CN107166412A - Block-resistant type rotary wings heat accumulating burner - Google Patents
Block-resistant type rotary wings heat accumulating burner Download PDFInfo
- Publication number
- CN107166412A CN107166412A CN201710548339.9A CN201710548339A CN107166412A CN 107166412 A CN107166412 A CN 107166412A CN 201710548339 A CN201710548339 A CN 201710548339A CN 107166412 A CN107166412 A CN 107166412A
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- Prior art keywords
- heat
- waste gas
- combustion chamber
- block
- type rotary
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23G—CREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
- F23G7/00—Incinerators or other apparatus for consuming industrial waste, e.g. chemicals
- F23G7/06—Incinerators or other apparatus for consuming industrial waste, e.g. chemicals of waste gases or noxious gases, e.g. exhaust gases
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F23—COMBUSTION APPARATUS; COMBUSTION PROCESSES
- F23G—CREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
- F23G2209/00—Specific waste
- F23G2209/14—Gaseous waste or fumes
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- Engineering & Computer Science (AREA)
- Environmental & Geological Engineering (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Air Supply (AREA)
Abstract
The invention discloses a kind of block-resistant type rotary wings heat accumulating burner, including the combustion chamber being arranged at the top of seal casinghousing, the recuperation layer at middle part and the changeover valve of bottom, combustion chamber is communicated with recuperation layer, the burner for lifting chamber temperature is provided with combustion chamber, combustion chamber enters pipeline communication by preheating pipe and waste gas, waste gas enters pipeline communication waste gas chamber, waste gas chamber is communicated to recuperation layer by the exhaust steam passage on changeover valve, combustion chamber enters pipeline communication by preheating pipe and waste gas, waste gas enters pipeline communication waste gas chamber, waste gas front end adds the preheating pipe for preheating waste gas, prevent that organic volatile is condensed before body of heater is entered in waste gas, electric heating mechanism is added on changeover valve makes waste gas prevent condensation in heating all the time into valve, gitter brick is caused to block.
Description
Technical field
The invention belongs to field of combustion equipment during accumulation of heat, and in particular to a kind of block-resistant type rotary wings heat accumulating burner.
Background technology
China is characterized the air combined pollution of pollutant with PM2.5 and O3, and the situation is tense, VOC
(VOCs, Volatile Organic Compounds) is the important as precursors thing for causing O3 to pollute, and also has weight to PM2.5 generations
Influence.When VOCs concentration exceedes finite concentration in atmosphere, human body has headache and weak neurotoxicity, the improvement to VOCs
Become country's great environmental problem urgently to be resolved hurrily, thus pernicious gas processing it is up to standard after could discharge, typically make
With regenerative burner device (RTO, regenerative thermaloxidizer system), it can enter to pernicious gas
The processing of row pyrolytic.Heat accumulating type oxidation furnaces develop into three Room from two Room, occur in that within this several years that one kind efficiently, is impacted smaller again
Rotary RTO, profile also develops into circle by box-type, more saves place.But there is changeover valve in this rotary RTO
Dynamic sealing problem, because changeover valve is using friction dish structure, stator and too big RTO points of the easily leakage influence in rotor seal gap
Solve efficiency, stator and the too small easy abrasion in rotor seal gap, and be difficult to repair and change, also deposit be difficult to processing high viscosity, it is easy
The pernicious gas of fouling;Surface is blocked or be deposited in the supply heat storage of regenerative apparatus by grease or dirt, it is impossible to effectively enters
Row heat exchange and cause temperature drop.The supply heat storage of regenerative apparatus is contaminated, and increases pressure, influences the gas of body interior
Stream, thus causing the operation cost of device increases even failure.
The content of the invention
It is anti-blocking it is an object of the invention to provide a kind of block-resistant type rotary wings regenerative oxidation device in order to solve the above problems
The composition of type rotary wings regenerative oxidation device includes:Contain combustion chamber, recuperation layer, rotary wings valve body, valve housing, turnover from top to bottom
Wind cavity.Described combustion chamber is provided with combustor at high proportion, high temperature dump mouthful, high-temperature gas preheating mouth, the accumulation of heat
Layer is divided into sandwich construction, and bottom layer can be convenient for changing, and recuperation layer is divided into heating, accumulation of heat, purging, dead band in horizontal plane direction
4 big functional areas.It is specially a kind of in order to lift the thermal efficiency and decomposition efficiency containing volatile organic compound from waste gas, and take
Preheating valve body structure, the structure of quick-replaceable heat storage.Overall rotary wings formula RTO easy to maintenance.
To achieve these goals, the technical solution adopted by the present invention is that block-resistant type rotary wings heat accumulating burner is wrapped
The changeover valve of the combustion chamber being arranged at the top of seal casinghousing, the recuperation layer at middle part and bottom is included, combustion chamber is communicated with recuperation layer,
The burner for lifting chamber temperature is provided with combustion chamber, combustion chamber is connected by preheating pipe and waste gas into pipeline
Logical, waste gas enters pipeline communication waste gas chamber, and waste gas chamber is communicated to recuperation layer by the exhaust steam passage on changeover valve.
Waste gas enters the input that pipeline is connected to exhaust gas fan, and the output end of exhaust gas fan is connected by waste gas access conduit
Logical waste gas chamber.
Also it is communicated with combustion chamber on a dump pipeline, dump pipeline and is provided with dump valve.
Air air outlet and dump pipeline are connected to chimney after the purification of changeover valve.
Dump valve is interlocked in the combustion chamber heat galvanic couple with being arranged in combustion chamber, when chamber temperature is more than 900
When more than DEG C, dump valve is opened, and heat is to protect combustion chamber in release combustion chamber;Burner and combustion chamber heat galvanic couple are mutual
Lock, when chamber temperature is less than setting lower limit temperature, starts burner, when chamber temperature is higher than setting ceiling temperature,
Close burner.
Preheating pipe is insulating tube.
Heat storing and heat preserving layer is provided between gitter brick and housing, and some people for being used to change gitter brick are offered on housing
Hole.
Preheating pipe control valve is provided with preheating pipe, preheating pipe control valve enters pipeline with being arranged on waste gas
Interior thermocouple interlocking, the EGT for waste gas to be entered in pipeline is controlled in setting value.
Recuperation layer includes gitter brick, replaceable heat storage and the screen pack set gradually from top to bottom.
Recuperation layer includes 12 ceramic heat-storing body regions of annular array, wherein, 5 connected ceramic heat-storing body regions are made
The heating zone of waste gas is sent into for heating changeover valve, 5 connected ceramic heat-storing body regions are used as atmospheric heat after absorption cleaning
Heat-accumulating area, and heating zone do not connect with heat-accumulating area, and also one 1 ceramic heat-storing body region is purge zone, 1 ceramics
Accumulation of heat body region is dead band.
Insulation construction is provided with the outside of waste gas chamber.
The present invention burner stepped heating, until decompose, purification after, release amount of heat, while purification gas from
Go out final to chimney to exhaust outlet in heat-accumulating area.When by heat-accumulating area, gas and heat storage heat exchange, gas temperature drop step by step
It is low, heat is stored in heat storage.The gas that last heating zone can not be fully flowed into combustion chamber by purge zone is blown to combustion
Room is burnt, to ensure purification efficiency, dead band can prevent heat from reaching heat-accumulating area from heating zone.
Compared with prior art, the present invention at least has the advantages that:Combustion chamber is entered by preheating pipe with waste gas
Enter pipeline communication, waste gas enters pipeline communication waste gas chamber, and waste gas front end adds the preheating pipe for preheating waste gas, prevents from giving up
Organic volatile is condensed before body of heater is entered in gas, and electric heating mechanism is added on changeover valve makes waste gas locate all the time into valve
Condensation is prevented in heating, causes gitter brick to block.
Further, dump valve is interlocked in the combustion chamber heat galvanic couple with being arranged in combustion chamber, burner and combustion
The interlocking of room thermocouple is burnt, in case the too low condensation viscosity increase of EGT, blocks gitter brick.
Further, recuperation layer is sandwich construction, and bottom one layer is demountable structure, if residue accumulation or mist of oil
Shape pollutes, and only need to change most the lower layer of heat storage and raising efficiency;Specifically, in the present invention, ceramic heat storage body is divided into upper strata
Heat storage and lower floor's heat storage, because ceramics are cellular, so bottom one layer is easiest to block, cause efficiency decline, pressure
The problems such as power increase, now stop first whole set, supply heat storage, which is changed, can solve problem, pass through manhole energy
Enough express passways are changed, and greatly reduce maintenance time;There is one layer of screen pack below heat storage, prevent larger particles or dust
Into heat storage, cause heat storage to block, screen pack has individual rapid scan, after screen pack blocking is observed, use industrial dust suction
Device is cleared up by observation port.
Further, waste gas chamber adds insulation construction, prevents temperature from reducing flue gas condensing;Cavity is to contain small-power
Electric heating device, prevents organic gas from running into cavity wall sharp temperature drop, forms drop and blocks gitter brick.
Brief description of the drawings
Fig. 1 is schematic structural view of the invention.
Fig. 2 is changeover valve operation principle schematic diagram in the present invention.
Fig. 3 is top view of the invention.
In accompanying drawing:1st, combustion chamber, 11, burner, 12, urgent by-pass line, 13, urgent bypath valve, 2, recuperation layer,
21st, heat storing and heat preserving layer, 22, gitter brick, 23, manhole, 24, replaceable heat storage, 25, screen pack, 3, preheating pipe, 31, preheating
Pipe control valve, 4, exhaust gas fan, 40, waste gas enter pipeline, 41, waste gas access conduit, 42, thermocouple, 5, changeover valve,
51st, waste gas chamber, 52, heat-insulation layer, 53, electric heating device, 54, stator, 6, air-out chamber, 61, air air outlet after purification,
62nd, wind entrance is purged, 63, planet-gear speed reducer, 7, chimney.
Embodiment
The present invention will be further described with reference to the accompanying drawings and detailed description.
As shown in FIG. 1 to 3, the combustion chamber 1 of the invention for including being arranged at the top of seal casinghousing, the and of recuperation layer 2 at middle part
The changeover valve of bottom, combustion chamber 1 is communicated with recuperation layer 2, and the burner for lifting chamber temperature is provided with combustion chamber 1
11, combustion chamber 1 is connected by preheating pipe 3 with waste gas into pipeline 40, and preheating pipe 3 is insulating tube, and waste gas enters pipeline 40
The input of exhaust gas fan 4 is connected to, the output end of exhaust gas fan 4 connects waste gas chamber, waste gas by waste gas access conduit 41
Chamber is communicated to recuperation layer 2 by the exhaust steam passage on changeover valve 5.
Dump valve 13 is interlocked in the combustion chamber heat galvanic couple with being arranged in combustion chamber 1, and when combustion chamber 1, temperature exceedes
At more than 900 DEG C, dump valve 13 is opened, and heat is to protect combustion chamber 1 in release combustion chamber 1;Burner 11 and burning
Room thermocouple interlocking, when the temperature of combustion chamber 1 is less than setting lower limit temperature, starts burner 11, is set when the temperature of combustion chamber 1 is higher than
When determining ceiling temperature, burner 11 is closed, in case the too low condensation viscosity increase of EGT, blocks gitter brick.
Preheating pipe control valve 31 is provided with preheating pipe 3, preheating pipe control valve 31 is entered with being arranged on waste gas
The thermocouple 42 entered in pipeline 40 is interlocked, and the EGT for waste gas to be entered in pipeline 40 is controlled in setting value.
Also it is communicated with combustion chamber 1 on a dump pipeline 12, dump pipeline 12 and is provided with dump valve
13, air air outlet 61 and dump pipeline 12 are connected to chimney after the purification of changeover valve 5.
Be provided between gitter brick 22 and housing heat storing and heat preserving layer 21, and housing on offer it is some be used for change gitter brick
22 manhole 23.
Recuperation layer 2 includes gitter brick 22, replaceable heat storage 24 and the screen pack 25, Mei Gequ set gradually from top to bottom
Ceramic heat storage body is all contained in domain, and described ceramic heat storage body is divided into upper strata heat storage 22 and lower floor's heat storage 24, because ceramics are
It is cellular, so bottom one layer is easiest to block, cause the problems such as efficiency decline, pressure increase, now first make whole setting
Stop, supply heat storage 24, which is changed, can solve problem, and designed bottom heat storage 24 can be by quickly leading to
Road 23 is changed, and greatly reduces maintenance time.Described heat storage 24 also has one layer of screen pack 25 below, prevent larger particles or
Dust enters heat storage, causes heat storage to block, and screen pack 25 has individual rapid scan 26, after screen pack blocking is observed, uses
Industrial dust collector is cleared up by observation port 26.
Recuperation layer 2 includes 12 ceramic heat-storing body regions of annular array, wherein, 5 connected ceramic heat-storing body regions
The heating zone of waste gas is sent into as heating changeover valve 5,5 connected ceramic heat-storing body regions are used as air heat after absorption cleaning
The heat-accumulating area of amount, and heating zone do not connect with heat-accumulating area, also one 1 ceramic heat-storing body region is purge zone, 1 pottery
Porcelain accumulation of heat body region is dead band.
Combustion chamber 1 can support waste gas in 800 DEG C of -870 DEG C of combustion decompositions, and combustor 11 is proportional regulating type combustor, is given up
Accurately control EGT is raised to designated value to combustor 11 in the case of gas concentration is not enough.
Dump valve 31 is interlocked with combustion chamber heat galvanic couple 14, is promptly arranged when chamber temperature is more than more than 900 DEG C
Put valve opening, release combustion chamber heat to protect combustion chamber, preheating pipe control valve is interlocked with thermocouple 42, when temperature not
During enough design temperatures, proportion adjustment temperature is automatically opened up, in case the too low condensation viscosity increase of EGT, blocks gitter brick.
The lower end of combustion chamber 1 forms recuperation layer 2, and the recuperation layer 2 is to form 12 ceramic heat-storings with circular arrangement
Body region, wherein containing 5 heating zones, (A1-A5) in such as Fig. 3,5 heat-accumulating areas, (A7-A11) in such as Fig. 3,1 purging
(A12) in (A6) in area, such as Fig. 3,1 dead band, such as Fig. 3.The waste gas stepped heating that import 23 is sent into heating zone, until
After decomposition, purification, amount of heat is released, while purification gas is gone out to exhaust outlet 61 finally to chimney 7 from heat-accumulating area.Passing through
During heat-accumulating area, gas and heat storage heat exchange, gas temperature reduce, heat are stored in heat storage step by step.Purge zone can be by
The gas that last heating zone does not fully flow into combustion chamber is blown to combustion chamber, to ensure purification efficiency.Dead band can prevent heat
Amount reaches heat-accumulating area from heating zone.
With the rotation of changeover valve 5, heating region (A1-A5) can become (A2-A6) from Fig. 3, and heat-accumulating area is changed into Fig. 3
In (A8-A12), purge zone becomes such as (A7) in Fig. 3, and dead band becomes (A1) in Fig. 3, the like, until a circulation.
Ceramic heat storage body is contained in each region, and ceramic heat storage body is divided into upper strata heat storage 22 and lower floor's heat storage 24, by
It is cellular in ceramics, so bottom one layer is easiest to block, causes the problems such as efficiency decline, pressure increase, now first make
Whole set stops, and supply heat storage 24, which is changed, can solve problem, and designed bottom heat storage 24 can lead to
Cross express passway 23 to change, greatly reduce maintenance time.Heat storage 24 below also have one layer of screen pack 25, prevent larger particles or
Person's dust enters heat storage, causes heat storage to block, and screen pack 25 has individual rapid scan 26, after screen pack blocking is observed, makes
Cleared up with industrial dust collector by observation port 26.
Changeover valve 5, comprising rotor 55, stator 54, chamber exhaust air chamber 51 and rotary shaft 56, rotor 55 and stator 54 can be formed
4 passages, when rotated, there is gas waste gas to distribute to different accumulation of heat body regions, form heating region, accumulation of heat region, purging
Region, dead band.Enter heating region from the air intake route shown in Fig. 3, enter heat-accumulating area from air draft route shown in Fig. 3, from purging
Wind entrance 62 enters fresh air purification purging region, and the outer wall of waste gas chamber 51 is provided with heat-insulation layer 52, prevents extraneous cold sky
The temperature of gas heat exchange reduction waste gas chamber 51, causes the cooling condensation viscosity increase of the organic exhaust gas of waste gas chamber 51.
Cavity is, containing small power electric heating arrangement 53, to prevent organic gas from running into cavity wall sharp temperature drop, shape
Gitter brick is blocked into drop.
Purified gas enter air-out chamber 6, to purification after air air outlet 61, flow into chimney 7, using direct linkage type row
Star gear reduction unit connects drive system, it is ensured that the stationarity of rotation.
Claims (10)
1. block-resistant type rotary wings heat accumulating burner, it is characterised in that including the combustion chamber being arranged at the top of seal casinghousing
(1), the recuperation layer (2) at middle part and the changeover valve (5) of bottom, combustion chamber (1) is communicated with recuperation layer (2), is set in combustion chamber (1)
The burner (11) for lifting chamber temperature is equipped with, combustion chamber (1) enters pipeline (40) by preheating pipe (3) and waste gas
Connection, waste gas enters pipeline (40) and connects waste gas chamber, and waste gas chamber is communicated to storage by the exhaust steam passage on changeover valve (5)
Thermosphere (2).
2. block-resistant type rotary wings heat accumulating burner according to claim 1, it is characterised in that waste gas enters pipeline
(40) input of exhaust gas fan (4) is connected to, the output end of exhaust gas fan (4) connects waste gas by waste gas access conduit (41)
Chamber.
3. block-resistant type rotary wings heat accumulating burner according to claim 2, it is characterised in that on combustion chamber (1) also
It is communicated with a dump pipeline (12), dump pipeline (12) and is provided with dump valve (13).
4. block-resistant type rotary wings heat accumulating burner according to claim 3, it is characterised in that the purification of changeover valve
Air air outlet (61) and dump pipeline (12) are connected to chimney afterwards.
5. block-resistant type rotary wings heat accumulating burner according to claim 3, it is characterised in that dump valve
(13) interlocked in the combustion chamber heat galvanic couple with being arranged in combustion chamber (1), when combustion chamber (1) temperature is more than more than 900 DEG C, tightly
Anxious vent valves (13) are opened, and discharge combustion chamber (1) interior heat to protect combustion chamber (1);Burner (11) and combustion chamber thermoelectricity
Occasionally interlocking, when combustion chamber (1) temperature is less than setting lower limit temperature, starts burner (11), is set when combustion chamber (1) temperature is higher than
When determining ceiling temperature, burner (11) is closed.
6. block-resistant type rotary wings heat accumulating burner according to claim 1, it is characterised in that preheating pipe (3) is
Insulating tube.
7. block-resistant type rotary wings heat accumulating burner according to claim 1, it is characterised in that gitter brick (22) and shell
Heat storing and heat preserving layer (21) is provided between body, and some manholes (23) for being used to change gitter brick (22) are offered on housing.
8. block-resistant type rotary wings heat accumulating burner according to claim 1, it is characterised in that on preheating pipe (3)
Preheating pipe control valve (31) is provided with, preheating pipe control valve (31) is with being arranged on waste gas into the heat in pipeline (40)
Galvanic couple (42) is interlocked, and the EGT for waste gas to be entered in pipeline (40) is controlled in setting value.
9. block-resistant type rotary wings heat accumulating burner according to claim 1, it is characterised in that recuperation layer (2) includes
Gitter brick (22), replaceable heat storage (24) and the screen pack (25) set gradually from top to bottom.
10. block-resistant type rotary wings heat accumulating burner according to claim 1, it is characterised in that recuperation layer (2) includes
12 ceramic heat-storing body regions of annular array, wherein, 5 connected ceramic heat-storing body regions are used as heating changeover valve (5)
Send into waste gas heating zone, 5 connected ceramic heat-storing body regions as atmospheric heat after absorption cleaning heat-accumulating area, and heating
Area does not connect with heat-accumulating area, and also one 1 ceramic heat-storing body region is purge zone, and 1 ceramic heat-storing body region is dead
Area.
Priority Applications (1)
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CN201710548339.9A CN107166412A (en) | 2017-07-06 | 2017-07-06 | Block-resistant type rotary wings heat accumulating burner |
Applications Claiming Priority (1)
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CN201710548339.9A CN107166412A (en) | 2017-07-06 | 2017-07-06 | Block-resistant type rotary wings heat accumulating burner |
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CN107166412A true CN107166412A (en) | 2017-09-15 |
Family
ID=59823014
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CN201710548339.9A Pending CN107166412A (en) | 2017-07-06 | 2017-07-06 | Block-resistant type rotary wings heat accumulating burner |
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107726338A (en) * | 2017-10-20 | 2018-02-23 | 江苏百纳环保设备有限公司 | One kind rotation RTO |
CN107781829A (en) * | 2017-11-23 | 2018-03-09 | 西安昱昌环境科技有限公司 | A kind of rotation RTO bodies of heater and its heat preserving method that can realize interim blowing out insulation |
CN108870415A (en) * | 2018-03-30 | 2018-11-23 | 苏州巨联环保有限公司 | A kind of rotary heat storage burner and three-box type heat storage burner |
CN117959892A (en) * | 2024-03-28 | 2024-05-03 | 安徽迈恩能源科技有限公司 | Process for collecting and treating VOCs-containing waste gas in multiple working sections of coking plant |
CN118384632A (en) * | 2024-06-27 | 2024-07-26 | 深圳市汉环科技有限公司 | Waste gas treatment equipment based on medical waste incineration |
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CN206919041U (en) * | 2017-07-06 | 2018-01-23 | 西安昱昌环境科技有限公司 | Block-resistant type rotary wings heat accumulating burner |
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JP2000205773A (en) * | 1999-01-08 | 2000-07-28 | Osaka Gas Engineering Co Ltd | Heat storage deodorizing apparatus |
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Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107726338A (en) * | 2017-10-20 | 2018-02-23 | 江苏百纳环保设备有限公司 | One kind rotation RTO |
CN107781829A (en) * | 2017-11-23 | 2018-03-09 | 西安昱昌环境科技有限公司 | A kind of rotation RTO bodies of heater and its heat preserving method that can realize interim blowing out insulation |
CN107781829B (en) * | 2017-11-23 | 2023-12-01 | 西安昱昌环境科技有限公司 | Rotary RTO furnace body capable of realizing temporary furnace shutdown heat preservation and heat preservation method thereof |
CN108870415A (en) * | 2018-03-30 | 2018-11-23 | 苏州巨联环保有限公司 | A kind of rotary heat storage burner and three-box type heat storage burner |
CN108870415B (en) * | 2018-03-30 | 2021-05-14 | 苏州巨联环保有限公司 | Rotary heat-storage combustion device and three-compartment type heat-storage combustion device |
CN117959892A (en) * | 2024-03-28 | 2024-05-03 | 安徽迈恩能源科技有限公司 | Process for collecting and treating VOCs-containing waste gas in multiple working sections of coking plant |
CN117959892B (en) * | 2024-03-28 | 2024-06-21 | 安徽迈恩能源科技有限公司 | Process for collecting and treating VOCs-containing waste gas in multiple working sections of coking plant |
CN118384632A (en) * | 2024-06-27 | 2024-07-26 | 深圳市汉环科技有限公司 | Waste gas treatment equipment based on medical waste incineration |
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Application publication date: 20170915 |
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