CN104180653B - Living beings melting and heat preservation stove - Google Patents

Living beings melting and heat preservation stove Download PDF

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Publication number
CN104180653B
CN104180653B CN201310197798.9A CN201310197798A CN104180653B CN 104180653 B CN104180653 B CN 104180653B CN 201310197798 A CN201310197798 A CN 201310197798A CN 104180653 B CN104180653 B CN 104180653B
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heater
dirt
burner hearth
melting
communicated
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CN104180653A (en
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郑持才
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Dongguan Chunyuan Environmental Protection Technology Co., Ltd
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DONGGUAN CHUN YUAN GENERAL MACHINERY Co Ltd
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Abstract

The present invention discloses a kind of living beings melting and heat preservation stove, and include body of heater, dirt fire piece-rate system and the loading hopper for temporary biomass granule fuel, this body of heater, dirt fire piece-rate system and loading hopper are all placed on ground location; This dirt fire piece-rate system has the surge chamber and dust storage chamber that communicate with each other; Pay-off is provided with between this loading hopper and body of heater.The present invention is by adopting biological particles as fuel, and the melting furnace that instead of tradition adopts oil, gas, electricity, coal etc. as the mode of fuel, and fuel cost of the present invention is lower, heat loss is little, energy consumption is lower, and it is pollution-free to burn, and more meets the theory of energy-conserving and environment-protective.The present invention adopts the mode of separate type secondary feeding, its first time feeding is by temperature VFC, first time feeding is pushed to hearth combustion by second time feeding completely, twice cooperation, the appearance of the phenomenon such as effectively overcome windrow, get stuck, also prevent fire from returning the generation of burning loading hopper phenomenon simultaneously, stop potential safety hazard.

Description

Living beings melting and heat preservation stove
Technical field
The present invention relates to melting furnace art, refer in particular to a kind of living beings melting and heat preservation stove, its metal such as heat melts aluminium, zinc utilizing biological particles burning to produce.
Background technology
At present, metal is melted, normally adopt a melting furnace, crucible installed by this melting furnace, utilize melting furnace to heat crucible, the Metal Melting in crucible is changed into liquid.
Although current melting furnace can melt the metal in crucible, but but find when reality uses himself structure and serviceability still have many deficiencies, cause existing melting furnace in practical application, fail to reach best result of use and task performance, now its shortcoming be summarized as follows:
One, current, the melting furnace on market mostly is traditional resistance-type, fire coal, fuel oil, combustion gas, intermediate frequency furnace etc., and product is comparatively traditional, and energy consumption is high, heat loss is also large.
Two, the combustion system of existing melting furnace adopts the mode of a feeding mostly, makes phenomenons such as easily occurring windrow, get stuck, and the phenomenon that fire returns burning loading hopper happens occasionally, and there is potential safety hazard.
Three, existing melting furnace lacks dirt fire piece-rate system, make heat can not obtain secondary and utilize, and the flame of discharging contains volume of smoke, causes the pollution to environment, does not meet the requirement of energy-conserving and environment-protective.
The inner bag of four, existing melting furnace adopts the mode of disposable whole formation of lots, causes and cannot safeguard, maintenance load is large, and inner bag breakage needs integral replacing, adds maintenance cost.
The burner hearth bottom of five, existing melting furnace lacks Liu Liao road, makes after crucible breaks, and metal water can not be discharged smoothly, and causes the blocking of heap sum, makes troubles to operator.
The hopper of six, existing melting furnace is arranged on overhead position, causes operator to need to stand the very high filling carrying out fuel, makes troubles to operator's fueling.
Summary of the invention
In view of this, the present invention is directed to the disappearance of prior art existence, its main purpose is to provide a kind of living beings melting and heat preservation stove, its can effectively solve existing melting furnace not energy-conservation, not environmentally, easily there is windrow and get stuck, cannot maintenance, repair workload large, maintenance cost is high, use and feeding operation inconvenience etc. problem.
For achieving the above object, the present invention adopts following technical scheme:
A kind of living beings melting and heat preservation stove, include body of heater, dirt fire piece-rate system and the loading hopper for temporary biomass granule fuel, this body of heater, dirt fire piece-rate system and loading hopper are all placed on ground location;
This body of heater has burner hearth that is opening up and that put into for crucible, the circular in cross-section of this burner hearth; This body of heater includes furnace outside-lining and is arranged at the furnace internal-lining in furnace outside-lining, and this furnace internal-lining is assembled by multiple pour, and the plurality of pour split is enclosed and is configured to aforementioned burner hearth; The upper side of this body of heater is provided with the dirt fire delivery outlet and the sight burner for checking burner hearth combustion situation that are communicated with burner hearth, the lower end side of this body of heater is provided with the charge door being communicated with burner hearth, and the bottom of this body of heater is provided with the Liu Liao road of the inner bottom part being communicated with burner hearth;
This dirt fire piece-rate system has the surge chamber and dust storage chamber that communicate with each other, this dust storage chamber is positioned at immediately below surge chamber, the top of this dirt fire piece-rate system is provided with pipeline, this pipeline vertically stretches in surge chamber, the outer end of this pipeline is connected with chimney, the upper side of this dirt fire piece-rate system is provided with dirt fire input port, this dirt fire input port is communicated with aforementioned dirt fire delivery outlet, this dirt fire input port is just to the lateral surface of this pipeline, the lower end side of this dirt fire piece-rate system arranges the dust-exhausting port being convenient to dirt cleaning to walk, and this dust-exhausting port is communicated with dust storage chamber;
And be provided with pay-off between this loading hopper and body of heater, this pay-off includes the one-level charging line, separation charging line and the secondary charging line that are communicated with successively; This one-level charging line upwards extends towards tilting furnace, and the lower inlet of this one-level charging line is communicated with the inside of loading hopper, is provided with the first feeding spiro rod in this one-level charging line, and this first feeding spiro rod is rotated by temperature VFC; The outlet of this secondary charging line is communicated with aforementioned charge door, is provided with the second feeding spiro rod for fuel being pushed to completely burner hearth in this secondary charging line.
Preferably, described separation charging line is vertically arranged, this secondary charging line horizontally set.
Preferably, the upper part of described burner hearth is cylindrical, and the end portion of this burner hearth is turbination.
Preferably, described dirt fire delivery outlet and dirt fire input port all rounded.
Preferably, the upper part of described surge chamber is cylindrical, and the end portion of this surge chamber is turbination.
Preferably, conically, the end portion of this dust storage chamber is square in the upper part of described dust storage chamber, and this dust-exhausting port is communicated with the end portion of this dust storage chamber.
Preferably, described Liu Liao road be arranged at body of heater bottom centre position on and be communicated with the inner bottom part center of burner hearth.
Preferably, described sight burner tilts upward outwardly in the side of body of heater and extends.
Preferably, all sides of described body of heater are evenly equipped with multiple aforementioned sight burner.
Preferably, described sight burner is three, and these three sight burners and aforementioned dirt fire delivery outlet are uniformly at intervals on all sides of body of heater.
The present invention compared with prior art has obvious advantage and beneficial effect, specifically, as shown from the above technical solution:
One, the present invention is by adopting biological particles as fuel, and the melting furnace that instead of tradition adopts oil, gas, electricity, coal etc. as the mode of fuel, and fuel cost of the present invention is lower, heat loss is little, energy consumption is lower, and it is pollution-free to burn, and more meets the theory of energy-conserving and environment-protective.
Two, by being provided with the one-level charging line, separation charging line and the secondary charging line that are communicated with successively, and be respectively arranged with the first feeding spiro rod and the second feeding spiro rod in one-level charging line and secondary charging line, achieve the feeding of separate type secondary, its first time feeding is by temperature VFC, first time feeding is pushed to hearth combustion by second time feeding completely, twice cooperation, the appearance of the phenomenon such as effectively overcome windrow, get stuck, also prevent fire from returning the generation of burning loading hopper phenomenon simultaneously, stop potential safety hazard.
Three, by having additional dirt fire piece-rate system, when dirt fire enters in surge chamber, dirt fire screws in dust storage chamber with having quality after encountering pipeline outer wall, flame then exports other to from pipeline to be needed the equipment of heating, utilize with the secondary recovery that this realizes heat, and the flame of discharging is dustless, pollution-free, meet the requirement of energy-conserving and environment-protective.
Four, by furnace internal-lining is assembled by multiple pour, break the mode that the disposable monoblock of tradition is shaping, so made which pour damage and change which pour, be convenient to safeguard body of heater, reduce the later stage to the maintenance cost of body of heater.
Five, by being provided with the Liu Liao road of the inner bottom part being communicated with burner hearth in the bottom of body of heater, by this Liu Liao road, molten metal can be discharged smoothly, when preventing crucible from breaking, molten metal cannot be discharged and cause the blocking of heap sum, thus brings convenience to operator.
Six, by being arranged on ground by loading hopper, instead of the mode be arranged on position above ground level of tradition, making operator without the need to the high filling carrying out fuel of standing, bringing convenience to operator's fueling.
Seven, by burner hearth is adopted circular design, instead of the mode of the non-circular design of tradition, the burner hearth of the structure like this of the present invention makes hot-fluid dead angle less, flows more smooth and easy, longer service life; Simultaneously by being provided with sight burner, utilize sight burner can know the combustion position seen in burner hearth, convenient debugging.
For more clearly setting forth architectural feature of the present invention and effect, below in conjunction with accompanying drawing and specific embodiment, the present invention is described in detail.
Accompanying drawing explanation
Fig. 1 is the exploded view of the preferred embodiment of the present invention;
Fig. 2 is the view in transverse section of the preferred embodiment of the present invention;
Fig. 3 is the longitdinal cross-section diagram of the preferred embodiment of the present invention;
Fig. 4 is the longitdinal cross-section diagram of the preferred embodiment other direction of the present invention.
Accompanying drawing identifier declaration:
10, body of heater 11, furnace outside-lining
12, furnace internal-lining 121, pour
101, burner hearth 102, dirt fire delivery outlet
103, burner 104, charge door is seen
105, Liu Liao road 20, dirt fire piece-rate system
21, pipeline 22, chimney
201, surge chamber 202, dust storage chamber
203, dirt fire input port 204, dust-exhausting port
30, loading hopper 40, crucible
50, pay-off 51, one-level charging line
52, charging line 53, secondary charging line is separated
54, the first feeding spiro rod 55, second feeding spiro rod
Detailed description of the invention
Please refer to shown in Fig. 1 to Fig. 4, that show the concrete structure of the preferred embodiment of the present invention, include body of heater 10, dirt fire piece-rate system 20 and the loading hopper 30 for temporary biomass granule fuel.
This body of heater 10, dirt fire piece-rate system 20 and loading hopper 30 are all placed on ground location; By body of heater 10 and dirt fire piece-rate system 20 are placed on ground location, so that operator safeguards body of heater 10 and dirt fire piece-rate system 20; And by loading hopper 30 is placed on ground location, so that operator feeds in raw material, without the need to the very high filling carrying out fuel in station.
Wherein, this body of heater 10 has burner hearth 101 that is opening up and that put into for crucible 40, the circular in cross-section of this burner hearth 101, the burner hearth 101 of structure like this makes hot-fluid dead angle less, flow more smooth and easy, longer service life, in this enforcement, the upper part of this burner hearth 101 is cylindrical, and the end portion of this burner hearth 101 is turbination, as shown in Figure 2, this body of heater 10 includes furnace outside-lining 11 and is arranged at the furnace internal-lining 12 in furnace outside-lining 11, this furnace internal-lining 12 is assembled by multiple pour 121, so make which pour 121 damage and change which pour 121, be convenient to safeguard body of heater 10, reduce the later stage to the maintenance cost of body of heater 10, the split of the plurality of pour 121 is enclosed and is configured to aforementioned burner hearth 101, the upper side of this body of heater 10 is provided with the dirt fire delivery outlet 102 and the sight burner 103 for checking burner hearth 101 combustion situation that are communicated with burner hearth 101, specifically say, as shown in Figure 2, this sight burner 103 tilts upward outwardly in the side of body of heater 10 and extends, all sides of this body of heater 10 are evenly equipped with multiple aforementioned sight burner 103, the combustion position in burner hearth 101 can be clear that by this sight burner 103 operator, conveniently debug, in the present embodiment, this sight burner 103 is three, these three sight burners 103 and aforementioned dirt fire delivery outlet 102 are uniformly at intervals on all sides of body of heater 10, not to be limited, the lower end side of this body of heater 10 is provided with the charge door 104 being communicated with burner hearth 101, the bottom of this body of heater 10 is provided with the Liu Liao road 105 of the inner bottom part being communicated with burner hearth 101, in the present embodiment, the bottom centre position that this Liu Liao road 105 is arranged at body of heater 10 is communicated with the inner bottom part center of burner hearth 101, so, by this Liu Liao road 105, molten metal can be discharged smoothly, when preventing crucible 40 from breaking, molten metal cannot be discharged and cause the blocking of heap sum.
This dirt fire piece-rate system 20 can make heat obtain secondary utilization, and discharge flame is dustless, pollution-free, reach the effect of energy-conserving and environment-protective, specifically say, in the present embodiment, as shown in Figure 4, this dirt fire piece-rate system 20 has the surge chamber 201 and dust storage chamber 202 that communicate with each other, this dust storage chamber 202 is positioned at immediately below surge chamber 201, the upper part of this surge chamber 201 is cylindrical, the end portion of this surge chamber 201 is turbination, and conically, the end portion of this dust storage chamber 202 is square in the upper part of this dust storage chamber 202; The top of this dirt fire piece-rate system 20 is provided with pipeline 21, and this pipeline 21 vertically stretches in surge chamber 201, and the outer end of this pipeline 21 is connected with chimney 22, and flame is exported by pipeline 21 and chimney 22 and realizes the secondary utilization of heat; The upper side of this dirt fire piece-rate system 20 is provided with dirt fire input port 203, this dirt fire input port 203 is communicated with aforementioned dirt fire delivery outlet 102, this dirt fire delivery outlet 102 and dirt fire input port 203 all rounded, and this dirt fire input port 203 is just to the lateral surface of this pipeline 21, after encountering pipeline 21 outer wall to make dirt fire, flue dust screws in dust storage chamber 202 with having quality, and flame exports from pipeline 21; The lower end side of this dirt fire piece-rate system 20 arranges the dust-exhausting port 204 being convenient to dirt cleaning to walk, and this dust-exhausting port 204 is communicated with dust storage chamber 202, and in the present embodiment, this dust-exhausting port 204 is communicated with the end portion of this dust storage chamber 202.
And be provided with pay-off 50 between this loading hopper 30 and body of heater 10, specifically say, in the present embodiment, as shown in Figure 4, this pay-off 50 includes the one-level charging line 51, separation charging line 52 and the secondary charging line 53 that are communicated with successively; This one-level charging line 51 tilts upward extension towards body of heater 10, the lower inlet of this one-level charging line 51 is communicated with the inside of loading hopper 30, the first feeding spiro rod 54 is provided with in this one-level charging line 51, this first feeding spiro rod 54 is rotated by temperature VFC, so can carry out in good time auto feed according to the operation conditions of body of heater 10; The outlet of this secondary charging line 53 is communicated with aforementioned charge door 104, the second feeding spiro rod 55 is provided with in this secondary charging line 53, this second feeding spiro rod 55 is for pushing in burner hearth 101 completely by fuel, so, the first feeding spiro rod 54 and the second feeding spiro rod 55 is utilized by coordinating, the generation of the phenomenon such as overcome windrow, get stuck, also effectively prevents fire from returning the appearance of burning loading hopper 30 phenomenon simultaneously; Further, in the present embodiment, this separation charging line 52 is vertically arranged, this secondary charging line 53 horizontally set, more effectively to overcome windrow and to get stuck, stops fire further and returns the appearance of burning loading hopper 30 phenomenon.
The present invention adopts biological particles as fuel, during work, first, artificial fills it up with biological particles toward loading hopper 30, is positioned in crucible 40 by molten metal to be needed, and is placed in by crucible 40 on body of heater 10 and makes crucible 40 stretch in burner hearth 101; Then, start pay-off 50, by the first feeding spiro rod 54, biological particles is transmitted obliquely along one-level charging line 51, then biological particles falls to and is separated in charging line 52, then, by the second feeding spiro rod 55 by biological particles along secondary charging line 53 lateral transfer in burner hearth 101, in burner hearth 101, biological particles is lighted and is taken fire, and the heat produced that burns heats crucible 40, makes the metal molten in crucible 40.Biological particles can produce dirt fire in the process of burner hearth 101 combustion, dirt fire enters in surge chamber 201 through dirt fire delivery outlet 102 and dirt fire input port 203, then, after pipeline 21 outer wall encountered by dirt fire, flue dust screws in dust storage chamber 202 with having quality, when after the long-pending full flue dust of dust storage chamber 202, can manually be cleaned out by flue dust from dust-exhausting port 204, flame then exports other to from pipeline 21 to be needed the equipment of heating, utilizes with the secondary recovery that this realizes heat.When the biological particles of loading hopper 30 is close to when being finished, filling loading hopper 30 being carried out to biological particles manually can be continued.
Design focal point of the present invention is:
One, the present invention is by adopting biological particles as fuel, and the melting furnace that instead of tradition adopts oil, gas, electricity, coal etc. as the mode of fuel, and fuel cost of the present invention is lower, heat loss is little, energy consumption is lower, and it is pollution-free to burn, and more meets the theory of energy-conserving and environment-protective.
Two, by being provided with the one-level charging line, separation charging line and the secondary charging line that are communicated with successively, and be respectively arranged with the first feeding spiro rod and the second feeding spiro rod in one-level charging line and secondary charging line, achieve the feeding of separate type secondary, its first time feeding is by temperature VFC, first time feeding is pushed to hearth combustion by second time feeding completely, twice cooperation, the appearance of the phenomenon such as effectively overcome windrow, get stuck, also prevent fire from returning the generation of burning loading hopper phenomenon simultaneously, stop potential safety hazard.
Three, by having additional dirt fire piece-rate system, when dirt fire enters in surge chamber, dirt fire screws in dust storage chamber with having quality after encountering pipeline outer wall, flame then exports other to from pipeline to be needed the equipment of heating, utilize with the secondary recovery that this realizes heat, and the flame of discharging is dustless, pollution-free, meet the requirement of energy-conserving and environment-protective.
Four, by furnace internal-lining is assembled by multiple pour, break the mode that the disposable monoblock of tradition is shaping, so made which pour damage and change which pour, be convenient to safeguard body of heater, reduce the later stage to the maintenance cost of body of heater.
Five, by being provided with the Liu Liao road of the inner bottom part being communicated with burner hearth in the bottom of body of heater, by this Liu Liao road, molten metal can be discharged smoothly, when preventing crucible from breaking, molten metal cannot be discharged and cause the blocking of heap sum, thus brings convenience to operator.
Six, by being arranged on ground by loading hopper, instead of the mode be arranged on position above ground level of tradition, making operator without the need to the high filling carrying out fuel of standing, bringing convenience to operator's fueling.
Seven, by burner hearth is adopted circular design, instead of the mode of the non-circular design of tradition, the burner hearth of the structure like this of the present invention makes hot-fluid dead angle less, flows more smooth and easy, longer service life; Simultaneously by being provided with sight burner, utilize sight burner can know the combustion position seen in burner hearth, convenient debugging.
Below know-why of the present invention is described in conjunction with specific embodiments.These describe just in order to explain principle of the present invention, and can not be interpreted as limiting the scope of the invention by any way.Based on explanation herein, those skilled in the art does not need to pay performing creative labour can associate other detailed description of the invention of the present invention, and these modes all will fall within protection scope of the present invention.

Claims (10)

1. a living beings melting and heat preservation stove, is characterized in that: include body of heater, dirt fire piece-rate system and the loading hopper for temporary biomass granule fuel, this body of heater, dirt fire piece-rate system and loading hopper are all placed on ground location;
This body of heater has burner hearth that is opening up and that put into for crucible, the circular in cross-section of this burner hearth; This body of heater includes furnace outside-lining and is arranged at the furnace internal-lining in furnace outside-lining, and this furnace internal-lining is assembled by multiple pour, and the plurality of pour split is enclosed and is configured to aforementioned burner hearth; The upper side of this body of heater is provided with the dirt fire delivery outlet and the sight burner for checking burner hearth combustion situation that are communicated with burner hearth, the lower end side of this body of heater is provided with the charge door being communicated with burner hearth, and the bottom of this body of heater is provided with the Liu Liao road of the inner bottom part being communicated with burner hearth;
This dirt fire piece-rate system has the surge chamber and dust storage chamber that communicate with each other, this dust storage chamber is positioned at immediately below surge chamber, the top of this dirt fire piece-rate system is provided with pipeline, this pipeline vertically stretches in surge chamber, the outer end of this pipeline is connected with chimney, the upper side of this dirt fire piece-rate system is provided with dirt fire input port, this dirt fire input port is communicated with aforementioned dirt fire delivery outlet, this dirt fire input port is just to the lateral surface of this pipeline, the lower end side of this dirt fire piece-rate system arranges the dust-exhausting port being convenient to dirt cleaning to walk, and this dust-exhausting port is communicated with dust storage chamber;
And be provided with pay-off between this loading hopper and body of heater, this pay-off includes the one-level charging line, separation charging line and the secondary charging line that are communicated with successively; This one-level charging line upwards extends towards tilting furnace, and the lower inlet of this one-level charging line is communicated with the inside of loading hopper, is provided with the first feeding spiro rod in this one-level charging line, and this first feeding spiro rod is rotated by temperature VFC; The outlet of this secondary charging line is communicated with aforementioned charge door, is provided with the second feeding spiro rod for fuel being pushed to completely burner hearth in this secondary charging line.
2. living beings melting and heat preservation stove as claimed in claim 1, is characterized in that: described separation charging line is vertically arranged, this secondary charging line horizontally set.
3. living beings melting and heat preservation stove as claimed in claim 1, it is characterized in that: the upper part of described burner hearth is cylindrical, the end portion of this burner hearth is turbination.
4. living beings melting and heat preservation stove as claimed in claim 1, is characterized in that: described dirt fire delivery outlet and dirt fire input port all rounded.
5. living beings melting and heat preservation stove as claimed in claim 1, it is characterized in that: the upper part of described surge chamber is cylindrical, the end portion of this surge chamber is turbination.
6. living beings melting and heat preservation stove as claimed in claim 1, is characterized in that: conically, the end portion of this dust storage chamber is square in the upper part of described dust storage chamber, and this dust-exhausting port is communicated with the end portion of this dust storage chamber.
7. living beings melting and heat preservation stove as claimed in claim 1, is characterized in that: the bottom centre position that described Liu Liao road is arranged at body of heater is communicated with the inner bottom part center of burner hearth.
8. living beings melting and heat preservation stove as claimed in claim 1, is characterized in that: described sight burner tilts upward outwardly in the side of body of heater and extends.
9. living beings melting and heat preservation stove as claimed in claim 1, is characterized in that: all sides of described body of heater are evenly equipped with multiple aforementioned sight burner.
10. living beings melting and heat preservation stove as claimed in claim 9, is characterized in that: described sight burner is three, and these three sight burners and aforementioned dirt fire delivery outlet are uniformly at intervals on all sides of body of heater.
CN201310197798.9A 2013-05-25 2013-05-25 Living beings melting and heat preservation stove Active CN104180653B (en)

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CN104180653B true CN104180653B (en) 2016-01-20

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005009803A (en) * 2003-06-20 2005-01-13 Furness Kakoki Kk Metal handling device
CN102537947A (en) * 2012-01-20 2012-07-04 宿迁市凯迪绿色能源开发有限公司 Novel boiler front feeding device of straw biomass CFB boiler
CN102748945A (en) * 2012-06-28 2012-10-24 郭丰亮 Biomass crucible furnace for recycling flue gas waste heat
CN202630671U (en) * 2012-05-08 2012-12-26 梁刚 Efficient and energy-saving biomass furnace
CN202814062U (en) * 2012-07-30 2013-03-20 郭丰亮 Low-pollution crucible furnace
CN202835331U (en) * 2012-06-21 2013-03-27 郑文虎 Biomass fuel boiler furnace structure

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005009803A (en) * 2003-06-20 2005-01-13 Furness Kakoki Kk Metal handling device
CN102537947A (en) * 2012-01-20 2012-07-04 宿迁市凯迪绿色能源开发有限公司 Novel boiler front feeding device of straw biomass CFB boiler
CN202630671U (en) * 2012-05-08 2012-12-26 梁刚 Efficient and energy-saving biomass furnace
CN202835331U (en) * 2012-06-21 2013-03-27 郑文虎 Biomass fuel boiler furnace structure
CN102748945A (en) * 2012-06-28 2012-10-24 郭丰亮 Biomass crucible furnace for recycling flue gas waste heat
CN202814062U (en) * 2012-07-30 2013-03-20 郭丰亮 Low-pollution crucible furnace

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