CN202011636469.6A CN202011636469A CN114686250A CN 114686250 A CN114686250 A CN 114686250A CN 202011636469 A CN202011636469 A CN 202011636469A CN 114686250 A CN114686250 A CN 114686250A
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CN
China
Prior art keywords
biomass
conveying
combustion
receiving
foundation pit
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CN202011636469.6A
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Chinese (zh)
Inventor
王磊
孙伟
刘翠兰
陈雷
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Anhui Wenwang Wine Co ltd
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Anhui Wenwang Wine Co ltd
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Priority to CN202011636469.6A priority Critical patent/CN114686250A/en
Publication of CN114686250A publication Critical patent/CN114686250A/en
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    • CCHEMISTRY; METALLURGY
    • C10PETROLEUM, GAS OR COKE INDUSTRIES; TECHNICAL GASES CONTAINING CARBON MONOXIDE; FUELS; LUBRICANTS; PEAT
    • C10BDESTRUCTIVE DISTILLATION OF CARBONACEOUS MATERIALS FOR PRODUCTION OF GAS, COKE, TAR, OR SIMILAR MATERIALS
    • C10B53/00Destructive distillation, specially adapted for particular solid raw materials or solid raw materials in special form
    • C10B53/02Destructive distillation, specially adapted for particular solid raw materials or solid raw materials in special form of cellulose-containing material

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Materials Engineering (AREA)
  • Organic Chemistry (AREA)
  • Processing Of Solid Wastes (AREA)

Abstract

The application aims to provide a recovery device, equipment and a method for biomass carbonization, wherein the recovery device mainly comprises a transfer device, a conveying device, a material lifting device, a combustion device and the like. The transfer device is used for transferring the biomass in the foundation pit to the top of the foundation pit; one end of the conveying device is communicated with the transferring device and is used for receiving the biomass; the lifting device is connected with the other end of the conveying device and is used for receiving the biomass conveyed by the conveying device; a combustion apparatus, comprising: a combustion chamber for receiving and combusting biomass; the boiler is arranged above the combustion chamber, and the steam pipeline is connected with the boiler; the control device is electrically connected with the transfer device, the conveying device, the material lifting device and the combustion device; wherein, living beings are used for burning in the combustion chamber to liquid in the heating boiler compares with prior art, biomass such as recycle rice husk that this application can be reasonable avoids the waste of biological energy.

Description

Recovery device, equipment and method for biomass carbonization
Technical Field
The invention relates to the field of machinery, in particular to a recovery device, equipment and a method for biomass carbonization.
Background
With the development of science and technology, the consciousness of environmental protection is strengthened, and if the dependence on products such as petroleum is reduced, the proportion of biological energy in energy consumption is improved, which is the focus of attention at present.
In vast rural areas, with the visible renewable resources such as rice husks and leaves, most of the renewable resources are not fully utilized, but are used as fertilizers after being combusted in fields, and the renewable resources cannot be reasonably utilized as biological energy sources.
If the biomass such as rice hulls is reasonably recycled, the technical problem to be solved by the invention is to avoid the waste of biological energy.
Disclosure of Invention
Aiming at the defects or shortcomings of the prior art, the invention aims to provide a recovery device for biomass carbonization, which can reasonably recycle biomasses such as rice hulls and the like and avoid waste of biological energy.
In order to solve the above technical problems, the present invention provides a recycling apparatus for biomass carbonization, comprising:
the transfer device is used for conveying the biomass in the foundation pit to the top of the foundation pit;
the conveying device is communicated with the transfer device at one end and is used for receiving the biomass;
the lifting device is connected with the other end of the conveying device and is used for receiving the biomass conveyed by the conveying device;
a combustion apparatus, comprising: a combustion chamber for receiving and combusting the biomass; the boiler is arranged above the combustion chamber, and the steam pipeline is connected with the boiler;
the control device is electrically connected with the transfer device, the conveying device, the material lifting device and the combustion device;
wherein the biomass is used for combustion in the combustion chamber to heat liquid within the boiler.
Further preferably, the transfer device comprises: the shell is arranged above the foundation pit and is provided with a set height, an ascending channel communicated with the foundation pit and the shell, and a descending channel communicated with the foundation pit and the shell; the shell, the ascending channel, the descending channel and the foundation pit form a recyclable flow channel; the transfer device further comprises: the conveying belt is arranged in the flow channel, the driving motor is used for driving the conveying belt to move circularly and is electrically connected with the control device, the driving wheel is connected with the driving motor and is used for driving the conveying belt to transmit, the driven wheel is positioned in the foundation pit and is sleeved with the conveying belt, and a plurality of scraping plates are arranged on the conveying belt and are used for driving the biomass to transmit; wherein, the head on the scraper blade is also provided with a guide part which is inclined upwards.
Further preferably, the transfer device further comprises: and the material guiding plate is obliquely arranged upwards along the horizontal direction so as to be guided into the conveying device by the material guiding plate when the scraping plate overturns from the ascending channel to the descending channel and is conveyed into the material lifting device by the conveying belt body arranged in the conveying channel.
Further preferably, a material guide plate is arranged at the bottom of the cover body of the lifting device and used for receiving and guiding the biomass output from the conveying device into the lifting channel; the material lifting device also comprises a material lifting conveyor belt arranged in the material lifting channel, a plurality of scraping plates arranged on the material lifting conveyor belt, and a bearing plate which is connected with the feed inlet of the combustion device and is provided with a bearing for bearing the biomass; wherein, the biomass is lifted to the combustion device under the driving of the conveyor belt.
Further preferably, the combustion apparatus includes: the biomass processing device comprises a box body, a first conveying device, a bin, a second conveying device and a boiler, wherein the first conveying device is arranged in the box body and used for accessing and guiding biomass, the bin is arranged below the conveying device and used for receiving the biomass conveyed by the conveying device, the second conveying device is arranged below the bin and used for receiving the biomass released by the bin, and the boiler is arranged above the second conveying device; wherein the second conveying device is configured to simultaneously combust and carbonize the biomass while conveying the biomass in a horizontal direction to heat the boiler.
Further preferably, the discharge port of the storage bin is provided with a valve electrically connected with the control device, and the valve is used for releasing the biomass to the second conveying device at a preset flow rate.
Further preferably, the combustion apparatus further comprises: a collecting area positioned at the end of the second conveying device and used for receiving the cooling ash, and a scraping device which is arranged above the collecting area and used for scraping the ash at the end of the second conveying device to the collecting area; the combustion apparatus further comprises: and the discharging device is used for extracting the ash in the collecting area to an external area to be placed.
Further preferably, the device also comprises a negative pressure fan device and a material suction pipeline, wherein one end of the material suction pipeline is communicated with the negative pressure fan device, and the other end of the material suction pipeline is arranged adjacent to the area to be placed; the negative pressure fan device is used for absorbing ash cooled in the area to be placed to a packing device below the negative pressure fan device through the material absorbing pipeline; the packing device is used for packing the ash conveyed by the negative pressure fan device; the exhaust channel is communicated with the combustion device and discharges the smoke in the combustion chamber; the exhaust passage is sequentially provided with a cyclone dust collector and a bag-type dust collector, and the tail part of the exhaust passage is provided with a smoke purification device.
The application also provides equipment comprising the combustion device; wherein the biomass is any one or combination of rice hulls, straws and leaves.
The present application also provides a method for controlling the operation of the above-described apparatus, comprising the steps of:
the biomass is placed in the foundation pit in an inverted mode;
through the cooperation of transfer device, conveyer and lifting device, will biomass is carried to heat in the burner the boiler.
Compared with the prior art, the biomass such as the rice husk can be reasonably recycled, and the waste of biological energy is avoided.
Drawings
Other features, objects and advantages of the present application will become more apparent upon reading of the following detailed description of non-limiting embodiments thereof, made with reference to the accompanying drawings in which:
FIG. 1: the structure of the recovery device for biomass carbonization in one embodiment of the present invention is schematically illustrated.
Detailed Description
The conception, the specific structure and the technical effects of the present invention will be further described with reference to the accompanying drawings to fully understand the objects, the features and the effects of the present invention.
Implementation mode one
The embodiment provides a recovery device for biomass carbonization, which mainly comprises a transfer device 2, a conveying device 3, a material lifting device 5, a combustion device 6 and the like. The transfer device 2 is used for transferring the biomass in the foundation pit 1 to the top of the foundation pit; one end of the conveying device 3 is communicated with the transferring device 2 and is used for receiving biomass; the lifting device 5 is connected with the other end of the conveying device and is used for receiving the biomass conveyed by the conveying device; a combustion device 6 comprising: a combustion chamber 60 for receiving and combusting the biomass; a boiler 63 disposed above the combustion chamber, a steam pipe connected to the boiler 63; the control device is electrically connected with the transfer device 2, the conveying device 3, the material lifting device 5 and the combustion device 5; wherein the biomass is used for combustion in a combustion chamber for heating a liquid in a boiler.
According to the structure, biomass such as rice husks can be transferred to the transfer device 2 through the transfer device, the transfer device 3 is matched with the material lifting device 5, a large amount of biomass is conveyed to the combustion device 6 to be combusted, the boiler is heated by utilizing the energy of combustion, heated water in the boiler is utilized as a heat source, the water is used for other purposes, the conversion between bioenergy and heat energy is realized, ash residues which can be favorably combusted and carbonized can be used as fertilizer and other purposes, the sufficient recycling and utilization of biomass carbonization are realized, therefore, the biomass such as the rice husks can be reasonably recycled, and the waste of biological energy is avoided.
Specifically, the transfer device 2 includes: a shell 20 which is arranged above the foundation pit 1 and has a set height, an ascending channel 28 communicated with the foundation pit 1 and the shell, and a descending channel 29 communicated with the foundation pit 1 and the shell; wherein, the shell 20, the ascending channel 28, the descending channel 29 and the foundation pit form a recyclable flow passage; the transfer device 2 further comprises: the device comprises a conveying belt 26 arranged in a flow channel, a driving motor, a driving wheel 21, a driven wheel 22 and a plurality of scraping plates 25, wherein the driving motor is used for driving the conveying belt 26 to circularly move and is electrically connected with a control device, the driving wheel 21 is connected with the driving motor and is used for driving the conveying belt 26 to transmit, the driven wheel 22 is positioned in the foundation pit 1 and is sleeved with the conveying belt 26, and the scraping plates 25 are arranged on the conveying belt 26 and are used for driving biomass to transmit; wherein, the head part of the scraper 25 is also provided with a guide part 251 which is inclined upwards. The device is favorable for lifting the biomass to the air from the ground, such as the upper part of a factory building, and the biomass is conveyed in the air, so that the occupied ground area is avoided, and the energy consumption of transmission can be saved
Further preferably, the transfer device 2 further comprises: and a leader plate 27 connected to the feed end of the conveyor 3, wherein the leader plate 27 is disposed to be inclined upward in a horizontal direction so as to be introduced into the conveyor 3 by the leader plate 27 and transferred into the lifter 5 by a conveyor belt body 31 disposed in the conveyor passage 30 when the scraper 25 is turned upside down from the rising passage 28 to the falling passage 29. Through this structure, ingenious realization living beings have improved transfer efficiency between transfer device 2 and conveyer 3.
Further preferably, the bottom of the cover 50 of the lifting device 5 is provided with a material guiding plate 57 for receiving and guiding the biomass output from the conveying device 3 into the lifting channel 55; the material lifting device 5 also comprises a material lifting conveyor belt 51 arranged in the material lifting channel 55, a plurality of scraping plates 56 arranged on the material lifting conveyor belt 51, and a receiving plate 53 which is connected with the feed inlet of the combustion device 5 and is supposed to receive the biomass; the biomass is lifted into the combustion device 5 by the belt 51.
Further preferably, the combustion device 6 comprises: the biomass processing device comprises a box 68, a first conveying device 61 arranged in the box 68 and used for receiving and guiding biomass, a bin 62 arranged below the conveying device 61 and used for receiving the biomass conveyed by the conveying device 61, a second conveying device 64 arranged below the bin 62 and used for receiving the biomass released by the bin 62, and a boiler 63 arranged above the second conveying device 64; wherein the second conveyor 64 is used to simultaneously burn and carbonize the biomass while conveying the biomass in the horizontal direction to heat the boiler 63.
The second conveying device 64 in this embodiment is preferably a fire grate composed of a plurality of conveying rollers and a waterproof belt body arranged on the conveying rollers, so as to meet the actual application and design requirements.
Further preferably, the discharge opening of the silo 62 is provided with a valve electrically connected to the control device for releasing the biomass at a preset flow rate to the second conveying device 64. So as to avoid the insufficient combustion and the energy waste caused by the excessive release of the biomass on the second conveying device 64.
Further preferably, the combustion device 6 further comprises: a collecting area located at the end of the second conveyor 64 for receiving the cooled ash, a scraper 65 disposed above the collecting area for scraping the ash at the end of the second conveyor 64 to the collecting area; the combustion apparatus 6 further includes: and a discharging device 66 for extracting ash in the collecting area to the external to-be-placed area 7. So as to avoid the phenomenon that the air is directly absorbed by the external negative pressure fan device 8 to cause fire.
Further preferably, in order to meet the transportation and storage requirements in practical application, the device further comprises a negative pressure fan device 8 and a material suction pipeline 10, wherein one end of the material suction pipeline is communicated with the negative pressure fan device 8, and the other end of the material suction pipeline is arranged adjacent to the area to be placed 7; the negative pressure fan device 8 is used for absorbing ash cooled in the area 7 to be placed to a packing device 9 below the negative pressure fan device 8 through a material absorbing pipeline 10; wherein, the packing device 9 is used for packing the ash conveyed by the negative pressure fan device 8.
Further preferably, the method further comprises the following steps: an exhaust passage 15 communicating with the combustion device 6 and discharging the flue gas in the combustion chamber; wherein, the exhaust passage 15 is sequentially provided with a cyclone dust collector 11 and a bag-type dust collector 12, and the tail part of the exhaust passage 15 is provided with a flue gas purification device 16, so that the pollution of the discharged flue gas to the environment is reduced.
In addition, it is worth mentioning that the biomass in the embodiment is preferably any one or a combination of rice hulls, straws and leaves, and the embodiment only takes the rice hulls as an example for description.
In addition, it should be noted that the control device in this embodiment may be preferably one or a combination of a single chip microcomputer, an industrial personal computer, and a pcl controller, which will not be described herein again, so that the device may be implemented in the prior art.
Second embodiment
The present embodiment provides an apparatus including the recovery device for biomass carbonization of the above embodiment.
According to the structure, a large amount of biomass such as rice husks can be conveyed to the combustion device 6 to be combusted through the matching of the transfer device 2, the conveying device 3 and the material lifting device 5, the boiler is heated by utilizing the energy of combustion, heated water in the boiler is used as a heat source for other purposes, the conversion between the biological energy and the heat energy is realized, the purposes of using ash residues which are combusted and carbonized as fertilizers and the like are facilitated, and the sufficient recovery and utilization of biomass carbonization are realized. Therefore, the biomass such as rice hulls can be reasonably recycled, and the waste of biological energy is avoided.
Furthermore, the present embodiment also provides a device control method, including the steps of:
the biomass is placed in the foundation pit in an inverted mode;
through the cooperation of transfer device 2, conveyer 3 and lifting device 5, carry biomass to heating boiler 63 in burner 6.
The above embodiments are merely to illustrate the technical aspects of the present invention, not to limit the present invention, and the present invention has been described in detail with reference to the preferred embodiments. It will be understood by those skilled in the art that various modifications and equivalents may be made thereto without departing from the spirit and scope of the present invention, and the appended claims are to encompass within their scope all such modifications and equivalents.

Claims (10)

1. A recovery device for biomass carbonization, characterized by comprising:
the transfer device (2) is used for conveying the biomass in the foundation pit (1) to the top of the foundation pit;
a conveying device (3) with one end communicated with the transferring device (2) and used for receiving the biomass;
the lifting device (5) is connected with the other end of the conveying device and is used for receiving the biomass conveyed by the conveying device;
combustion device (6) comprising: a combustion chamber (60) for receiving and combusting the biomass; the boiler (63) is arranged above the combustion chamber, and the steam pipeline is connected with the boiler (63);
the control device is electrically connected with the transfer device (2), the conveying device (3), the lifting device (5) and the combustion device (5);
wherein the biomass is used for combustion in the combustion chamber to heat liquid within the boiler.
2. Recovery device for the carbonization of biomass according to claim 1, characterized in that said transfer device (2) comprises: the device comprises a shell (20) which is arranged above the foundation pit (1) and has a set height, an ascending channel (28) communicated with the foundation pit (1) and the shell, and a descending channel (29) communicated with the foundation pit (1) and the shell; wherein the housing (20), the ascending channel (28) and the descending channel (29) and the foundation pit form a circulatable flow path; the transfer device (2) further comprises: the conveying belt (26) is arranged in the flow channel, the driving motor is used for driving the conveying belt (26) to move circularly and is electrically connected with the control device, the driving wheel (21) is connected with the driving motor and is used for driving the conveying belt (26) to drive, the driven wheel (22) is positioned in the foundation pit (1) and is sleeved with the conveying belt (26), and the plurality of scraping plates (25) are arranged on the conveying belt (26) and are used for driving the biomass to drive; wherein, the head part on the scraper (25) is also provided with a guide part (251) which is inclined upwards.
3. Recovery device for the carbonization of biomass according to claim 2, characterized in that the transfer device (2) further comprises: a guide plate (27) connected to the feed end of the conveyor (3), wherein the guide plate (27) is disposed to be inclined upward in the horizontal direction so as to be introduced into the conveyor (3) by the guide plate (27) and transferred into the lifter (5) by a conveyor belt body (31) disposed in the conveyor passage (30) when the scraper (25) turns over from the ascending path (28) to the descending path (29).
4. A recycling apparatus for biomass carbonization according to claim 1, characterized in that the bottom of the housing (50) of the lifting device (5) is provided with a guide plate (57) for receiving and guiding the biomass output from the conveyor (3) into the lifting channel (55); the material lifting device (5) also comprises a material lifting conveyor belt (51) arranged in the material lifting channel (55), a plurality of scraping plates (56) arranged on the material lifting conveyor belt (51), and a receiving plate (53) which is connected with a feed inlet of the combustion device (5) and is provided with a receiving plate for receiving the biomass; wherein the biomass is lifted into the combustion device (5) under the driving of the conveyor belt (51).
5. A recovery device for the carbonization of biomass according to claim 1, characterized in that the combustion device (6) comprises: the biomass processing device comprises a box body (68), a first conveying device (61) which is arranged in the box body (68) and used for accessing and guiding the biomass, a bin (62) which is arranged below the conveying device (61) and used for receiving the biomass conveyed by the conveying device (61), a second conveying device (64) which is arranged below the bin (62) and used for receiving the biomass released by the bin (62), and a boiler (63) which is arranged above the second conveying device (64); wherein the second conveying device (64) is used for simultaneously burning and carbonizing the biomass while conveying the biomass in a horizontal direction to heat the boiler (63).
6. A recovery device for carbonization of biomass according to claim 5, characterized in that the discharge of the silo (62) is provided with a valve electrically connected to the control device for releasing the biomass at a preset flow rate to the second conveying device (64).
7. A recovery device for the carbonization of biomass according to claim 1, characterized in that the combustion device (6) further comprises: a collecting zone located at the end of the second conveyor (64) for receiving the cooled ash, a scraping device (65) located above the collecting zone for scraping the ash at the end of the second conveyor (64) to the collecting zone; the combustion device (6) further comprises: a discharging device (66) for extracting the ash in the collecting area to an external area (7) to be placed.
8. A recovery device for the carbonization of biomass according to claim 1, characterized by further comprising a negative pressure fan device (8), a suction duct (10) having one end communicating with the negative pressure fan device (8) and the other end arranged adjacent to the area to be discharged (7); the negative pressure fan device (8) is used for adsorbing ash cooled in the area (7) to be placed to a packing device (9) below the negative pressure fan device (8) through the material suction pipeline (10); the packing device (9) is used for packing ash conveyed by the negative pressure fan device (8); an exhaust passage (15) which is communicated with the combustion device (6) and discharges the flue gas in the combustion chamber; the exhaust passage (15) is sequentially provided with a cyclone dust collector (11) and a bag-type dust collector (12), and the tail part of the exhaust passage (15) is provided with a smoke purification device (16).
9. An apparatus, characterized by comprising a combustion device (6) according to any one of claims 1 to 8; wherein the biomass is any one or combination of rice hulls, straws and leaves.
10. A method for controlling the operation of the apparatus of claim 9, comprising the steps of:
the biomass is placed in the foundation pit in an inverted mode;
through the cooperation of the transfer device (2), the conveying device (3) and the lifting device (5), the biomass is conveyed to the combustion device (6) to heat the boiler (63).
CN202011636469.6A 2020-12-31 2020-12-31 Recovery device, equipment and method for biomass carbonization Pending CN114686250A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011636469.6A CN114686250A (en) 2020-12-31 2020-12-31 Recovery device, equipment and method for biomass carbonization

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Application Number Priority Date Filing Date Title
CN202011636469.6A CN114686250A (en) 2020-12-31 2020-12-31 Recovery device, equipment and method for biomass carbonization

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Publication Number Publication Date
CN114686250A true CN114686250A (en) 2022-07-01

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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES1059293U (en) * 2005-01-12 2005-04-01 Calorifica Domestica, S.L. Feeding device and combustión of biomass for heating boilers. (Machine-translation by Google Translate, not legally binding)
JP2011242033A (en) * 2010-05-17 2011-12-01 Marucha Co Ltd Fuel supply device of boiler
CN103438431A (en) * 2013-08-19 2013-12-11 龚水明 Biomass solid fuel boiler
CN103644561A (en) * 2013-11-11 2014-03-19 浙江中吉新能源有限公司 High-efficiency energy-saving biomass boiler system
CN204923422U (en) * 2015-08-26 2015-12-30 哈尔滨华崴重工有限公司 Novel combustion chamber biomass boiler
CN105387452A (en) * 2015-12-14 2016-03-09 嘉兴华清能源科技有限公司 Biomass particle combustion boiler system capable of realizing automatic control
CN107101196A (en) * 2017-04-13 2017-08-29 安徽鼎梁生物能源科技开发有限公司 A kind of biomass boiler
CN206648289U (en) * 2017-03-28 2017-11-17 潍坊瀚泓节能温调设备有限公司 Fully-automatic biomass fuel boiler
CN206669788U (en) * 2017-04-27 2017-11-24 浙江杭振锅炉有限公司 Automatic biomass fueled steam boiler

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES1059293U (en) * 2005-01-12 2005-04-01 Calorifica Domestica, S.L. Feeding device and combustión of biomass for heating boilers. (Machine-translation by Google Translate, not legally binding)
JP2011242033A (en) * 2010-05-17 2011-12-01 Marucha Co Ltd Fuel supply device of boiler
CN103438431A (en) * 2013-08-19 2013-12-11 龚水明 Biomass solid fuel boiler
CN103644561A (en) * 2013-11-11 2014-03-19 浙江中吉新能源有限公司 High-efficiency energy-saving biomass boiler system
CN204923422U (en) * 2015-08-26 2015-12-30 哈尔滨华崴重工有限公司 Novel combustion chamber biomass boiler
CN105387452A (en) * 2015-12-14 2016-03-09 嘉兴华清能源科技有限公司 Biomass particle combustion boiler system capable of realizing automatic control
CN206648289U (en) * 2017-03-28 2017-11-17 潍坊瀚泓节能温调设备有限公司 Fully-automatic biomass fuel boiler
CN107101196A (en) * 2017-04-13 2017-08-29 安徽鼎梁生物能源科技开发有限公司 A kind of biomass boiler
CN206669788U (en) * 2017-04-27 2017-11-24 浙江杭振锅炉有限公司 Automatic biomass fueled steam boiler

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Application publication date: 20220701