CN201218507Y - Plasma and calcium oxide cooperation-gasified rubbish biomass gasification equipment - Google Patents
Plasma and calcium oxide cooperation-gasified rubbish biomass gasification equipment Download PDFInfo
- Publication number
- CN201218507Y CN201218507Y CNU2008201139524U CN200820113952U CN201218507Y CN 201218507 Y CN201218507 Y CN 201218507Y CN U2008201139524 U CNU2008201139524 U CN U2008201139524U CN 200820113952 U CN200820113952 U CN 200820113952U CN 201218507 Y CN201218507 Y CN 201218507Y
- Authority
- CN
- China
- Prior art keywords
- calcium oxide
- gas
- furnace
- fluidized bed
- gasification furnace
- 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.)
- Expired - Fee Related
Links
Images
Landscapes
- Gasification And Melting Of Waste (AREA)
- Treating Waste Gases (AREA)
- Processing Of Solid Wastes (AREA)
Abstract
The utility model relates to garbage biomass gasification equipment for cooperatively gasified plasma and calcium oxide, belonging to the fields of garbage processing and new energy sources. The garbage biomass gasification equipment is mainly composed of a suspending fluidized bed pyrolyzing furnace, a separation chamber, a turbulent fluid fluidized bed gasification furnace, calcium oxide ejection guns, a plasma ejection gun, a pyrolyzed gas circulating tube and a high-temperature circulating fan. The calcium oxide ejection guns are arranged in a dense-phase area of the pyrolyzing furnace; the plasma ejection gun and the calcium oxide ejection guns are connected into a dense-phase area of the gasification furnace; and a plurality of calcium oxide ejection guns are in annular distribution. Heated fluidized material is circularly delivered into the pyrolyzing furnace to perform mixing and heat transmission with raw materials so as to decompose the garbage biomass raw materials due to heat; water vapour is heated by the plasma ejection gun to react with solid carbocoal to generate compound gas mainly containing carbon monoxide and hydrogen; and the quantity of heat required by the gasification reaction is cooperatively provided by the plasma ejection gun and the exothermic reaction that the calcium oxide absorbs carbon dioxide. The utility model avoids generating waste gas during burning garbage in the pyrolyzing furnace and the gasification furnace, realizes gasification without oxygen and generates the compound gas with high quality.
Description
Affiliated technical field
The utility model relates to the processing and the new energy technology of rubbish, living beings, the particularly equipment for gasification of rubbish, living beings.
Background technology
Current, energy shortage, the situation is tense in environmental protection.Rubbish is along with the continuous expansion of the development of Chinese national economy and city size and increase sharply, and the content of its harmful components is also more and more higher, as handle bad, to pollute the environment, threaten people health, the progress that this not only can restrict society also has influence on the sustainable development of national economy.Current, China handles domestic waste and mainly contains Sanitary Landfill Technology, compost (biochemistry) technology and incineration technology, the major part area adopts sanitary landfill method to handle domestic waste, and this not only need take a large amount of soils, waste resource, and easy contaminated land and underground water; The employing composting process is only utilized the organic matter about 40%, need to build supporting burning process equipment, also need sanitary filling field and match, there is contaminated soil in the heavy metal in the compost goods and enters the possibility of food chain crop, has the hidden danger of secondary pollution equally; Adopt the burning electricity generation method to handle domestic waste, can accomplish minimizing, recycling treatment house refuse, but there is following shortcoming in waste incineration and generating electricity: 1. be main target with the disposal of refuse, capacity usage ratio only is about 20%; 2. flue gas, CO2 emissions are big, pollutant has dust, hydrogen chloride, hydrogen fluoride, oxysulfide, nitrogen oxide, carcinogenic violent in toxicity (dioxin, furans), heavy metal (mercury, lead, chromium etc.) in the flue gas, though flue gas purification system is arranged, but be difficult to eliminate fully, particularly dioxin, the furans discharging that exceeds standard also lacks the reliable NO of technology at present
xTerminal process for purifying with dioxin etc.; 3. economic output/input ratio is little, and deficiency in economic performance needs the government finance subsidy, thereby can not popularization and application.In sum, sanitary landfill method, compost (biochemistry) method or burning electricity generation method handle that domestic waste exists all that resource is not fully utilized, secondary pollution problem and economic the need by the government-funded problem.
China is a large agricultural country, and biomass resource is very abundant, and only non-wood-fibers such as straw, wheat straw, reed, bamboo are just produced per year and surpassed 1,000,000,000 tons, add a large amount of wood machining residues, all are the huge energy " warehouse ".Biomass energy in use produces hardly to be polluted, and does not have SO
2Discharging, the CO of generation
2Need the CO that absorbs in gas and the growing process
2Quantitatively keep balance, be referred to as CO
2Neutral fuel.Replace fossil fuel with biomass energy, but not only continuous utilization, and and environmental protection and ecological effect are outstanding, to improving the atmosphere acid rain environment, alleviating greenhouse effects great benefit is all arranged.Yet the present agricultural surplus materials wasting of resources of China is surprising, except that the fraction rural area is used for the fermentation and biogas production, major part all by directly burning, landfill, rotted.
Rubbish, living beings are converted into the secondary energy sources of cleaning by the method for gasification, can obtain dual beneficial effect, the one, can solve problem of environmental pollution, the 2nd, can reduce dependence to the oil coal resources, for build a resource-conserving society and friendly environment society play positive role.
The utility model content
The purpose of this utility model is the shortcoming that will overcome conventional garbage, biomass processes technology; a kind of plasma, the calcium oxide cooperation-gasified method and apparatus of producing synthesis gas with the rubbish biological raw material are proposed; produce the synthesis gas of high heating value; institute's production of synthetic gas is used for producing clean energy resource or industrial chemicals; comprise production city coal gas, hydrogen, methyl alcohol, dimethyl ether, realize resource rationally use and environmental protection.
In order to achieve the above object, a kind of plasma that the utility model proposes, calcium oxide cooperation-gasified rubbish biomass gasification equipment, the work characteristics of equipment is that rubbish biomass is dried and decomposes in the pyrolysis burner hearth earlier, in gasification hearth, finish then the gasification and burn, its process is: organic solid waste, living beings a kind of or two kinds of raw materials are wherein sent in the suspension fluid bed pyrolysis oven, under the drive of fluidized wind, the rubbish biological raw material is rolled at the pyrolysis oven inner suspension, simultaneously the circulation of the fluidisation material of heating is sent in the pyrolysis oven, carry out contact heat transfer with raw material, make the rubbish biological raw material finish oven dry and decomposes process at short notice, described fluidisation material comprises calcium oxide fine powder and quartz sand, regulate the internal circulating load of fluidisation material, the operating temperature in the control pyrolysis oven is 300~600 ℃; The rubbish biological raw material in pyrolysis oven, dry and the decomposes process in the pyrolysis gas bag that generates draw together volatile matters such as water vapour, carbon monoxide, hydrogen, methane, gaseous state tar, the flue gas that also has carbon particle to form, solid after the decomposition is the semicoke product, pyrolysis gas, solid-state semicoke and fluidisation material are extracted out from the top of pyrolysis oven, by separating, pyrolysis gas is sent into the air compartment of pyrolysis oven bottom with the high temperature circulation blower fan, be blown in the pyrolysis oven by air distribution plate again, form fluidized wind, keep the interior raw material suspension of pyrolysis oven and roll; Isolated solid-state semicoke and fluidisation material enter in the turbulent fluidized bed gasification furnace, the pyrolysis gas that pyrolysis oven is generated is sent into gasification furnace as fluidized wind and is formed turbulent environment simultaneously, water vapour is heated to more than 3100 ℃ by plasma gun sprays in the gasification furnace, react with solid-state semicoke, main carbon monoxide and the hydrogen of generating, and semicoke burnt, in gasification furnace, water vapour in the pyrolysis gas and flue gas carbon particle, solid-state semicoke carry out the reaction based on water gas reaction respectively, generate carbon monoxide and hydrogen; The oxidized calcium absorption carrying out of carbon dioxide carbonation reaction in that pyrolysis oven and gasification reaction in furnace process produce generates calcium carbonate and also emits heat, carries out exothermic reaction by additional input carbon dioxide and calcium oxide in stove, for gasification reaction in the stove provides heat; The required heat of gasification reaction in the gasification furnace is provided by plasma torch and is provided by the exothermic reaction of calcium oxide absorbing carbon dioxide, and the temperature that running parameter by regulating plasma torch and calcium oxide internal circulating load and carbon dioxide magnitude of recruitment are controlled in the turbulent flow gasification zone is 800~1150 ℃.The reaction of carrying out in the turbulent fluidized bed gasification furnace mainly contains:
C(s)+O
2 *(g)→CO
2(g) ΔH=+406.96kj/mol
C(s)+1/2O
2 *(g)→CO(g) ΔH=+203.48kj/mol
C(s)+2H
2 *(g)→CH
4(g) ΔH=+75.6kj/mol
C(s)+H
2O
*(g)→CO(g)+H
2(g) ΔH=-131.2kj/mol
CO(g)+H
2O
*(g)→CO
2(g)+H
2(g) ΔH=+42kj/mol
C(s)+H
2O(g)→CO(g)+H
2(g) ΔH=-131.2kj/mol
CH
4(g)+H
2O(g)→CO(g)+3H
2(g) ΔH=-205.8kj/mol
CaO(s)+CO
2(g)→CaCO
3(s) ΔH=+178.8kj/mol
.....
In the formula, the upper right molecule that indicates * number is the material from the plasma torch ejection.
By above-mentioned pyrolysis and gasification course of reaction, being converted into rubbish biomass with carbon monoxide and hydrogen is the synthesis gas of main component, synthesis gas that reaction in furnace generates and calcium carbonate powder mix, extract out from the top of gasification furnace, separate by sending into gas-solid separator after the waste heat boiler cooling, isolated calcium carbonate powder is sent into the calcining furnace processing of regenerating, decompose to generate and send pyrolysis oven again back to behind the calcium oxide and gasification furnace carries out recycling; Isolated synthesis gas is sent into purifying column carry out purified treatment, it is standby that the synthesis gas after the purification is pressed into gas holder with compressor, and the synthesis gas in the gas holder can directly use as town gas, or by back level device fabrication hydrogen, methyl alcohol, dimethyl ether liquefied gas product.
In the said process, the operation wind speed in the suspension fluid bed pyrolysis oven is 17~35m/s; Operation wind speed in the turbulent fluidized bed gasification furnace is 3~10m/s.
In the said process; fluidisation material (bed material) comprises the mixture of calcium oxide, calcium oxide and quartz sand; particle diameter is 20~100 microns; wherein the circulation molecular number of calcium oxide is absorbing carbon dioxide in the stove, chlorine, sulphur aggregated molecule number 2~3 times; calcium oxide is carried out outside the carbonating exothermic reaction, also have calcium oxide enough more than needed, to suppress the generation of violent in toxicity dioxin, pollutant sulfur dioxide as dechlorination/desulfurizing agent; the favorable environment protection is simplified the back level and is handled.
In the said process, raw material stoving and the required heat of pyrolysis are provided by heat transfer medium calcium oxide fluidisation in the suspension fluid bed pyrolysis oven, and essence is to provide heat to pyrolysis oven indirectly by the calcium oxide calcining furnace; The required heat of gasification reaction provides by the exothermic reaction of plasma torch and calcium oxide absorbing carbon dioxide is collaborative in the turbulent fluidized bed gasification furnace, in gasification furnace, after the calcium oxide absorbing carbon dioxide generates calcium carbonate, be sent back to the calcining furnace processing of regenerating, calcium carbonate is decomposed be calcium oxide and carbon dioxide, calcium oxide send back to gasification furnace and pyrolysis oven carry out recycling, carbon dioxide discharged or by after the purified treatment as by-product utilization; Above-mentioned method has been avoided producing waste gas at pyrolysis oven and gasification furnace internal combustion rubbish, realized the anaerobic gasification, and effectively suppressed the generation of dioxin, sulfur dioxide, the synthesis gas quality height that makes the interior generation of stove, the hydrogen mark is big, produces high-grade products in subsequent handling easily; The fuel that the calcium oxide calcining furnace uses is living beings or coal, and living beings or the waste gas that coal combustion generated pass through purified treatment easily than the waste gas that incineration firing produces, and help environmental protection.
A kind of plasma of the present utility model, calcium oxide cooperation-gasified rubbish biomass gasification equipment, it is characterized in that equipment for gasification is mainly by suspension fluid bed pyrolysis oven (IV), separation chamber (V), turbulent fluidized bed gasification furnace (I), calcium oxide spray gun (9), plasma torch (10), pyrolysis gas circulation pipe (21) and high temperature circulation blower fan (31) are formed, wherein: suspension fluid bed pyrolysis oven (IV), separation chamber (V) and turbulent fluidized bed gasification furnace (I) are made of fire-resistant accumulation of heat furnace wall (4) one, the outside of fire-resistant accumulation of heat furnace wall is heat-insulation layer (5), and the outside of heat-insulation layer is shell (6); The burner hearth bottom of suspension fluid bed pyrolysis oven (IV) has air distribution plate (16), and air distribution plate (16) is horizontally disposed with, and the following of air distribution plate (16) is air compartment (III), and pyrolysis gas circulation input interface (17) is arranged on the side wall of air compartment (III); Material inlet (30) and calcium oxide spray gun (19) are arranged on the emulsion zone furnace wall of pyrolysis oven (IV); The pyrolysis gas mixture outlet (26) on pyrolysis oven (IV) top enters separation chamber (V) by tangential direction; Separation chamber (V) by air entraining pipe (27), capture ring wall and the cone of circling round constitutes, air entraining pipe (27), capture ring wall and the coaxial setting of the cone of circling round, the top of air entraining pipe (27) connects pyrolysis gas outlet (1), pyrolysis gas outlet (1) is connected to the air draught interface of high temperature circulation blower fan (31) by circulation pipe (21), and the air-out interface of high temperature circulation blower fan (31) is connected to the pyrolysis gas circulation input interface (17) of pyrolysis oven (IV); The cone below of circling round of separation chamber (V) is connected to the emulsion zone of turbulent fluidized bed gasification furnace (I) by semicoke material channel (25); The burner hearth bottom of turbulent fluidized bed gasification furnace (I) has air distribution plate (13), air distribution plate (13) is directed downwards along the discharging of semicoke material channel (25) and is obliquely installed, the below of air distribution plate (13) is air compartment (II), and pyrolysis gas input interface (14) is arranged on the side wall of air compartment (II); In air distribution plate (13) low side one side slag-drip opening (11) is arranged, slag-drip opening (11) utilizes the water seal of slag bath to be isolated from the outside; There is plasma torch (10) to insert on the top furnace wall of slag-drip opening (11); Have plasma torch (10) and calcium oxide spray gun (9) to insert on the side wall of turbulent fluidized bed gasification furnace (I) emulsion zone, the on-position of calcium oxide spray gun (9) is higher than plasma torch (10) and layout ringwise; Syngas mixture outlet (2) picks out from the top of turbulent fluidized bed gasification furnace (I).Suspension fluid bed pyrolysis oven (IV) burner hearth 3/4 the height top strength transportation section (VI) is set, the sectional shrinkage of strength transportation section (VI) is 35~50%, reducing place smooth excessiveness; Pyrolysis gas mixture outlet (26) is picked out by the top of strength transportation section (VI).Furnace wall one side at air distribution plate (16) the blast cap top 20~30cm of suspension fluid bed pyrolysis oven (IV) height is provided with garbage raw material charging aperture (30), garbage raw material enters in the pyrolysis oven (IV) by compression feeding screw (20), utilizes the raw material that pushes in the compression feeding screw (20) to make in the stove and is isolated from the outside; Calcium oxide spray gun (19) is provided with on the furnace wall of air distribution plate (16) blast cap top 10~20cm height, and many calcium oxide spray guns (19) are layout ringwise, and spout points to the stove inner axes.Having carbon dioxide to replenish mouthful (8) on the side wall of turbulent fluidized bed gasification furnace (I) emulsion zone inserts, during operation, increase carbonating exothermic reaction in the stove by replenish carbon dioxide in stove, improve the temperature in the gasification furnace, used carbon dioxide derives from the calcium oxide calcining furnace and produces; Have tail gas input interface (29) to insert on the side wall of air compartment (II), input afterbody waste gas carries out circular treatment to gasification furnace, increases the fluidisation air quantity simultaneously.
Another kind of plasma of the present utility model, calcium oxide cooperation-gasified rubbish biomass gasification equipment, be that above-mentioned suspension fluid bed pyrolysis oven (IV), separation chamber (V), turbulent fluidized bed gasification furnace (I) are carried out the split setting, replace separation chamber (V) and semicoke material channel (25) with gas-solid separator (33), feeding valve (32) and semicoke Material pipeline (25b) rice.
The above-mentioned suspension fluid bed pyrolysis oven (IV) and the operating pressure of turbulent fluidized bed gasification furnace (I) comprise normal pressure and supercharging mode.
A kind of plasma of the present utility model, calcium oxide cooperation-gasified rubbish biomass gasification system, it is characterized in that system is mainly by suspension fluid bed pyrolysis oven, the separation chamber, the high temperature circulation blower fan, the turbulent fluidized bed gasification furnace, plasma torch, waste heat boiler, gas-solid separator, the calcium oxide calcining furnace, the bleed blower fan, the purified synthesis gas tower, the gentle group of compressor becomes, wherein: the top outlet of suspension fluid bed pyrolysis oven is connected to the separation chamber, the pyrolysis gas outlet of separation chamber is connected to the inlet scoop of high temperature circulation blower fan, and the air outlet of high temperature circulation blower fan is connected to the bottom air compartment of suspension fluid bed pyrolysis oven and turbulent fluidized bed gasification furnace; The semicoke mixture outlet of separation chamber is connected to the emulsion zone of turbulent fluidized bed gasification furnace bottom; Plasma torch is installed in the emulsion zone of turbulent fluidized bed gasification furnace bottom, and the work gas interface of plasma torch is connected to the jet chimney of waste heat boiler; The syngas outlet on turbulent fluidized bed gasification furnace top is connected to the gas approach of waste heat boiler, the exhanst gas outlet of waste heat boiler is connected to gas-solid separator, the dipleg of gas-solid separator is connected to the calcium oxide calcining furnace by feeding valve, and the calcium oxide outlet of calcium oxide calcining furnace is connected respectively to the calcium oxide spray gun of suspension fluid bed pyrolysis oven and turbulent fluidized bed gasification furnace; The synthesis gas output interface of gas-solid separator is connected to the inlet scoop of bleed blower fan, and the air outlet of bleed blower fan is connected to the import of purifying column, and the syngas outlet of purifying column is connected to the air entry of compressor, and the exhaust outlet of compressor is connected to gas holder.In the system, described suspension fluid bed pyrolysis oven, separation chamber and turbulent fluidized bed gasification furnace comprise integration apparatus and split type equipment.In the system, also have calcium carbonate to replenish the storehouse and be connected to the calcium oxide calcining furnace.
The said equipment is under the condition of not using air or oxygen, produce synthesis gas with rubbish, biomass material, the content of nitrogen and carbon dioxide is extremely low in the synthesis gas that is produced, main component is hydrogen and carbon monoxide, it is a kind of synthesis gas of high heating value, can directly be used as town gas, or produce clean energy resourcies such as hydrogen, methyl alcohol, dimethyl ether liquefied gas.
The beneficial effects of the utility model are: rubbish, living beings are carried out gasification process, produce clean energy resource, the output value height is turned waste into wealth, and has eliminated the pollution of rubbish, reduces discharging CO
2, environmental protection and ecological effect are outstanding, can alleviate the energy-intensive situation after the large-scale production.The utility model is compared with waste incineration and generating electricity, has following advantage: the solid feed gasification is complete, the energy transformation ratio height; Major product is a clean energy resource, the resource utilization degree height; Discharge amount of exhaust gas is extremely low, carries out purified treatment easily, does not have the secondary pollution phenomenon.The utility model is a main target rubbish is converted into secondary clean energy, really realizes innoxious, the minimizing and the recycling treatment of rubbish.
Description of drawings
The utility model provides following accompanying drawing to be further described, but the specific embodiment of each accompanying drawing and the following stated does not all constitute restriction of the present utility model:
Fig. 1 is a kind of plasma of the present utility model, calcium oxide cooperation-gasified rubbish biomass gasification equipment structure chart.
Fig. 2 is the A-A profile of Fig. 1.
Fig. 3 is the B-B cutaway view of Fig. 1.
Fig. 4 is another kind of plasma of the present utility model, calcium oxide cooperation-gasified rubbish biomass gasification equipment structure chart.
Fig. 5 is a kind of plasma of the present utility model, the calcium oxide cooperation-gasified system block diagram of producing synthesis gas with the rubbish biological raw material.
Among the figure: 1. pyrolysis gas outlet, 2. syngas mixture outlet, 3. baffle plate, 4. fire-resistant accumulation of heat furnace wall, 5. heat-insulation layer, 6. shell, 7. temperature sensor, 8. carbon dioxide replenishes mouthful, 9. the calcium oxide spray gun, 10. plasma torch, 11. slag-drip openings, 12. blast caps, 13. air distribution plate, 14. pyrolysis gas input interfaces, 15. blast caps, 16. air distribution plate, 17. pyrolysis gas circulation input interfaces, 18. scum pipes, 19. the calcium oxide spray gun, 20. compression feeding screws, 21. pyrolysis gas circulation pipes, 22. the rubbish hopper, 23. additive hoppers, 24. temperature sensors, 25. the semicoke material channel, 25b. semicoke Material pipeline, the outlet of 26. pyrolysis gas mixtures, 27. air entraining pipe, 28. high-temperature blowers, 29. tail gas input interfaces, 30. charging aperture, 31. high temperature circulation blower fans, 32. feeding valves, 33. gas-solid separator, I. turbulent fluidized bed gasification furnace, II. air compartment, III. air compartment, IV. the fluid bed pyrolysis oven that suspends, V. separation chamber, VI. strength transportation section.
The specific embodiment
Fig. 1, Fig. 2, among the embodiment shown in Figure 3, equipment for gasification is mainly by compression feeding screw (20), suspension fluid bed pyrolysis oven (IV), separation chamber (V), turbulent fluidized bed gasification furnace (I), calcium oxide spray gun (9), plasma torch (10), pyrolysis gas circulation pipe (21), high temperature circulation blower fan (31) and high-temperature blower (28) are formed, wherein: suspension fluid bed pyrolysis oven (IV), separation chamber (V) and turbulent fluidized bed gasification furnace (I) are made of fire-resistant accumulation of heat furnace wall (4)-body, fire-resistant accumulation of heat furnace wall is built with refractory concrete or is built by laying bricks or stones with refractory brick, the outside of fire-resistant accumulation of heat furnace wall is heat-insulation layer (5), insulation material is selected alumina silicate sheet material or perlite particle for use, the outside of heat-insulation layer is shell (6), and shell adopts steel shell; The burner hearth bottom of suspension fluid bed pyrolysis oven (IV) has air distribution plate (16), and air distribution plate (16) is horizontally disposed with, and the following of air distribution plate (16) is air compartment (III), and pyrolysis gas circulation input interface (17) is arranged on the side wall of air compartment (III); It is little that the section of burner hearth of pyrolysis oven (IV) is two broad in the middle, the emulsion zone of bottom is the back taper bodily form that circles round, the dilute-phase zone in stage casing is the straight bodily form that circles round, and the strength transportation section (VI) on 3/4 height top of burner hearth is the straight tube revolution of cross-sectional constriction 50%, and the reducing contraction mouth carries out smooth excessiveness; Furnace wall one side at air distribution plate (16) the blast cap top 25cm of suspension fluid bed pyrolysis oven (IV) height is provided with garbage raw material charging aperture (30), the compression discharging opening of feeding screw (20) stretches in the charging aperture (30), and rubbish hopper (22) and additive hopper (23) are arranged on the feeding screw (20); On the furnace wall of air distribution plate (16) the blast cap top 15cm of pyrolysis oven (IV) height many calcium oxide spray guns (19) are set, the calcium oxide spray gun is layout ringwise, and spout points to the stove inner axes; Temperature sensor (24) is arranged on the side wall of pyrolysis oven (IV) burner hearth; Pyrolysis gas mixture outlet (26) is on the top of pyrolysis oven (IV), and pyrolysis gas mixture outlet (26) enters separation chamber (V) by tangential direction; Separation chamber (V) by air entraining pipe (27), capture ring wall and the cone of circling round constitutes, air entraining pipe (27), capture ring wall and the coaxial setting of the cone of circling round, the top of air entraining pipe (27) connects pyrolysis gas outlet (1), pyrolysis gas outlet (1) is connected to the air draught interface of high temperature circulation blower fan (31) by circulation pipe (21), and the air-out interface of high temperature circulation blower fan (31) is connected to pyrolysis gas circulation input interface (17); The air inlet of high-temperature blower (28) is connected to circulation pipe (21), and the air outlet of high-temperature blower (28) is connected to the pyrolysis gas input interface (14) of gasification furnace air compartment (II); The cone below of circling round of separation chamber (V) is connected to the emulsion zone of turbulent fluidized bed gasification furnace (I) by semicoke material channel (25).The burner hearth bottom of turbulent fluidized bed gasification furnace (I) has air distribution plate (13), air distribution plate (13) is directed downwards along the discharging of semicoke material channel (25) and is obliquely installed, the below of air distribution plate (13) is air compartment (II), and pyrolysis gas input interface (14) is arranged on the side wall of air compartment (II); In air distribution plate (13) low side one side slag-drip opening (11) is arranged; Many plasma torch (10) are installed on the furnace wall of slag-drip opening (11) top and on the side wall of gasification furnace (I) emulsion zone, many calcium oxide spray guns (9) also are installed on the side wall of gasification furnace (I) emulsion zone, and the on-position of calcium oxide spray gun (9) is higher than plasma torch (10) and layout ringwise; Having carbon dioxide to replenish mouthful (8) on the side wall of gasification furnace (I) emulsion zone inserts; Temperature sensor (7) is arranged on the side wall of gasification furnace (I) burner hearth; On the side wall of air compartment (II), there is tail gas input interface (29) to insert.Syngas mixture outlet (2) picks out from the top of turbulent fluidized bed gasification furnace (I).During the equipment operation, garbage raw material enters in the pyrolysis oven (IV) by compression feeding screw (20), utilizing the garbage raw material that pushes in the compression feeding screw (20) to make in the gasification furnace is isolated from the outside, fine grain additive is mixed with garbage raw material, when feeding screw (20) pushes, can play better sealing effectiveness, described additive comprises calcium oxide powder and coal dust; The garbage raw material that enters in the pyrolysis oven (IV) rolls at emulsion zone and dilute-phase zone suspension, raw material is along with decomposes, charing, the semicoke of charing is impacted by the fluidisation material, diminish and lighten, be inhaled into strength transportation section (VI), along with the fluidisation material enters separation chamber (V) fast, the separated passage (25) that falls into of solid-state semicoke and fluidisation material, enter the emulsion zone of turbulent fluidized bed gasification furnace (I) subsequently, tumbling motion up and down, finish gasification, carbon residue is burnt with plasma torch (10), and the lime-ash that burns enters the hydrolock slag bath from slag-drip opening (11).Fluidisation material in the present embodiment is the mixture of thermal oxide calcium powder and quartz sand, the operating temperature of controlling pyrolysis oven (IV) by the fluidisation solid circulating rate of regulating pyrolysis oven (IV) is 300~600 ℃, and the operating temperature that the running parameter of the calcium oxide input quantity of adjusting gasification furnace (I), carbon dioxide magnitude of recruitment and adjusting plasma torch is controlled gasification furnace (I) is 800~1150 ℃; The amount that is input to gasification furnace with control pyrolysis gas and tail gas is regulated and is operated wind speed in the gasification furnace.
Among the embodiment shown in Figure 4, suspension fluid bed pyrolysis oven (IV) in the equipment for gasification, separation chamber (V), turbulent fluidized bed gasification furnace (I) carry out the split setting, be separate equipment separately, replaced separation chamber (V) and semicoke material channel (25) with gas-solid separator (33), feeding valve (32) and semicoke Material pipeline (25b).
A kind of plasma shown in Figure 5, calcium oxide cooperation-gasified produces in the system block diagram of synthesis gas with the rubbish biological raw material, system is mainly by selection by winnowing/apparatus for drying, suspension fluid bed pyrolysis oven, the separation chamber, the high temperature circulation blower fan, the turbulent fluidized bed gasification furnace, plasma torch, waste heat boiler, gas-solid separator, the calcium oxide calcining furnace, the bleed blower fan, the purified synthesis gas tower, the gentle group of compressor becomes, wherein: the top outlet of suspension fluid bed pyrolysis oven is connected to the separation chamber, the pyrolysis gas outlet of separation chamber is connected to the inlet scoop of high temperature circulation blower fan, and the air outlet of high temperature circulation blower fan is connected to the bottom air compartment of suspension fluid bed pyrolysis oven and turbulent fluidized bed gasification furnace; The semicoke mixture outlet of separation chamber is connected to the emulsion zone of turbulent fluidized bed gasification furnace bottom; Plasma torch is installed in the emulsion zone of turbulent fluidized bed gasification furnace bottom, and the work gas interface of plasma torch is connected to the jet chimney of waste heat boiler; The syngas outlet on turbulent fluidized bed gasification furnace top is connected to the gas approach of waste heat boiler, the exhanst gas outlet of waste heat boiler is connected to gas-solid separator, the dipleg of gas-solid separator is connected to the calcium oxide calcining furnace by feeding valve, and the calcium oxide outlet of calcium oxide calcining furnace is connected respectively to the calcium oxide spray gun of suspension fluid bed pyrolysis oven and turbulent fluidized bed gasification furnace; The synthesis gas output interface of gas-solid separator is connected to the inlet scoop of bleed blower fan, and the air outlet of bleed blower fan is connected to the import of purifying column, and the syngas outlet of purifying column is connected to the air entry of compressor, and the exhaust outlet of compressor is connected to gas holder.In the system, described suspension fluid bed pyrolysis oven, separation chamber and turbulent fluidized bed gasification furnace comprise integration apparatus and split type equipment.Also have calcium carbonate to replenish the storehouse in the system and be connected to the calcium oxide calcining furnace.When system moves, being undertaken sending into suspension fluid bed pyrolysis oven after the selection by winnowing/air-dry by hot blast through the rubbish biomass of broken bag break process, described hot blast utilizes system's waste heat to add hot-air and produces, the combustion chamber of sending into the calcium oxide calcining furnace through the hot blast after selection by winnowing/air-dry use, destroy foul odors when playing combustion-supporting effect.
Claims (7)
1. plasma, calcium oxide cooperation-gasified rubbish biomass gasification equipment, it is characterized in that equipment for gasification is mainly by suspension fluid bed pyrolysis oven (IV), separation chamber (V), turbulent fluidized bed gasification furnace (I), calcium oxide spray gun (9), plasma torch (10), pyrolysis gas circulation pipe (21) and high temperature circulation blower fan (31) are formed, wherein: suspension fluid bed pyrolysis oven (IV), separation chamber (V) and turbulent fluidized bed gasification furnace (I) are made of fire-resistant accumulation of heat furnace wall (4) one, the outside of fire-resistant accumulation of heat furnace wall is heat-insulation layer (5), and the outside of heat-insulation layer is shell (6);
The burner hearth bottom of suspension fluid bed pyrolysis oven (IV) has air distribution plate (16), and air distribution plate (16) is horizontally disposed with, and the following of air distribution plate (16) is air compartment (III), and pyrolysis gas circulation input interface (17) is arranged on the side wall of air compartment (III); Material inlet (30) and calcium oxide spray gun (19) are arranged on the emulsion zone furnace wall of pyrolysis oven (IV); The pyrolysis gas mixture outlet (26) on pyrolysis oven (IV) top enters separation chamber (V) by tangential direction;
Separation chamber (V) by air entraining pipe (27), capture ring wall and the cone of circling round constitutes, air entraining pipe (27), capture ring wall and the coaxial setting of the cone of circling round, the top of air entraining pipe (27) connects pyrolysis gas outlet (1), pyrolysis gas outlet (1) is connected to the air draught interface of high temperature circulation blower fan (31) by circulation pipe (21), and the air-out interface of high temperature circulation blower fan (31) is connected to the pyrolysis gas circulation input interface (17) of pyrolysis oven (IV); The cone below of circling round of separation chamber (V) is connected to the emulsion zone of turbulent fluidized bed gasification furnace (I) by semicoke material channel (25);
The burner hearth bottom of turbulent fluidized bed gasification furnace (I) has air distribution plate (13), air distribution plate (13) is directed downwards along the discharging of semicoke material channel (25) and is obliquely installed, the below of air distribution plate (13) is air compartment (II), and pyrolysis gas input interface (14) is arranged on the side wall of air compartment (II); In air distribution plate (13) low side one side slag-drip opening (11) is arranged, have plasma torch (10) to insert on the top furnace wall of slag-drip opening (11); Have plasma torch (10), calcium oxide spray gun (9) to insert on the side wall of turbulent fluidized bed gasification furnace (I) emulsion zone, the on-position of calcium oxide spray gun (9) is higher than plasma torch (10) and layout ringwise; Syngas mixture outlet (2) picks out from the top of turbulent fluidized bed gasification furnace (I).
2. a kind of plasma according to claim 1, calcium oxide cooperation-gasified rubbish biomass gasification equipment, it is characterized in that suspension fluid bed pyrolysis oven (IV) burner hearth 3/4 the height top strength transportation section (VI) is set, the sectional shrinkage of strength transportation section (VI) is 35~50%, and pyrolysis gas mixture outlet (26) picks out from the top of strength transportation section (VI).
3. a kind of plasma according to claim 1, calcium oxide cooperation-gasified rubbish biomass gasification equipment, it is characterized in that suspending the garbage raw material charging aperture (30) of fluid bed pyrolysis oven (IV) in the furnace wall one side setting of air distribution plate (16) blast cap top 20~30cm height, calcium oxide spray gun (19) is provided with on the furnace wall of air distribution plate (16) blast cap top 10~20cm height, many calcium oxide spray guns (19) are layout ringwise, and spout points to the stove inner axes.
4. a kind of plasma according to claim 1, calcium oxide cooperation-gasified rubbish biomass gasification equipment is characterized in that having carbon dioxide to replenish mouthful (8) on the side wall of turbulent fluidized bed gasification furnace (I) emulsion zone inserts; On the side wall of air compartment (II), there is tail gas input interface (29) to insert.
5. a kind of plasma according to claim 1, calcium oxide cooperation-gasified rubbish biomass gasification equipment, it is characterized in that suspending fluid bed pyrolysis oven (IV), separation chamber (V), turbulent fluidized bed gasification furnace (I) is the split setting, replaces separation chamber (V) and semicoke material channel (25) with gas-solid separator (33), feeding valve (32) and semicoke Material pipeline (25b).
6. plasma, calcium oxide cooperation-gasified rubbish biomass gasification system, it is characterized in that system is mainly by suspension fluid bed pyrolysis oven, the separation chamber, the high temperature circulation blower fan, the turbulent fluidized bed gasification furnace, plasma torch, waste heat boiler, gas-solid separator, the calcium oxide calcining furnace, the bleed blower fan, the purified synthesis gas tower, the gentle group of compressor becomes, wherein: the top outlet of suspension fluid bed pyrolysis oven is connected to the separation chamber, the pyrolysis gas outlet of separation chamber is connected to the inlet scoop of high temperature circulation blower fan, and the air outlet of high temperature circulation blower fan is connected to the bottom air compartment of suspension fluid bed pyrolysis oven and turbulent fluidized bed gasification furnace; The semicoke mixture outlet of separation chamber is connected to the emulsion zone of turbulent fluidized bed gasification furnace bottom; Plasma torch is installed in the emulsion zone of turbulent fluidized bed gasification furnace bottom, and the work gas interface of plasma torch is connected to the jet chimney of waste heat boiler; The syngas outlet on turbulent fluidized bed gasification furnace top is connected to the gas approach of waste heat boiler, the exhanst gas outlet of waste heat boiler is connected to gas-solid separator, the dipleg of gas-solid separator is connected to the calcium oxide calcining furnace by feeding valve, and the calcium oxide outlet of calcium oxide calcining furnace is connected respectively to the calcium oxide spray gun of suspension fluid bed pyrolysis oven and turbulent fluidized bed gasification furnace; The synthesis gas output interface of gas-solid separator is connected to the inlet scoop of bleed blower fan, and the air outlet of bleed blower fan is connected to the import of purifying column, and the syngas outlet of purifying column is connected to the air entry of compressor, and the exhaust outlet of compressor is connected to gas holder.
7. a kind of plasma according to claim 6, calcium oxide cooperation-gasified rubbish biomass gasification system, the fluid bed pyrolysis oven that it is characterized in that suspending, separation chamber and turbulent fluidized bed gasification furnace comprise integration apparatus and split type equipment.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNU2008201139524U CN201218507Y (en) | 2008-05-29 | 2008-05-29 | Plasma and calcium oxide cooperation-gasified rubbish biomass gasification equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNU2008201139524U CN201218507Y (en) | 2008-05-29 | 2008-05-29 | Plasma and calcium oxide cooperation-gasified rubbish biomass gasification equipment |
Publications (1)
Publication Number | Publication Date |
---|---|
CN201218507Y true CN201218507Y (en) | 2009-04-08 |
Family
ID=40541340
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CNU2008201139524U Expired - Fee Related CN201218507Y (en) | 2008-05-29 | 2008-05-29 | Plasma and calcium oxide cooperation-gasified rubbish biomass gasification equipment |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN201218507Y (en) |
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2013097532A1 (en) * | 2011-12-29 | 2013-07-04 | 武汉凯迪工程技术研究总院有限公司 | Microwave plasma biomass entrained flow gasifier and process |
WO2013097535A1 (en) * | 2011-12-29 | 2013-07-04 | 武汉凯迪工程技术研究总院有限公司 | Biomass gasification island process under high temperature and atmospheric pressure |
WO2013097534A1 (en) * | 2011-12-29 | 2013-07-04 | 武汉凯迪工程技术研究总院有限公司 | Microwave plasma biomass gasifying fixed bed gasifier and process |
CN106958821A (en) * | 2017-04-11 | 2017-07-18 | 赵山山 | A kind of two method domestic garbage pyrolysis gasification ovens of recycling |
CN107490008A (en) * | 2017-09-12 | 2017-12-19 | 许志英 | A kind of domestic garbage pyrolysis gasification process of scale |
CN112555840A (en) * | 2020-07-21 | 2021-03-26 | 江苏帕斯玛环境科技有限公司 | Plasma cracking device capable of melting and deslagging |
CN112555863A (en) * | 2021-01-14 | 2021-03-26 | 新乡工神锅炉有限公司 | Garbage incinerator with square rotary air separator for eliminating dioxin |
CN113134617A (en) * | 2021-04-19 | 2021-07-20 | 山东理工大学 | Plasma spheroidizing deoxidation 3D printing metal powder preparation device |
-
2008
- 2008-05-29 CN CNU2008201139524U patent/CN201218507Y/en not_active Expired - Fee Related
Cited By (13)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2013097532A1 (en) * | 2011-12-29 | 2013-07-04 | 武汉凯迪工程技术研究总院有限公司 | Microwave plasma biomass entrained flow gasifier and process |
WO2013097535A1 (en) * | 2011-12-29 | 2013-07-04 | 武汉凯迪工程技术研究总院有限公司 | Biomass gasification island process under high temperature and atmospheric pressure |
WO2013097534A1 (en) * | 2011-12-29 | 2013-07-04 | 武汉凯迪工程技术研究总院有限公司 | Microwave plasma biomass gasifying fixed bed gasifier and process |
KR20140120310A (en) * | 2011-12-29 | 2014-10-13 | 우한 카이디 엔지니어링 테크놀로지 리서치 인스티튜트 코오퍼레이션 엘티디. | Microwave plasma biomass entrained flow gasifier and process |
AU2012362083B2 (en) * | 2011-12-29 | 2016-06-09 | Wuhan Kaidi General Research Institute Of Engineering & Technology Co., Ltd. | Microwave plasma biomass entrained flow gasifier and process |
KR101695974B1 (en) | 2011-12-29 | 2017-01-12 | 우한 카이디 엔지니어링 테크놀로지 리서치 인스티튜트 코오퍼레이션 엘티디. | Microwave plasma biomass entrained flow gasifier and process |
CN106958821A (en) * | 2017-04-11 | 2017-07-18 | 赵山山 | A kind of two method domestic garbage pyrolysis gasification ovens of recycling |
CN107490008A (en) * | 2017-09-12 | 2017-12-19 | 许志英 | A kind of domestic garbage pyrolysis gasification process of scale |
CN112555840A (en) * | 2020-07-21 | 2021-03-26 | 江苏帕斯玛环境科技有限公司 | Plasma cracking device capable of melting and deslagging |
CN112555840B (en) * | 2020-07-21 | 2021-08-10 | 江苏帕斯玛环境科技有限公司 | Plasma cracking device capable of melting and deslagging |
CN112555863A (en) * | 2021-01-14 | 2021-03-26 | 新乡工神锅炉有限公司 | Garbage incinerator with square rotary air separator for eliminating dioxin |
CN113134617A (en) * | 2021-04-19 | 2021-07-20 | 山东理工大学 | Plasma spheroidizing deoxidation 3D printing metal powder preparation device |
CN113134617B (en) * | 2021-04-19 | 2023-01-17 | 山东理工大学 | Plasma spheroidizing deoxidation 3D printing metal powder preparation device |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN101469865B (en) | Plasma and calcium oxide cooperation-gasified rubbish biomass gasification method and equipment | |
CN101468789B (en) | Domestic garbage transformation technique, system and apparatus without conventional fuel for supporting combustion | |
CN201218507Y (en) | Plasma and calcium oxide cooperation-gasified rubbish biomass gasification equipment | |
CN108300516B (en) | Process system for cooperatively treating household garbage by utilizing plasma gasification furnace in coal-fired power plant | |
CN101468788B (en) | System and apparatus for producing synthesis gas from garbage and biomass raw material | |
CN101525118B (en) | Gasification process for producing synthesis gas from garbage and biomass raw materials | |
US8969422B2 (en) | Method, system and equipment for gasification-liquefaction disposal of municipal solid waste | |
CN109536185A (en) | The organic solid waste in city couples desiccation pyrolysis gasification system | |
CN102322630A (en) | The macromolecular substances high-efficiency cleaning uses method and device | |
CN101823073A (en) | Gasification-liquefaction disposal method, system and equipment for household garbage | |
CN201158629Y (en) | Rubbish biomass poly-generation processing system and equipment | |
CN105885950B (en) | A kind of three combination pyrolytic gasifications of solid waste and coke tar cracking integral system | |
CN101880551B (en) | Calcium oxide and plasma body cooperative gasified domestic garbage gasification system and equipment | |
CN101560408A (en) | Gasification system of garbage and organic waste and device thereof | |
CN201321439Y (en) | Garbage biomass gasification furnace | |
CN201272768Y (en) | Household waste conversion system and equipment without combustion supported by conventional fuel | |
CN101993733A (en) | Novel municipal solid waste pyrolysis gasification furnace | |
CN102329654B (en) | Biomass gasification device and process | |
CN201109766Y (en) | Equipment system for producing dimethyl ether by garbage and biomass raw material | |
CN201254454Y (en) | System and equipment for producing synthesis gas by rubbish and biomass raw material | |
CN100543116C (en) | The oxygen deprivation fluidized bed combustion downdraft gasification process and the device that prepare no tar products gas | |
CN101560401B (en) | Waste and biomass gasifier | |
CN112628745B (en) | Gradient temperature-changing pyrolysis system for treating household garbage | |
CN116143425B (en) | Central burner type lime kiln | |
CN209636164U (en) | The organic solid waste in city couples desiccation pyrolysis gasification system |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20090408 Termination date: 20110529 |