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公开(公告)号:AU2019316684A1
公开(公告)日:2021-02-25
申请号:AU2019316684
申请日:2019-08-05
Applicant: BASF SE
Inventor: KOLIOS GRIGORIOS , ZOELS BERND , APPEL HAGEN , BERNNAT JENS , GLENK FRIEDRICH , FLICK DIETER , OLBERT GERHARD , SCHEIFF FREDERIK , ANDERLOHR CHRISTOPHER ALEC
Abstract: The present invention relates to a device comprising at least one pressure-bearing device shell and at least one modular scaffolding system made of ceramic fibre composite materials and arranged inside the device shell and a modular lining device comprising refractory bricks in addition to the modular scaffolding system, and to the use of this device for high-temperature reactors, in particular electrically heated high-temperature reactors.
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公开(公告)号:AU2019210970A1
公开(公告)日:2020-07-30
申请号:AU2019210970
申请日:2019-01-22
Applicant: BASF SE
Inventor: APPEL HAGEN , BERNNAT JENS , GLENK FRIEDRICH , KOLIOS GRIGORIOS , OLBERT GERHARD , SCHEIFF FREDERIK , ZOELS BERND , KERN MATTHIAS , FLICK DIETER , ANDERLOHR CHRISTOPHER ALEC , KLINGLER DIRK , WECHSUNG ACHIM
Abstract: The present invention relates to an electrically heatable packed pressure-bearing device for performing endothermic reactions having an upper (3), middle (1) and lower (3) device section, wherein at least one vertically disposed electrode pair (4, 5) is fitted in the middle section (1) and all electrodes are arranged in an electrically conducting solid packing (26), the upper and lower device sections have a specific conductivity of 10
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公开(公告)号:PL3744154T3
公开(公告)日:2022-04-04
申请号:PL19701109
申请日:2019-01-22
Applicant: BASF SE
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4.
公开(公告)号:AU2020375079A1
公开(公告)日:2022-05-19
申请号:AU2020375079
申请日:2020-10-20
Applicant: BASF SE , THYSSENKRUPP IND SOLUTIONS AG , THYSSENKRUPP AG
Inventor: KOLIOS GRIGORIOS , SCHEIFF FREDERIK , ANDERLOHR CHRISTOPHER ALEC , APPEL HAGEN , OLPERT GERHARD , ZOELS BERND , FLICK DIETER , WECHSUNG ACHIM , KERN MATTHIAS , BUEKER KARSTEN , ANTWEILER NICOLAI
Abstract: The present invention relates to a method for operating a descending moving bed reactor with flowable granular material, said method comprising the steps of (i) Filling a upper lock-hopper with granular material and/or emptying a lower lock-hopper, (ii) Purging the lock-hoppers with purging gas, (iii) Filling the reaction chamber comprising a descending moving bed from the upper lock-hopper and/or emptying the reaction chamber into the lower lock-hopper, wherein the pressure equalization between the reaction chamber and lock-hopper is achieved with product gas, (iv) optionally Relieving the lock-hoppers and conveying the product gas flow into the product line and (v) Purging the lock-hoppers with purging gas.
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公开(公告)号:ES2912733T3
公开(公告)日:2022-05-27
申请号:ES19701109
申请日:2019-01-22
Applicant: BASF SE
Inventor: APPEL HAGEN , BERNNAT JENS , GLENK FRIEDRICH , KOLIOS GRIGORIOS , OLBERT GERHARD , SCHEIFF FREDERIK , ZOELS BERND , KERN MATTHIAS , FLICK DIETER , ANDERLOHR CHRISTOPHER ALEC , KLINGLER DIRK , WECHSUNG ACHIM
Abstract: Dispositivo de presión empaquetado y calentable eléctricamente para llevar a cabo reacciones endotérmicas, que tiene unas secciones de dispositivo superior (3), media (1) e inferior (2), estando al menos un par de electrodos (4, 5) dispuestos verticales en la sección media y estando todos los electrodos dispuestos en una empaquetadura de material sólido eléctricamente conductora (26), presentando las secciones superior e inferior del dispositivo una conductividad específica de 105 S/m a 108 S/m, y estando la sección central del dispositivo aislada eléctricamente de la empaquetadura de material sólido, caracterizado porque las secciones superior e inferior del dispositivo están aisladas eléctricamente de la sección central del dispositivo, el electrodo superior está conectado a través de la sección del dispositivo superior y el electrodo inferior a través de la sección del dispositivo inferior, o cada uno de los electrodos está conectado a través de uno o más elementos de conexión (10, 16) puestos en contacto eléctricamente en estas secciones, y la relación entre el área de la sección transversal de los electrodos superior e inferior y el área de la sección transversal de los respectivos elementos de conexión conductores de corriente o, sin usar un elemento de conexión, la relación entre el área de la sección transversal de los electrodos superior e inferior y el área de la sección transversal de la respectiva sección del dispositivo conductor de corriente es de 0,1 a 10.
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公开(公告)号:CA3106871A1
公开(公告)日:2020-02-13
申请号:CA3106871
申请日:2019-08-05
Applicant: BASF SE
Inventor: KOLIOS GRIGORIOS , ZOELS BERND , APPEL HAGEN , BERNNAT JENS , GLENK FRIEDRICH , FLICK DIETER , OLBERT GERHARD , SCHEIFF FREDERIK , ANDERLOHR CHRISTOPHER ALEC
Abstract: The present invention relates to a device comprising at least one pressure-bearing device shell and at least one modular scaffolding system made of ceramic fibre composite materials and arranged inside the device shell and a modular lining device comprising refractory bricks in addition to the modular scaffolding system, and to the use of this device for high-temperature reactors, in particular electrically heated high-temperature reactors.
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7.
公开(公告)号:CA3088588A1
公开(公告)日:2019-08-01
申请号:CA3088588
申请日:2019-01-22
Applicant: BASF SE
Inventor: APPEL HAGEN , BERNNAT JENS , GLENK FRIEDRICH , KOLIOS GRIGORIOS , OLBERT GERHARD , SCHEIFF FREDERIK , ZOELS BERND , KERN MATTHIAS , FLICK DIETER , ANDERLOHR CHRISTOPHER ALEC , KLINGLER DIRK , WECHSUNG ACHIM
Abstract: The present invention relates to an electrically heatable packed pressure-bearing device for performing endothermic reactions having an upper (3), middle (1) and lower (3) device section, wherein at least one vertically disposed electrode pair (4, 5) is fitted in the middle section (1) and all electrodes are arranged in an electrically conducting solid packing (26), the upper and lower device sections have a specific conductivity of 105 S/m to 108 S/m, and the middle device section is electrically isolated against the solid packing, characterized in that the upper and the lower device sections are electrically isolated against the middle device section, the upper electrode is connected via the upper device section and the lower electrode is connected via the lower device section or the electrodes each are connected via one or more connecting elements (10, 16) electrically contacting these sections and the ratio of the cross-sectional areas of the upper and the lower electrodes to the cross-sectional area of the relevant power-conducting connecting element, or if no connecting element is used, the ratio of the cross-sectional area of the upper and the lower electrode to the cross-sectional area of the relevant power-conducting device section is 0.1 to 10.
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