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    • 3. 发明申请
    • METHOD AND APPARATUS FOR LIQUEFYING A HYDROCARBON STREAM
    • 用于液化石油气流的方法和装置
    • WO2008006788A2
    • 2008-01-17
    • PCT/EP2007/056929
    • 2007-07-09
    • SHELL INTERNATIONALE RESEARCH MAATSCHAPPIJ B.V.VAN AKEN, Michiel GijsbertVAN DONGEN, Marcus Johannes AntoniusPAULUS, Peter MariePEK, Johan Jan BarendRUNBALK, David Bertil
    • VAN AKEN, Michiel GijsbertVAN DONGEN, Marcus Johannes AntoniusPAULUS, Peter MariePEK, Johan Jan BarendRUNBALK, David Bertil
    • F25J1/0278F25J1/0022F25J2220/64F25J2220/66F25J2230/30F25J2290/12F25J2290/60
    • The present invention provides a method of liquefying a hydrocarbon stream such as natural gas, the method at least comprising the steps of: (a) providing a hydrocarbon stream (10) at a first location (2), wherein the first location is situated onshore; (b) treating the hydrocarbon stream (10) in the first location (2) thereby obtaining a treated hydrocarbon stream (20); (c) transporting the treated hydrocarbon stream (20) via a pipeline (4) over a distance of at least 2 km to a second location (3), wherein the second location is situated off-shore; (d) liquefying the treated hydrocarbon stream (20) at the second location (3) thereby obtaining liquefied hydrocarbon product (50) at atmospheric pressure. The invention further provides an apparatus (1) for liquefying a hydrocarbon stream (10) such as a natural gas stream, the apparatus (1) at least comprising: - one or more treating units (11, 12, 13, 14, 18, 19,...) at a first location (2) for obtaining a treated hydrocarbon stream (20), wherein the first location is situated onshore; - at least one liquefaction plant (21) at a second location (3) for producing a liquefied hydrocarbon product (50) at atmospheric pressure, wherein the second location is situated off-shore; - a pipeline (4) for transporting the treated hydrocarbon stream (20) to the second location (3) over a distance of at least 2 km.
    • 本发明提供了一种液化烃流如天然气的方法,该方法至少包括以下步骤:(a)在第一位置(2)处提供烃流(10),其中第一位置位于岸上 ; (b)处理第一位置(2)中的烃流(10),从而获得经处理的烃流(20); (c)经由管道(4)将经处理的烃流(20)运送至第二位置(3)至少2公里的距离,其中第二位置位于离岸位置; (d)在第二位置(3)处液化经处理的烃流(20),从而在大气压下获得液化烃产物(50)。 本发明还提供了一种用于液化诸如天然气流的烃流(10)的装置(1),所述装置(1)至少包括: - 一个或多个处理单元(11,12,13,14,18, 在第一位置(2)处获得经处理的烃流(20),其中第一位置位于岸上; - 在第二位置(3)处的至少一个液化设备(21),用于在大气压下产生液化烃产物(50),其中所述第二位置位于离岸; - 用于将经处理的烃流(20)运送至第二位置(3)至少2km的管线(4)。
    • 5. 发明申请
    • PROCESS FOR PREPARING TI-DOPED HYDRIDES
    • 制备TI-DOPED HYDRIDES的方法
    • WO2008138954A1
    • 2008-11-20
    • PCT/EP2008/055925
    • 2008-05-14
    • Shell Internationale Research Maatschappij B.V.GEERLINGS, Jacobus Johannes CornelisPAULUS, Peter MarieSTIL, Hans Arie
    • GEERLINGS, Jacobus Johannes CornelisPAULUS, Peter MarieSTIL, Hans Arie
    • C01B3/00C01B6/24
    • C01B3/0031C01B6/24Y02E60/327Y02E60/364
    • The present invention provides a process for the preparation of Ti-doped alkali metal and/or alkaline- earth metal aluminium hydride, comprising intimately mixing: an alkali metal and/or alkaline-earth metal aluminium hydride, or at least one alkali metal hydride and/or alkaline- earth metal hydride, metallic aluminium and H 2 , with in the range of from 0.5 to 20 mol% of Ti (OCH 3 ) 4 , based on the moles of A1 in the prepared Ti-doped alkali metal and/or alkaline-earth metal aluminium hydride. The invention further relates to a Ti-doped alkali metal and/or alkaline-earth metal aluminium hydride, obtainable by a process according to the invention, a hydrogen storage material comprising a Ti-doped alkali metal and/or alkaline-earth metal aluminium hydride according the invention, a process for reversibly desorbing and/or absorbing hydrogen, the use of a Ti- doped alkali metal and/or alkaline-earth metal aluminium hydride according to invention to store hydrogen and the use of Ti (OCH 3 ) 4 as Ti-dopant for an alkali metal and/or alkaline-earth metal aluminium hydride.
    • 本发明提供了一种制备掺杂Ti的碱金属和/或碱土金属氢化铝的方法,包括:将碱金属和/或碱土金属氢化铝,或至少一种碱金属氢化物和 /或碱土金属氢化物,金属铝和H 2 O 2,其量为0.5至20摩尔%的Ti(OCH 3 3)4 基于制备的Ti掺杂的碱金属和/或碱土金属氢化铝中的Al的摩尔数。 本发明还涉及通过本发明的方法获得的掺杂Ti的碱金属和/或碱土金属氢化铝,包含掺Ti的碱金属和/或碱土金属氢化铝的氢存储材料 根据本发明,可逆地解吸和/或吸收氢的方法,使用根据本发明的Ti-掺杂的碱金属和/或碱土金属氢化铝来储存氢气和使用Ti(OCH 3) 作为碱金属和/或碱土金属氢化铝的Ti掺杂剂。