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    • 18. 发明申请
    • Method for creating a database enabling the selection of at least one reaction-capable catalyst
    • 用于创建能够选择至少一种具有反应性的催化剂的数据库的方法
    • US20070161039A1
    • 2007-07-12
    • US10587336
    • 2005-01-28
    • Alain WagnerCedric Catala
    • Alain WagnerCedric Catala
    • C40B30/02C40B40/04
    • C40B30/08B01J2219/00702
    • The invention relates to a method for creating a database enabling, in particular, the selection of at least one reaction-capable catalyst, comprising the following steps: a) preparing a number of different reaction media containing the same reactivity probe and each having at least one catalyst; b) analyzing, by means of an analytic method, each reaction medium after reaction, and; c) assigning, in the database, an analysis result according to step b) to the reactivity probe, this result characterizing different reaction products obtained from said reactivity probe. The database is a relational database containing: a first entity in which items of information relative to the reaction patterns listed in the data base are recorded; a second entity containing items of information relative to the state of bindings of at least one reaction pattern listed in the first entity; a third entity in which items of information associated with different reaction media are stored, and; at least one fourth entity in which items of information are stored that are linked to the analysis results of the reaction media at the end of a reaction.
    • 本发明涉及一种用于创建数据库的方法,其特别是选择至少一种具有反应能力的催化剂,其包括以下步骤:a)制备包含相同反应性探针的多种不同的反应介质, 一种催化剂; b)通过分析方法分析反应后各反应介质; c)在数据库中将根据步骤b)的分析结果分配给反应性探针,该结果表征从所述反应性探针获得的不同反应产物。 数据库是一个关系数据库,它包含:第一个实体,其中记录了相对于数据库中列出的反应模式的信息项; 第二实体,其包含相对于在第一实体中列出的至少一个反应模式的绑定状态的信息项; 存储与不同反应介质相关联的信息项目的第三实体; 至少一个第四实体,其中在反应结束时存储与反应介质的分析结果相关联的信息项。
    • 19. 发明授权
    • Method for placing an artificial satellite on a geostationary orbit
    • 将人造卫星放置在地球静止轨道上的方法
    • US06182928B2
    • 2001-02-06
    • US09297180
    • 1999-04-27
    • Alain Wagner
    • Alain Wagner
    • B64G110
    • B64G1/242B64G1/007B64G1/24
    • The invention concerns a method for placing an artificial satellite on a geostationary orbit injected on said orbit by a launch vehicle. The method is characterised in that the assembly consisting of the last stage (L) of said launch vehicle and satellite (S) be injected on the geostationary orbit (G) is first directly sent on a circular orbit (C), called extinction orbit, near the geostationary orbit, but sufficiently distant therefrom to avoid possible interferene with space objects already on the geostationary orbit (G), the satellite (S) is separated from said last stage (L), which stays on said extinction orbit (C), and the satellite (S) reaches the geostationary orbit (G) from said extinction orbit (C).
    • 本发明涉及一种将人造卫星放置在由运载火箭在所述轨道上注入的地球静止轨道上的方法。 该方法的特征在于,由所述运载火箭的最后一级(L)和卫星(S)组成的组件被注入对地静止轨道(G)首先被直接发送在被称为消光轨道的圆形轨道(C)上, 在距地球静止轨道近的地方,但距离地球静止轨道足够远,以避免与已经在地球静止轨道(G)上的空间物体的可能干扰,卫星(S)与停留在所述消光轨道(C)上的最后一级(L)分离, 卫星(S)从所述灭绝轨道(C)到达地球静止轨道(G)。