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公开(公告)号:US12122725B2
公开(公告)日:2024-10-22
申请号:US17612789
申请日:2020-12-11
申请人: ARDEX Group GmbH
发明人: Stephen Alan Brooks , Rüdiger Oberste-Padtberg , Jörg Sieksmeier , Hubert Motzet , Michael Pomberg
IPC分类号: C04B7/32 , C01F7/46 , C02F1/00 , C02F11/08 , C02F11/123 , C02F11/13 , C04B7/02 , C04B7/24 , C04B7/40 , C04B7/43 , C04B7/44 , C04B7/51 , C04B7/52 , C04B14/06 , C04B14/28 , C04B24/26 , C04B28/06 , C04B28/14 , F23G5/027 , F27B7/08 , F27B7/36 , C02F101/10 , C04B111/00 , C04B111/60
CPC分类号: C04B7/323 , C01F7/46 , C02F1/008 , C02F11/08 , C02F11/123 , C02F11/13 , C04B7/02 , C04B7/24 , C04B7/32 , C04B7/40 , C04B7/434 , C04B7/4423 , C04B7/51 , C04B7/52 , C04B7/525 , C04B14/06 , C04B14/28 , C04B24/2611 , C04B24/2641 , C04B28/06 , C04B28/065 , C04B28/14 , C04B28/146 , C04B28/147 , F23G5/0273 , F27B7/08 , F27B7/36 , C01P2002/72 , C02F2101/10 , C02F2209/02 , C04B2111/00637 , C04B2111/00646 , C04B2111/60 , F23G2201/20
摘要: The invention relates to a method of producing a binder comprising the steps of preparing (20) a residual material comprising amorphous alumina-rich and/or aluminium hydroxide-rich constituents, heating (30) the residual material to produce a fired material, the heating (30) of the residual material being at a temperature of >800° C.
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公开(公告)号:US20240327719A1
公开(公告)日:2024-10-03
申请号:US18739616
申请日:2024-06-11
申请人: UOP LLC
发明人: Ping Sun , Jeffrey Tyska , Joseph A. Montalbano
CPC分类号: C10G1/10 , B01D15/08 , C10B53/07 , C10G31/06 , F23G5/027 , B01D2215/00 , B01D2257/204 , C10G2300/1003 , Y02P20/143
摘要: An apparatus for pyrolysis of a mixed plastic stream that contains polyvinyl chloride (PVC) is provided in which the chloride from PVC is removed from an initial melting reactor that heats the mixed plastic stream to a sufficient temperature to produce HCl but at a low enough temperature to avoid production of organochlorides. Chloride is primarily removed in a vapor stream from the initial melting reactor, while additional chloride removal may be removed downstream from the melting reactor by the use of sorbent addition to the pyrolysis reactor and by subsequent adsorbent beds.
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公开(公告)号:US20240117965A1
公开(公告)日:2024-04-11
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:US11872611B2
公开(公告)日:2024-01-16
申请号:US18042765
申请日:2021-04-30
申请人: GUANGDONG BRUNP RECYCLING TECHNOLOGY CO., LTD. , HUNAN BRUNP RECYCLING TECHNOLOGY CO., LTD. , HUNAN BRUNP EV RECYCLING CO., LTD.
发明人: Yinghao Xie , Haijun Yu , Banglai Ming
IPC分类号: B02C4/02 , B09B3/40 , B09B3/38 , B09B3/35 , B01J19/20 , B02C4/08 , B02C19/18 , B02C23/38 , C10B47/44 , C10B53/00 , F23G5/027 , F23G5/033 , F23G5/44 , F23G7/00 , H01M10/54 , B09B101/16
CPC分类号: B09B3/40 , B01J19/20 , B02C4/08 , B02C19/186 , B02C23/38 , B09B3/35 , B09B3/38 , C10B47/44 , C10B53/00 , F23G5/0273 , F23G5/033 , F23G5/444 , F23G7/003 , H01M10/54 , B02C2201/06 , B09B2101/16 , F23G2201/30 , F23G2900/50204
摘要: The invention discloses a vacuum cracking apparatus for a power battery and a cracking method thereof. The cracking device includes a cylinder and further includes a rolling device, a first sealing device, a cracking device, a second sealing device, a pyrolysis device and a third sealing device which are arranged from top to bottom. The cracking device for the power battery of the present invention is equipped with the first sealing device, the second sealing device and the third sealing device to isolate the cracking device from the pyrolysis device and be capable of realizing material transmission and gas isolation without interference with each other, so that gas stirring between an anaerobic zone and an aerobic zone is avoided; and by combing battery cracking and battery pyrolysis, with cracked gas discharged after cracking as a fuel for cracking and pyrolysis or preheating a pyrolysis device, resources are fully used.
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公开(公告)号:US11725155B2
公开(公告)日:2023-08-15
申请号:US17712034
申请日:2022-04-01
发明人: Kajiro Sakamoto
CPC分类号: C10J3/62 , C10B21/18 , C10B49/06 , F23G5/0276 , C10J2300/0916 , C10J2300/0946 , C10J2300/1207 , C10J2300/1625 , C10J2300/1861 , F23G2209/26 , F23G2209/28
摘要: An organic material gasification system is configured such that a carbonization furnace provided with a first air supply mechanism that radiates high-temperature combustion air and high-temperature steam to an organic material combustion region and with a second air supply mechanism that supplies combustion air to an exhaust gas combustion region, to discharge high-temperature exhaust gas is connected to a gasification furnace including a heating unit penetrating through a reactor. A carbide from the carbonization furnace is supplied to the reactor, and the high-temperature exhaust gas from the carbonization furnace is supplied to the heating unit, so that the carbonization efficiency and the carbonization quality are improved and the gasification efficiency is improved.
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公开(公告)号:US11718802B2
公开(公告)日:2023-08-08
申请号:US17466886
申请日:2021-09-03
申请人: STANDARD GAS LIMITED
CPC分类号: C10J3/721 , C10B1/10 , C10B47/30 , C10J3/005 , C10K3/001 , F23G5/0273 , F23G5/20 , C10J2300/12 , C10J2300/1223 , C10J2300/1246 , C10J2300/1253 , F23G2203/20 , F23G2209/22 , F23G2209/26 , F23G2209/28 , F23G2900/50201
摘要: Applying heat from a heat source to a first region to cause a first pyrolysis process, the first pyrolysis process resulting in a gaseous mixture, and applying heat from the heat source to a second region to cause a second pyrolysis process, the second pyrolysis process being applied to the gaseous mixture, wherein the second region is located closer to the heat source than the first region. Pyrolysis is used to destroy oils, tars and/or PAHs in carbonaceous material.
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公开(公告)号:US20230226582A1
公开(公告)日:2023-07-20
申请号:US18042765
申请日:2021-04-30
申请人: GUANGDONG BRUNP RECYCLING TECHNOLOGY CO., LTD. , HUNAN BRUNP RECYCLING TECHNOLOGY CO., LTD. , HUNAN BRUNP EV RECYCLING CO., LTD.
发明人: Yinghao XIE , Haijun YU , Banglai MING
IPC分类号: B09B3/40 , B02C4/08 , F23G7/00 , F23G5/033 , F23G5/027 , F23G5/44 , B09B3/35 , B09B3/38 , H01M10/54 , C10B53/00 , C10B47/44 , B01J19/20
CPC分类号: B09B3/40 , B02C4/08 , F23G7/003 , F23G5/033 , F23G5/0273 , F23G5/444 , B09B3/35 , B09B3/38 , H01M10/54 , C10B53/00 , C10B47/44 , B01J19/20 , B02C2201/06 , F23G2900/50204 , F23G2201/30 , B09B2101/16
摘要: The invention discloses a vacuum cracking apparatus for a power battery and a cracking method thereof. The cracking device comprises a cylinder and further comprises a rolling device, a first sealing device, a cracking device, a second sealing device, a pyrolysis device and a third sealing device which are arranged from top to bottom. The cracking device for the power battery of the present invention is equipped with the first sealing device, the second sealing device and the third sealing device to isolate the cracking device from the pyrolysis device and be capable of realizing material transmission and gas isolation without interference with each other, so that gas stirring between an anaerobic zone and an aerobic zone is avoided; and by combing battery cracking and battery pyrolysis, with cracked gas discharged after cracking as a fuel for cracking and pyrolysis or preheating a pyrolysis device, resources are fully used.
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公开(公告)号:US11703219B2
公开(公告)日:2023-07-18
申请号:US17047870
申请日:2019-05-21
发明人: Tomohiro Harada , Hiroshi Oonuki , Keiichi Hayashi
CPC分类号: F23G5/027 , F23G5/16 , F23G5/24 , F23G5/50 , F23G2201/40 , G01F23/292 , G06T7/90
摘要: The gas swirling state determination system (10) determines the quality of the swirling state of gas that swirls around the central axis. The gas swirling state determination system (10) includes an imaging device (39), an information processing device (11), and a display device (42). The imaging device (39) captures swirling gas from a direction along the central axis to acquire a still image. The information processing device (11) includes a calculation unit (40), a smoothing unit (41), and a determination unit (43). The display device (42) displays a determination result.
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公开(公告)号:US20230194083A1
公开(公告)日:2023-06-22
申请号:US17925835
申请日:2020-05-21
发明人: Takeshiro ITO , Manabu OKUBO , Koichi WAKAI , Katsuhiro MINAMI , Shunya ISHIKAWA , Shohei OTSUKA
CPC分类号: F23G7/12 , B09B3/40 , C10B53/07 , F23G5/027 , F23G5/46 , B09B2101/75 , F23G2201/30 , F23G2206/203
摘要: A waste processing system includes a pyrolysis apparatus that pyrolyzes a combustible waste, a melt-and-mold apparatus that generates an ingot of resin and combustible gas from a synthetic-resin waste, and an oil extraction apparatus that generates combustible oil and combustible gas from the ingot of resin. The melt-and-mold apparatus has a melter that melts the synthetic-resin waste using heat produced by the pyrolysis apparatus, the oil extraction apparatus has a pyrolyzer that pyrolyzes the ingot of resin using the heat produced by the pyrolysis apparatus, and at least one of the combustible gas generated at the melt-and-mold apparatus and the combustible gas generated at the oil extraction apparatus is supplied to the pyrolysis apparatus.
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10.
公开(公告)号:US11555610B2
公开(公告)日:2023-01-17
申请号:US16907219
申请日:2020-06-20
发明人: Xiaozhou Liu , Jin Huang , Junfei He , Zeqiong Xie , Fuqiang Gao , Wenjing Liu
摘要: A comprehensive utilization system for high-temperature gasification and low-nitrogen combustion of biomass comprises a gasifier, a boiler and a burner installed on the boiler. The outlet of the gasifier is connected to a fuel inlet of the burner. The boiler is provided with flue-gas exhaust ports connected to a chimney. Regenerative heat exchangers are provided between the flue-gas exhaust ports and the chimney, preheating air pipes are connected to the regenerative heat exchangers and then to an auxiliary mixing chamber. The auxiliary mixing chamber is provided with a first outlet connected to the inlet of the mixer, and a second outlet connected to the high-temperature air inlet of the gasifier and the second combustion-air inlet of the burner. An outlet of the mixer is connected with the first combustion-air inlet of the burner. The chimney is connected with the flue gas inlet of the gasifier through pipes and fans.
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