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    • 1. 发明申请
    • A DEVICE FOR SIMULATING A BRAKE
    • WO2023031325A1
    • 2023-03-09
    • PCT/EP2022/074308
    • 2022-09-01
    • SIMTAG
    • ZSINOR, Janos
    • B60T7/04B60T8/40
    • The invention provides a device (100) for simulating a brake. The device (100) comprises a hydraulic cylinder (110). The hydraulic cylinder (110) comprises an inlet port (113) for being connected to a hydraulic fluid source (194), a piston (120) which is moveable inside the hydraulic cylinder (110) in response to hydraulic fluid flowing in and out of the hydraulic cylinder (110) via the inlet port (113), and a piston rod (121) connected to the piston (120). The piston rod (121) extends out of the hydraulic cylinder (110) at a first end (111) of the hydraulic cylinder (110). The hydraulic cylinder (110) is configured for moving the piston rod (121) respectively in an outwards and inwards direction in response to hydraulic fluid flowing in and out the hydraulic cylinder (110) via the inlet port (113). The device (100) comprises a first seating surface (141) opposite of the first end (111) of the hydraulic cylinder (110). The device (100) comprises a resilient element (150) arranged between an external end (123) of the piston rod (121) and the first seating surface (141).
    • 2. 发明申请
    • PROCEDE DE PRODUCTION DE BACTERIOPHAGES
    • WO2023280791A1
    • 2023-01-12
    • PCT/EP2022/068487
    • 2022-07-04
    • VESALE BIOSCIENCE
    • QUINTENS, JohanPIRNAY, Jean-PaulBLASDEL, BobLIENART VAN LIDTH DE JEUDE, Jehan
    • C12N7/00A61K35/76
    • Procédé de production de bactériophages comprenant: fournir au moins une chambre de culture cellulaire; fournir un premier réservoir contenant un milieu de culture étant en première connexion en circuit fermé avec ladite au moins une chambre de culture cellulaire, le milieu de culture comprenant au moins une souche de phages et au moins une souche de bactéries; transférer le milieu de culture du premier réservoir via la première connexion en circuit fermé dans ladite au moins une chambre de culture cellulaire pour déposer le milieu de culture sous la forme d'une couche de culture dans ladite au moins une chambre de culture, incuber le milieu de culture pour propager des phages; fournir un récipient qui est en deuxième connexion en circuit fermé avec ladite au moins une chambre de culture cellulaire, la deuxième connexion en circuit fermé comprenant un système de filtration entre ladite au moins une chambre de culture cellulaire et le récipient; et transférer le milieu de culture comprenant les phages propagés depuis ladite au moins une chambre de culture vers la deuxième connexion en circuit fermé et purifier lesdits phages propagés via le système de filtration, le milieu de culture étant sous forme liquide lors du transfert depuis ladite au moins une chambre de culture vers la deuxième connexion en circuit fermé et de la purification.
    • 4. 发明申请
    • TUNNEL TYPE DISINFECTION SYSTEM
    • WO2022228682A1
    • 2022-11-03
    • PCT/EP2021/061285
    • 2021-04-29
    • AGOP HAVLUCIYAN X-RAY GUVENLIK SISTEMLERI MERK. SAN. TIC. LTD. STI.
    • OZDEMIR, Murat
    • A61L2/10A61L2/24B65B55/08
    • A baggage disinfection system (100) forming a tunnel (101) with at least twelve UVC emitting light bulbs is provided. The system (100) has a roller assembly (140) operated by a motor that causes the roller assembly (140) to convey objects at a rate of between about 0.10 m/second and about 0.50 m/second from an entry end of the system (100) to an exit end of the system (100), such that the travel time between the entry end of the system (100) and the exit end of the system (100) is less than or equal to about 30 seconds. In one embodiment, the system (100) is capable of inactivating at least 99.9% of Sars-Cov-2 viruses passing through the tunnel (101) within the travel time. In another embodiment, the system (100) is capable of inactivating at least 99.99% of Sars-Cov-2 or mutations thereof. In other embodiments, the travel time is less than about 10 seconds or less than about 8 seconds, and the system (100) is capable of inactivating at least 99.9% of Sars-Cov-2 or mutations thereof passing through the tunnel (101) within those travel times, or 99.99% of Sars-Cov-2 or mutations thereof passing through the tunnel (101) within those travel times. The system (100) is capable of inactivating 99.9% or 99.99% of viruses, including influenza viruses and coronaviruses, including without limitations, SARS, MERS and Sars-Cov-2 or mutations thereof.
    • 10. 发明申请
    • PROCESS FOR CRACKING A POLYOLEFIN CONTAINING MATERIAL
    • WO2022029185A1
    • 2022-02-10
    • PCT/EP2021/071786
    • 2021-08-04
    • INDAVER
    • ALDERWEIRELDT, NickKRESOVIC, Uros
    • C10G1/10C10B53/07B01J19/00C10B57/02
    • The polyolefin containing waste material is thermally cracked to be converted into gaseous cracking products and into a solid residue (50). The material is cracked stepwise in a series of at least two successive cracking reactors (12, 35, 36) which each contain a liquid phase (13, 37, 46) and a gaseous phase (15, 39, 48). The first cracking reactor (12) is fed with the polyolefin containing material whilst the next cracking reactors are each fed with liquid phase from a previous cracking reactor. The temperature in the final cracking reactor (36) is higher than in the first cracking reactor (12) to crack also the thermally more stable polymers present in the waste material in the final reactor. By the lower temperature in the first reactor (12) production of non-condensable gases, which are of less value than the naphtha or wax fraction, can be minimized. The amount of more valuable wax in the gaseous product can be increased by applying a higher pressure in the first reactor. To be able to achieve a residue (50) which is completely solid, feeding of liquid phase (37) into the final cracking reactor (36) is interrupted at predetermined points in time until the liquid phase (46) contained in said final cracking reactor (36) is converted into a solid residue (50).