Abstract:
The present invention relates to a porous organometallic framework material containing a bidentate organic compound in a dative bond with a metal ion, the metal ion being selected from the group of metals consisting of Al, Fe, and Cr and the bidentate organic compound being derived from a dicarboxylic acid, characterized in that the framework material has a structure the projection of which has along [001] a pattern in which each side of a hexagon is limited by a triangle. The present invention further relates to molds and a method for the production of the porous organometallic framework material and the use thereof.
Abstract:
Sorption store (10) particularly for storing an adsorbed natural gas, said sorption store (10) containing at least one adsorbent medium (40), wherein said sorption store (10) is equipped with an external passive cooling (72).
Abstract:
Provided are a storage unit (12) for a drive system (10) in a vehicle and a method of operating the storage unit (12). The storage unit (12) has at least one sorption store (18),at least one battery (16) and at least one cooling circuit (26), the sorption store (18) is coupled via the cooling circuit (26) to the battery (16). Heat is exchanged between the battery (16) and the sorption store (18). It can provide a very simple and efficient heat management concept for such storage unit (12).
Abstract:
Provided are a storage unit (12) for a drive system (10) in a vehicle and a method of operating the storage unit (12). The storage unit (12) has at least one sorption store (18),at least one battery (16) and at least one cooling circuit (26), the sorption store (18) is coupled via the cooling circuit (26) to the battery (16). Heat is exchanged between the battery (16) and the sorption store (18). It can provide a very simple and efficient heat management concept for such storage unit (12).
Abstract:
Provided are a storage unit (12) for a drive system (10) in a vehicle and a method of operating the storage unit (12). The storage unit (12) has at least one sorption store (18),at least one battery (16) and at least one cooling circuit (26), the sorption store (18) is coupled via the cooling circuit (26) to the battery (16). Heat is exchanged between the battery (16) and the sorption store (18). It can provide a very simple and efficient heat management concept for such storage unit (12).
Abstract:
Un procedimiento de preparación del armazón orgánico-metal, en el que el al menos un armazón orgánico-metal comprende al menos un compuesto orgánico bidentado coordinado con al menos un ion metálico, que comprende las etapas a) preparación de una composición seca por medio de mezcla de al menos una sal metálica que corresponde al al menos un ion metálico y al al menos al un menos compuesto orgánico bidentado o una sal del mismo, en el que la relación molar del al menos un ion metálico y el al menos un compuesto orgánico bidentado está dentro del intervalo de 10 : 1 a 1 : 10; b) adición de un disolvente a la composición seca de la etapa a), en el que el disolvente comprende de un 25 a un 75 % en volumen de al menos un alcohol y de un 25 a un 75 % en volumen de agua, en el que las cantidades concretas están basadas en el volumen total del disolvente; y c) mezclar la composición que contienen disolvente de la etapa b) para obtener el armazón orgánico-metal en forma de polvo homogéneo, en el que la composición que contiene disolvente de la etapa b) comprende de un 30 a un 80 % en peso de la composición seca y de un 20 a un 70 % en peso del disolvente, en el que las cantidades concretas están basadas en peso total de la composición que contienen disolvente.