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公开(公告)号:CA2958101A1
公开(公告)日:2016-02-25
申请号:CA2958101
申请日:2015-08-13
Applicant: BASF SE
Inventor: MAASS HANS-JURGEN , MACHHAMMER OTTO , BODE ANDREAS , KOLIOS GRIGORIOS
Abstract: The invention relates to a method for generating syngas (5). Hydrocarbon (2) is thermally decomposed into hydrogen and carbon in a first reaction zone (Z1), and hydrogen produced in the process is conducted from the first reaction zone (Z1) to a second reaction zone (Z2) in order to react the hydrogen with carbon monoxide (4) in the second reaction zone so as to produce water and carbon monoxide. The invention is characterized in that the energy required for the thermal hydrocarbon decomposition in the first reaction zone (Z1) is supplied from the second reaction zone (Z2).
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公开(公告)号:PL2729405T3
公开(公告)日:2016-01-29
申请号:PL12734811
申请日:2012-07-05
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公开(公告)号:ES2546646T3
公开(公告)日:2015-09-25
申请号:ES06724298
申请日:2006-04-12
Applicant: BASF SE
Inventor: HEINZ ROBERT , MACHHAMMER OTTO , GROPP STEFAN , HAUK ALEXANDER , DIEBOLD GERD , LOHMANN ANNA VALESKA , FEUERSTEIN DIETER , RÜHLE ROBERT , SCHMITT RÜDIGER
Abstract: Diformiato de sodio en forma sólida seca con un contenido de ácido fórmico de al menos el 38 % en peso, con respecto al peso total del diformiato de sodio, que, en el difractograma en polvo de rayos X, muestra reflexiones de difracción en al menos 6 de las distancias interreticulares d siguientes: 8,99; 7,40; 6,69; 5,12; 4,37; 3,83; 5 3,40; 3,10; 2,98; 2,94; 2,90 [A] (± 0,04 [Å]).
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公开(公告)号:ZA201309699B
公开(公告)日:2015-05-27
申请号:ZA201309699
申请日:2013-12-20
Inventor: MASS HANS-JURGEN , MACHHAMMER OTTO , SCHNEIDER CHRISTIAN , BODE ANDREAS , KERN MATTHIAS , GOKE VOLKER , GUZMANN MARCUS , HORMUTH WOFGANG ALOIS , KLINGLER DIRK , KOLIOS GRIGORIOS
IPC: C01B32/40
Abstract: Process for the production of synthesis gas (3), in which methane and carbon dioxide (2) are introduced into a reaction space (R) and reacted in the presence of a solid (W) at elevated temperatures to give hydrogen and carbon monoxide. Methane and carbon dioxide are passed through a carbon-containing granular material (W) and reacted in a high-temperature zone (H).
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85.
公开(公告)号:ES2480302T3
公开(公告)日:2014-07-25
申请号:ES05025498
申请日:2001-06-13
Applicant: BASF SE
Inventor: MACHHAMMER OTTO , ADAMI CHRISTOPH , HECHLER CLAUS , ZEHNER PETER
IPC: C07C27/14 , C07C45/33 , B01J23/00 , B01J23/28 , B01J23/31 , B01J23/34 , B01J23/652 , B01J23/656 , B01J23/88 , B01J27/057 , B01J37/02 , C07B61/00 , C07C5/333 , C07C5/48 , C07C7/11 , C07C11/06 , C07C27/00 , C07C45/35 , C07C47/22 , C07C51/215 , C07C51/25 , C07C57/04 , C07C57/05 , C07C57/07
Abstract: Procedimiento para la preparación de acroleína y/o ácido acrílico a partir de propano y/o propeno, comprendiendo el procedimiento las siguientes etapas: (a) separación de propano y/o propeno de una mezcla de gases A que contiene propano y/o propeno mediante absorción en un absorbente, (b) separación del propano y/o propeno del absorbente con obtención de un gas B que contiene propano y/o propeno y (c) uso del gas B obtenido en la etapa (b) para una oxidación de propano y/o propeno para dar acroleína y/o ácido acrílico, en el que entre la etapa (b) y (c) no se lleva a cabo ninguna deshidrogenación con catálisis heterogénea de propano sin aporte de oxígeno y en en el que la separación del propano y/o propeno del absorbente según la etapa (b) se realiza mediante arrastre con un cambio de presión y/o temperatura y con vapor de agua, mezclas de oxígeno/nitrógeno o aire, y en en el que en la etapa (a) la mezcla de gases se pone en contacto a una presión de 100 a 5000 kPa (de 1 a 50 bar) y a una temperatura de 0 a 100º C con el absorbente y en la etapa (b) se lleva a cabo el arrastre a una presión de 10 a 1000 kPa (de 0,1 a 10 bar) y a una temperatura de 0 a 200º C.
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公开(公告)号:ZA201303026B
公开(公告)日:2014-06-25
申请号:ZA201303026
申请日:2013-04-25
Applicant: BASF SE
Inventor: WORTMANN JURGEN , SEELER FABIAN , MAJOR FELIX , SCHIERLE-ARNDT KERSTIN , MACHHAMMER OTTO , HUBER GUNTHER , MAURER STEPHAN , GEYER KAROLIN , LUTZ MICHAEL , GARTNER MARTIN
IPC: F28D20060101
Abstract: The invention relates to a device for receiving hot, corrosive liquids (7), comprising a chamber enclosed by a wall (21) for receiving the liquid (7), wherein the chamber comprises an interior insulation (19). The invention further relates to a use of the device for storing corrosive liquids for storing a heat storage medium comprising sulfur.
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公开(公告)号:CA2894958A1
公开(公告)日:2014-06-19
申请号:CA2894958
申请日:2013-12-12
Inventor: MACHHAMMER OTTO , HORMUTH WOLFGANG ALOIS , SCHNEIDER CHRISTIAN , BODE ANDREAS , GOEKE VOLKER , MAASS HANS-JUERGEN , KERN MATTHIAS , KLINGLER DIRK , KONIG RENE , BRUGGEMANN PHILIPP , BERNNAT JENS , KOLIOS GRIGORIOS
Abstract: The invention relates to a method for performing endothermic process, characterized in that the annual average total energy required for the endothermic process originates from at least two different energy sources. One of the energy sources is an electrical energy source, the power of which varies between 0 and 100% of the required total power, and three different energy modes individually can provide the total required power for the endothermic process: (i) exclusively electrical energy, (ii) a mixture of electrical energy and at least one additional non-energy source, or (iii) exclusively non-electrical energy. The transition time in which the change from one energy mode to another energy mode is completed 30 minutes at most.
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公开(公告)号:ES2453094T3
公开(公告)日:2014-04-04
申请号:ES11716585
申请日:2011-05-02
Applicant: BASF SE
Inventor: WORTMANN JUERGEN , SCHAEFER CLAUS , LUTZ MICHAEL , SEELER FABIAN , GAERTNER MARTIN , MAJOR FELIX , SCHIERLE-ARNDT KERSTIN , MACHHAMMER OTTO , HUBER GUENTHER , MAURER STEPHAN
Abstract: Dispositivo para la acumulación de calor en una central solar, que comprende un medio de acumulación de calor que absorbe calor para la acumulación de calor y emite calor para el aprovechamiento del calor acumulado, así como un recipiente para el alojamiento del medio de acumulación de calor, estando cerrado el recipiente con una cubierta hermética a los gases, caracterizado porque están comprendidos medios para la compensación de volumen, para compensar un aumento de volumen del medio de acumulación de calor (3) debido a un aumento de la temperatura y una reducción de volumen debido a una reducción de la temperatura.
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公开(公告)号:AU2012280631A8
公开(公告)日:2014-04-03
申请号:AU2012280631
申请日:2012-07-05
Inventor: MAASS HANS-JURGEN , GOKE VOLKER , MACHHAMMER OTTO , GUZMANN MARCUS , SCHNEIDER CHRISTIAN , HORMUTH WOLFGANG , BODE ANDREAS , KLINGLER DIRK , KERN MATTHIAS , KOLIOS GRIGORIOS
Abstract: The invention relates to a method for the parallel production of hydrogen (3) and of one or a plurality of carbon-containing products (8). In the method, hydrocarbons (2) are introduced into a reaction chamber (R) and are thermally decomposed into carbon and hydrogen in the presence of a carbon-rich granulated material (W). The invention is characterised in that at least a portion of the thermal energy necessary for the decomposition of the hydrocarbons is introduced into the reaction chamber (R) via a gaseous heat transfer medium.
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公开(公告)号:TN2012000508A1
公开(公告)日:2014-04-01
申请号:TN2012000508
申请日:2012-10-23
Applicant: BASF SE
Inventor: WORTMANN JURGEN , SCHAFER CLAUS , LUTZ MICHAEL , SEELER FABIAN , GARTNER MARTIN , MAJOR FELIX , SCHIERLE-ARNDT KERSTIN , MACHHAMMER OTTO , HUBER GUNTHER , MAURER STEPHAN
Abstract: The invention relates to a device for storing heat, comprising a heat storage medium, which for storing heat takes up heat and for using the stored heat gives off heat, and a tank for receiving the heat storage medium, wherein the tank is closed by a gas-tight covering, and means for volume equalization are comprised, in order to equalize an increase in volume of the heat storage medium (3) as a result of an increase in temperature and a decrease in volume as a result of a decrease in temperature. The invention also relates to a method for storing heat, in which, for storing heat, heat is transferred to a heat storage medium or, for using heat, heat is removed from the heat storage medium and passed to the heat transfer medium, wherein the heat storage medium is held in a tank, which is closed by a gas-tight covering, wherein an expansion of the volume of the heat storage medium (3) is equalized by an increase in the volume of the tank (1), or by heat storage medium (3) flowing out of the tank (1) into a buffer tank (21; 63, 65), and a decrease in the volume of the heat storage medium (3) is equalized by a reduction in the volume of the tank (1) or by heat storage medium (3) flowing out of the buffer tank (21; 63, 65) into the tank (1).
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