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公开(公告)号:US12117170B2
公开(公告)日:2024-10-15
申请号:US17436806
申请日:2019-08-12
CPC分类号: F23G5/32 , F23C5/32 , F23G7/06 , F23G2200/00
摘要: An incinerator comprising a cylindrical housing and a plurality of burners is provided. Each burner is oriented to emit gas at an upward and radially inward angle such that the burners collectively generate an upward, helical gas flow. A method for incinerating gas in a cylindrical housing is provided. Flowing gas through a first burner, oriented at an angle, generates an upward, helical gas flow within the cylindrical housing and draws a gas flow through a second burner.
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公开(公告)号:US20240318816A1
公开(公告)日:2024-09-26
申请号:US18577906
申请日:2022-07-07
申请人: Edwards Limited
发明人: Andrew James Seeley
CPC分类号: F23G7/065 , B01D53/70 , F23D14/58 , B01D2257/2066 , B01D2258/0216 , F23G2209/142 , F23G2900/54402
摘要: An inlet nozzle assembly, an abatement apparatus and a method are disclosed. The inlet nozzle assembly is for an abatement apparatus for treating an effluent stream from a semiconductor processing tool, the inlet nozzle assembly comprises: an inlet nozzle configured to deliver the effluent stream into an abatement chamber; a head defining an aperture for receiving the inlet nozzle; and an insulating mount configured to retain the inlet nozzle within the aperture. In this way, the thermal path between the inlet nozzle and the head is interrupted by the insulating mount which helps to prevent the inlet nozzle being cooled by the head, which helps to prevent condensates gathering as powder or particulates on the inlet nozzle.
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公开(公告)号:US12092323B2
公开(公告)日:2024-09-17
申请号:US18543268
申请日:2023-12-18
CPC分类号: F23C7/006 , F23C3/002 , F23D14/02 , F23D14/62 , F23G5/0276 , F23C2900/99011 , F23G2201/40
摘要: A system and method uses a combustor and gasifier to burn a primary dirty fuel, such as waste materials or high-polluting fossil fuels, and a secondary low-polluting fuel, such as biomass fuels, for co-generation of electricity while reducing harmful emissions. The primary fuel is burned at least partially through the use of an improved burner tube. Dirty exhaust from a combustor is scrubbed by a gasifier by reforming the combustors exhaust gases into a clean-burning producer gas (syn-gas). The secondary fuel and oxygen are added to the dirty exhaust in the gasifier to create gas, char and ash. The gas powers an engine or turbine that turns a generator, or a boiler, Stirling engine, or Organic Rankine Cycle power plant, and releases a cleaner exhaust.
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公开(公告)号:US20240295320A1
公开(公告)日:2024-09-05
申请号:US18572186
申请日:2022-07-04
申请人: Moon Joo PARK
发明人: Moon Joo PARK
IPC分类号: F23G5/42
CPC分类号: F23G5/42 , F23G2201/80 , F23G2205/121
摘要: This present invention relates to a eco-friendly ultra-high temperature thermal decomposition system for waste-to-energy, where its thermal decomposition chamber made with special castable mixture maintains the ultra-high temperature above 850° C. and ten (10) layers of air curtains made by a double-layered air-curtain maker installed at the center of the thermal decomposition chamber allows the input materials to be completely decomposed without any auxiliary fuel and air pollutants to be completely decomposed by trapping them inside the thermal decomposition chamber with ultra-high temperature above 850° C. for more than two (2) seconds of residence time, as well as its two (2) layers of oil nozzles, central oil nozzles and lower oil nozzles, installed on the inner wall of the thermal decomposition chamber, each installed to aim the central part and the bottom part of the thermal decomposition chamber, evenly spraying the auxiliary fuel when necessary so the input materials with different conditions, sizes, and hydration level, are completely decomposed; furthermore, its outer shredder, installed at the left side of the thermal decomposition chamber, improves its treatment efficacy by homogenizing the input materials with different conditions, sizes, and hydration level, prior to being fed into the thermal decomposition chamber, with a screw conveyor connecting the outer shredder and the thermal decomposition chamber automatically feeding the input materials, as well as its inner shredder installed at the bottom part of the thermal decomposition chamber shreds the ash and the input materials that are not being decomposed yet piled up at the bottom of the thermal decomposition chamber so the screw conveyor connecting the inner shredder and the thermal decomposition chamber can re-input such materials back to the thermal decomposition chamber, thus even the ash is also completely decomposed; moreover, its thermal generation modules, installed in the thermal generation chamber around the thermal decomposition chamber and on the upper cover of the thermal decomposition chamber, effectively collect the waste heat generated from thermal decomposition process to generate electricity while the waste heat is also used to generate steam via the steam chamber installed on the upper cover of the thermal decomposition chamber, where such steam is sent to separately composed boiler and steam turbine via steam pipe to generate further electricity; and lastly, its dust collector and the monitoring device are located at the right side of the thermal decomposition chamber with their collecting holes at the top part of inner wall of the thermal decomposition chamber to collect the dust when necessary and the air samples to monitor the results of the thermal decomposition process in real time.
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公开(公告)号:US20240288162A1
公开(公告)日:2024-08-29
申请号:US18115541
申请日:2023-02-28
IPC分类号: F23G7/08
CPC分类号: F23G7/08 , F23G2207/102 , F23G2208/10
摘要: An automated method for controlling flare of a gas oil separation system includes determining that a gas flare is indicated as non-routine based on a gas flare process variable exceeding a target value for gas flare; activating an automated detection and minimization of flare (ADMF) process executed by ADMF logic; determining, by the ADMF logic executing ADMF process, that a process variable value for each of a plurality of pressure indicator controllers exceeds a corresponding setpoint value for each of the plurality of pressure indicator controllers; and based on the process variable value of each of the plurality of pressure indicator controllers exceeding the pressure indicator controller setpoint value: identifying a tag number for each of the plurality of pressure indicator controllers; and causing a notification to be sent to an operator to inspect the pressure indicator controllers.
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公开(公告)号:US12055290B2
公开(公告)日:2024-08-06
申请号:US17457813
申请日:2021-12-06
发明人: Richard Mark Pye
CPC分类号: F23G7/08 , E21B41/0071 , F23Q1/02
摘要: A system for a spark plume generator system for igniting flammable gases at a drilling rig includes a support disposed within a fireproof housing proximate to the drilling rig. A grinder is mounted on the support. The grinder includes a rotatable grinder axle with an abrasive grinder surface and an igniter mounted on the support so as to cooperatively contact the grinder. The igniter includes an igniter surface that creates sparks when abraded. The fireproof housing includes an opening. Upon rotation of the grinder axle, the grinder surface abrades the igniter surface to create sparks. The support is positioned within the fireproof housing so that sparks created by the igniter surface exit the fireproof housing through the opening. The fireproof housing is positioned such that the opening is facing the drilling rig and sparks exiting the opening will ignite any flammable gases at the drilling rig.
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公开(公告)号:US12036509B2
公开(公告)日:2024-07-16
申请号:US16504136
申请日:2019-07-05
IPC分类号: B01D53/78 , B01D53/00 , B01D53/75 , B03C3/017 , B03C3/04 , B03C3/16 , B03C5/02 , B03C7/02 , B03C11/00 , F23G7/06 , F23J15/00 , F23J15/02 , B01D47/05 , B01D47/10
CPC分类号: B01D53/78 , B01D53/002 , B01D53/75 , B03C3/017 , B03C3/04 , B03C3/16 , B03C5/02 , B03C7/02 , B03C11/00 , F23G7/06 , F23J15/006 , F23J15/022 , B01D47/05 , B01D47/10 , B01D2247/10 , B01D2251/106 , B01D2251/108 , B01D2257/304 , B01D2257/406 , B01D2257/70 , B01D2257/708 , B01D2257/80 , B01D2257/90 , B01D2257/93 , F23J2217/102 , F23J2219/40 , F23J2219/70
摘要: A method for removing noxious, hazardous, toxic, mutagenic, and/or carcinogenic compounds and/or precursor compounds from a comingled gas, liquid, and/or solid stream is described. In one embodiment, the method is used to prepare the stream for feeding to an oxidizer, such as a thermal oxidizer, to reduce the amount of particulate matter discharged by the oxidizer and includes passing the stream through an ambient or chilled temperature condenser followed by an optional gas/solid separator, and one or more gas scrubbers prior to feeding to the oxidizer.
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公开(公告)号:US20240210081A1
公开(公告)日:2024-06-27
申请号:US18597055
申请日:2024-03-06
发明人: Shinsuke IKAWA , Katsunori MURATA
CPC分类号: F25B45/00 , F23G7/06 , F25B2345/002
摘要: A refrigerant handling device (40) includes: a connecting port (41a) connectable to a refrigerant circuit (11) provided in a refrigeration apparatus (10) and filled with a flammable refrigerant; and a combustion apparatus (42) configured to combust the refrigerant that has flowed into the combustion apparatus (42) from the connecting port (41a).
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公开(公告)号:US20240200775A1
公开(公告)日:2024-06-20
申请号:US18118379
申请日:2023-03-07
IPC分类号: F23G7/08
CPC分类号: F23G7/08 , F23G2207/10 , F23G2900/55003
摘要: Systems, apparatuses, methods, and computer products for segregating flaring and/or venting volumes are provided, including for segregating flaring and/or venting into one or more classifications using machine learning approaches. For example, a method may include receiving sensor data associated with a flare from at least a first sensor, determining a first gas volume of a first gas associated with the flare, and determining, via a machine learning process, one or more classifications of the flare based on the sensor data and the first gas volume. The classifications may be chosen from a set of classifications including routine flaring, non-routine flaring, and safety flaring.
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公开(公告)号:US11994287B2
公开(公告)日:2024-05-28
申请号:US17173402
申请日:2021-02-11
CPC分类号: F23G5/50 , F23G5/442 , F23G5/46 , F23G5/002 , F23G2205/16 , F23G2207/20 , G05B13/027
摘要: A method operates a furnace unit with a feed chute and a camera for capturing an image of the surface of the chute. The chute includes a slide on which material flows to a grate, and the coverage of the chute and in particular of the slide with material, the burning bed thickness and the burnout zone are determined by an image evaluation.
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