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    • 1. 发明申请
    • Internally circulating fluidized bed membrane reactor system
    • 内循环流化床膜反应器系统
    • US20050036940A1
    • 2005-02-17
    • US10637639
    • 2003-08-11
    • John GraceChoon LimAlaa-Eldin AdrisDonglai XieDavid BoydWarren WolfsClive Brereton
    • John GraceChoon LimAlaa-Eldin AdrisDonglai XieDavid BoydWarren WolfsClive Brereton
    • B01J8/00B01J8/38C01B3/44C01B3/24
    • B01J8/009B01J8/0055B01J8/386B01J2208/00309C01B3/44C01B2203/0233C01B2203/0261C01B2203/0844C01B2203/141C01B2203/142C01B2203/82
    • This invention relates to a novel fluidized bed membrane reactor for autothermal operations. More particularly, this invention pertains to a unique fluidized bed membrane reactor which includes internal catalyst solids circulation for conveying heat between a reforming zone and an oxidation zone. A method of producing hydrogen gas from a hydrocarbon gas and steam comprising forming a fluidized bed of a suitable particulate catalyst in a reactor, wherein the catalyst is disposed in the reactor in two reaction modes, the first being an endothermic dehydrogenation reaction mode and the second being an exothermic oxidation or partial oxidation reaction mode, introducing a mixture of steam and hydrocarbon gas into the bottom of the fluidized bed to fluidize the particulate catalyst and form the fluidized bed, reacting the steam and hydrocarbon gas within the first endothermic dehydrogenation reaction mode to produce hydrogen gas, separating said hydrogen gas from other gases in the first endothermic dehydrogenation reaction mode as molecular or atomic hydrogen through a perm-selective membrane that permits the transfer of hydrogen therethrough while preventing or minimizing the transmission therethrough of the other gases in the endothermic dehydrogenation reaction mode, introducing oxidant in the second exothermic oxidation or partial oxidation reaction mode, and mixing same with other gases in the second exothermic oxidation and partial oxidation mode, and directing resultant oxidized gases to the first endothermic dehydrogenation reaction mode.
    • 本发明涉及一种用于自热操作的新型流化床膜反应器。 更具体地说,本发明涉及一种独特的流化床膜反应器,其包括用于在重整区和氧化区之间输送热量的内部催化剂固体循环。 一种从烃类气体和蒸汽生产氢气的方法,包括在反应器中形成合适颗粒催化剂的流化床,其中催化剂以两种反应模式设置在反应器中,第一种是吸热脱氢反应模式,第二种是吸热脱氢反应模式 作为放热氧化或部分氧化反应模式,将蒸汽和烃气体的混合物引入流化床的底部以使颗粒催化剂流化,形成流化床,使第一吸热脱氢反应模式内的蒸汽和烃气体反应到 产生氢气,在第一吸热脱氢反应模式中将氢气与其他气体分离或分解成氢气,通过允许氢气转移通过的选择性膜,同时防止或最小化吸热中其它气体的传输 脱氢反应模式,引进 氧化剂在第二放热氧化或部分氧化反应模式中,并在第二放热氧化和部分氧化模式中与其它气体混合,并将所得氧化气体引导至第一吸热脱氢反应模式。
    • 2. 发明授权
    • Inherently safe redox flow battery storage system
    • 本质安全的氧化还原液电池存储系统
    • US07517608B2
    • 2009-04-14
    • US11716120
    • 2007-03-09
    • Clive BreretonDavid GendersGary LeppTimothy David John Hennessy
    • Clive BreretonDavid GendersGary LeppTimothy David John Hennessy
    • H01M2/12H01M2/36
    • H01M8/188Y02E60/528
    • An improved redox battery energy storage system is disclosed for reducing oxygen gas levels and separating oxygen gas from hydrogen gas, thus reducing the likelihood of flammable gas explosions. The system includes at least one cell, which includes a positive compartment having positive solution, a negative compartment having negative solution, and a membrane separating the positive and negative compartments. A positive reservoir is in fluid communication with the cell's positive compartment, the positive reservoir defining a positive vent space for positive gas, which includes oxygen. A negative reservoir is in fluid communication with the cell's negative compartment, the negative reservoir defining a negative vent space. A return line is in fluid communication with the negative compartment and the negative reservoir to return the negative solution from the cell to the negative reservoir through the negative vent space. A positive gas draw line is in fluid communication with the positive vent space and coupled to the return line at a connection, causing positive gas to be siphoned from the positive vent space into the negative vent space, where the negative solution of the negative reservoir scavenges the oxygen. A balancing line is in fluid communication with the positive and the negative vent spaces to recirculate oxygen-depleted positive gas to the positive vent space.
    • 公开了一种改进的氧化还原电池能量储存系统,用于降低氧气水平并将氧气与氢气分离,从而降低可燃气体爆炸的可能性。 该系统包括至少一个电池,其包括具有正溶液的正隔室,具有负溶液的负隔室和分隔正隔室和阴室的膜。 积极的储存器与电池的正隔室流体连通,阳极储存器为正气体(包括氧气)形成正排气空间。 负储存器与电池的负隔室流体连通,负储器限定排气空间。 返回管线与负隔室和负储器流体连通,以通过负通气空间将负溶液从电池返回到负储存器。 正气体抽出管线与正排气空间流体连通,并在连接处与返回管线连接,使得正气体从正排气空间虹吸到负排气空间中,其中负气罐的负溶液清除 氧气。 平衡线与正和负排气空间流体连通,以将贫氧正气体再循环到正排气空间。
    • 4. 发明申请
    • Inherently safe redox flow battery storage system
    • 本质安全的氧化还原液电池存储系统
    • US20080220318A1
    • 2008-09-11
    • US11716120
    • 2007-03-09
    • Clive BreretonDavid GendersGary LeppTimothy David John Hennessy
    • Clive BreretonDavid GendersGary LeppTimothy David John Hennessy
    • H01M2/38
    • H01M8/188Y02E60/528
    • An improved redox battery energy storage system is disclosed for reducing oxygen gas levels and separating oxygen gas from hydrogen gas, thus reducing the likelihood of flammable gas explosions. The system includes at least one cell, which includes a positive compartment having positive solution, a negative compartment having negative solution, and a membrane separating the positive and negative compartments. A positive reservoir is in fluid communication with the cell's positive compartment, the positive reservoir defining a positive vent space for positive gas, which includes oxygen. A negative reservoir is in fluid communication with the cell's negative compartment, the negative reservoir defining a negative vent space. A return line is in fluid communication with the negative compartment and the negative reservoir to return the negative solution from the cell to the negative reservoir through the negative vent space. A positive gas draw line is in fluid communication with the positive vent space and coupled to the return line at a connection, causing positive gas to be siphoned from the positive vent space into the negative vent space, where the negative solution of the negative reservoir scavenges the oxygen. A balancing line is in fluid communication with the positive and the negative vent spaces to recirculate oxygen-depleted positive gas to the positive vent space.
    • 公开了一种改进的氧化还原电池能量储存系统,用于降低氧气水平并将氧气与氢气分离,从而降低可燃气体爆炸的可能性。 该系统包括至少一个电池,其包括具有正溶液的正隔室,具有负溶液的负隔室和分隔正隔室和阴室的膜。 积极的储存器与电池的正隔室流体连通,阳极储存器为正气体(包括氧气)形成正排气空间。 负储存器与电池的负隔室流体连通,负储器限定排气空间。 返回管线与负隔室和负储器流体连通,以通过负通气空间将负溶液从电池返回到负储存器。 正气体抽出管线与正排气空间流体连通,并在连接处与返回管线连接,使得正气体从正排气空间虹吸到负排气空间中,其中负气罐的负溶液清除 氧气。 平衡线与正和负排气空间流体连通,以将贫氧正气体再循环到正排气空间。