Method of charging a sorption store with a gas
    1.
    发明授权
    Method of charging a sorption store with a gas 有权
    用气体对吸附物料充电的方法

    公开(公告)号:US09322510B2

    公开(公告)日:2016-04-26

    申请号:US14048358

    申请日:2013-10-08

    Applicant: BASF SE

    CPC classification number: F17C11/005 F17C11/00 F17C11/007

    Abstract: Described is a method of charging a sorption store with a gas. The sorption store comprises a closed container and a feed device which has a passage through the container wall, through which the gas can flow into the container, and the container has at least two parallel, channel-shaped subchambers which are located in its interior and are each at least partly filled with an adsorption medium and whose channel walls are coolable. The method comprises, in a first step, feeding in a gas in such an amount that a pressure in the store of at least 30% of a predetermined final pressure is reached as quickly as possible and, in a second step, subsequently varying the amount of gas fed in in such a way that the course of the pressure in the store approximates the adsorption kinetics of the adsorption medium until the predetermined final pressure in the store is reached after a predetermined period of time.

    Abstract translation: 描述了一种用气体对吸附物料进行充电的方法。 吸附储存器包括密封容器和进料装置,其具有通过容器壁的通道,气体可以通过该通道流入容器中,并且容器具有位于其内部的至少两个平行的通道形子室, 各自至少部分地填充有吸附介质,并且其通道壁是可冷却的。 该方法包括在第一步骤中,将气体供给量使得储存器中的压力达到尽可能快的至少30%的预定最终压力,并且在第二步骤中随后改变量 以这样的方式供给气体,使得商店中的压力过程接近吸附介质的吸附动力学,直到在预定时间段之后达到储存器中的预定最终压力。

    Sorption Store for Storing Gaseous Substances
    2.
    发明申请
    Sorption Store for Storing Gaseous Substances 有权
    用于储存气态物质的吸附库

    公开(公告)号:US20140097099A1

    公开(公告)日:2014-04-10

    申请号:US14048231

    申请日:2013-10-08

    Applicant: BASF SE

    CPC classification number: F17C11/007 F17C11/00 F17C13/005

    Abstract: Describes is a sorption store for storing gaseous substances. The sorption store for storing gaseous substances comprises a closed tank and a feeding device, which comprises a passage through the tank wall, through which a gas can flow into the tank. The tank has inside it at least one separating element, which is configured in such a way that the interior of the tank is divided into at least one pair of channels comprising two parallel running channel-shaped compartments, the ends of which are in connection with one another in each case by way of a common space, each channel-shaped compartment being filled at least partially with an adsorption medium. The feeding device is designed in such a way that inflowing gas is diverted almost exclusively into one of the two compartments of each pair of channels.

    Abstract translation: 描述是用于储存气态物质的吸附存储。 用于储存气态物质的吸附存储器包括封闭的罐和进料装置,其包括通过罐壁的通道,气体可以通过该通道流入罐中。 该罐内有至少一个分离元件,其被构造成使得罐的内部被分成至少一对通道,其包括两个平行的行进的通道形隔室,其两端与 在每种情况下通过公共空间彼此相互隔开,每个通道形隔室至少部分地被吸附介质填充。 进料装置设计成使得流入的气体几乎完全转移到每对通道的两个隔室中的一个中。

    Column with separative installations for separating a mixture of hydrocarbons and/or hydrocarbon derivatives by means of an extractive distillation using a selective solvent

    公开(公告)号:US10125063B2

    公开(公告)日:2018-11-13

    申请号:US15323802

    申请日:2015-07-07

    Applicant: BASF SE

    Abstract: What is proposed is a column (K) comprising separatory internals (E) for separating a mixture of hydrocarbons and/or hydrocarbon derivatives (1) by extractive distillation with a selective solvent (2),with supply of the selective solvent (2) in the upper region of the column and supply of the mixture of hydrocarbons and/or hydrocarbon derivatives to be separated (1) below the supply of the selective solvent (2), the selective solvent (2) becoming laden in the column (K) with the components from the mixture to be separated (1) for which it has greater affinity and being withdrawn from the lower region of the column as laden selective solvent (3), while, by contrast, the components from the mixture to be separated for which the selective solvent (2) has a lower affinity remain in the vapor phase and are withdrawn as top stream (4), which is completely or partially condensed to obtain a condensate (5), some of which is withdrawn as product stream (6), the remainder being reintroduced to the column (K) as reflux (7), wherein said column comprises in the region of the column above the separatory internals (E) a first, substantially horizontal feed pipe (R1) for supplying the selective solvent, wherein the first, substantially horizontal feed pipe (R1) exhibits a cross-sectional narrowing to a narrowest point (V), said pipe widening again downstream of the cross-sectional narrowing, and wherein said column comprises a second feed pipe (R2) for supplying the reflux (7), said pipe joining the first, substantially horizontal feed pipe (R1) in the region of the narrowest point (V) of the cross-sectional narrowing.

    THERMOELECTRIC MODULES FOR AN EXHAUST SYSTEM
    4.
    发明申请
    THERMOELECTRIC MODULES FOR AN EXHAUST SYSTEM 审中-公开
    用于排气系统的热电模块

    公开(公告)号:US20140238459A1

    公开(公告)日:2014-08-28

    申请号:US14349566

    申请日:2012-10-04

    Applicant: BASF SE

    Abstract: In a thermoelectric module consisting of p- and n-conducting thermoelectric material pieces which are alternately connected to one another via electrically conductive contacts, the thermoelectric module (19) is thermally conductively connected to a micro heat exchanger (13) which comprises a plurality of continuous channels having a diameter of at most 1 mm, through which a fluid heat exchanger medium can flow.

    Abstract translation: 在由通过导电触点彼此交替地彼此连接的p导电和n导电热电材料片组成的热电模块中,热电模块(19)被热传导连接到微型热交换器(13),该微型热交换器包括多个 直径为至多1mm的连续通道,流体热交换器介质可以通过该通道流动。

    Method Of Charging A Sorption Store With A Gas
    5.
    发明申请
    Method Of Charging A Sorption Store With A Gas 有权
    用气体充电的方法

    公开(公告)号:US20140097100A1

    公开(公告)日:2014-04-10

    申请号:US14048358

    申请日:2013-10-08

    Applicant: BASF SE

    CPC classification number: F17C11/005 F17C11/00 F17C11/007

    Abstract: Described is a method of charging a sorption store with a gas. The sorption store comprises a closed container and a feed device which has a passage through the container wall, through which the gas can flow into the container, and the container has at least two parallel, channel-shaped subchambers which are located in its interior and are each at least partly filled with an adsorption medium and whose channel walls are coolable. The method comprises, in a first step, feeding in a gas in such an amount that a pressure in the store of at least 30% of a predetermined final pressure is reached as quickly as possible and, in a second step, subsequently varying the amount of gas fed in in such a way that the course of the pressure in the store approximates the adsorption kinetics of the adsorption medium until the predetermined final pressure in the store is reached after a predetermined period of time.

    Abstract translation: 描述了一种用气体对吸附物料进行充电的方法。 吸附储存器包括密封容器和进料装置,其具有通过容器壁的通道,气体可以通过该通道流入容器中,并且容器具有位于其内部的至少两个平行的通道形子室, 各自至少部分地填充有吸附介质,并且其通道壁是可冷却的。 该方法包括在第一步骤中,将气体供给量使得储存器中的压力达到尽可能快的至少30%的预定最终压力,并且在第二步骤中随后改变量 以这样的方式供给气体,使得商店中的压力过程接近吸附介质的吸附动力学,直到在预定时间段之后达到储存器中的预定最终压力。

    Sorption store for storing gaseous substances
    8.
    发明授权
    Sorption store for storing gaseous substances 有权
    用于储存气态物质的吸附库

    公开(公告)号:US09273829B2

    公开(公告)日:2016-03-01

    申请号:US14048231

    申请日:2013-10-08

    Applicant: BASF SE

    CPC classification number: F17C11/007 F17C11/00 F17C13/005

    Abstract: Describes is a sorption store for storing gaseous substances. The sorption store for storing gaseous substances comprises a closed tank and a feeding device, which comprises a passage through the tank wall, through which a gas can flow into the tank. The tank has inside it at least one separating element, which is configured in such a way that the interior of the tank is divided into at least one pair of channels comprising two parallel running channel-shaped compartments, the ends of which are in connection with one another in each case by way of a common space, each channel-shaped compartment being filled at least partially with an adsorption medium. The feeding device is designed in such a way that inflowing gas is diverted almost exclusively into one of the two compartments of each pair of channels.

    Abstract translation: 描述是用于储存气态物质的吸附存储。 用于储存气态物质的吸附存储器包括封闭的罐和进料装置,其包括通过罐壁的通道,气体可以通过该通道流入罐中。 该罐内有至少一个分离元件,其被构造成使得罐的内部被分成至少一对通道,其包括两个平行的行进的通道形隔室,其两端与 在每种情况下通过公共空间彼此相互隔开,每个通道形隔室至少部分地被吸附介质填充。 进料装置设计成使得流入的气体几乎完全转移到每对通道的两个隔室中的一个中。

    Method of Charging a Sorption Store with a Gas
    9.
    发明申请
    Method of Charging a Sorption Store with a Gas 有权
    用气体对吸附物料充电的方法

    公开(公告)号:US20140097098A1

    公开(公告)日:2014-04-10

    申请号:US14048223

    申请日:2013-10-08

    Applicant: BASF SE

    CPC classification number: F17C11/005 F17C11/00 F17C11/007

    Abstract: Described is a method of charging a sorption store with a gas. The sorption store comprises a closed container which is at least partly filled with an adsorption medium and has an inlet and an outlet which can each be closed by a shut-off element. The method comprises the steps: (a) closing of the outlet shut-off element and opening of the inlet shut-off element, (b) introduction of gas to be stored under a predetermined pressure through the inlet, (c) rapid opening of the outlet shut-off element with the inlet shut-off element open so that a gas flow having a predetermined flow rate is established in the container, (d) reduction of the flow rate as a function of the adsorption rate of the gas adsorbed in the store, and (e) complete closing of the outlet shut-off element.

    Abstract translation: 描述了一种用气体对吸附物料进行充电的方法。 吸附储存器包括至少部分地填充有吸附介质的封闭容器,并且具有能够被截止元件封闭的入口和出口。 该方法包括以下步骤:(a)关闭出口关闭元件并打开入口关闭元件,(b)通过入口引入要在预定压力下储存的气体,(c)快速打开 具有入口关闭元件的出口关闭元件打开,使得在容器中建立具有预定流速的气流,(d)作为吸附在吸附剂中的气体的吸附速率的函数的流量的降低 商店,(e)完全关闭出口关闭元件。

    Apparatus and process for preparing acetylene and synthesis gas

    公开(公告)号:US10407305B2

    公开(公告)日:2019-09-10

    申请号:US14912809

    申请日:2014-08-28

    Applicant: BASF SE

    Abstract: An apparatus (10) for preparing acetylene and synthesis gas by partial oxidation of hydrocarbons with oxygen is proposed, comprising a mixing unit (12), a mixing section and a mixing diffuser (16). The mixing unit (12) has a feed orifice (18) for supply of a hydrocarbonaceous stream, a feed orifice (20) for supply of an oxygenous stream, a swirl register and a distributor plate (24). The distributor plate (24) is disposed between the mixing section (14) and the feed orifice (18) for supply of a hydrocarbonaceous stream. The distributor plate (24) has orifices (28). The swirl register (22) is disposed between the feed orifice (20) for supply of an oxygenous stream and the mixing section (14). The mixing diffuser (16) is connected to the mixing section (14).There is a further proposal of a process for preparing acetylene and synthesis gas by partial oxidation of hydrocarbons with oxygen.

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