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    • 7. 发明申请
    • REMOVAL OF HALIDES FROM HYDROCARBON LIQUID
    • 从碳氢化合物液中去除海藻糖
    • WO2016150600A1
    • 2016-09-29
    • PCT/EP2016/052224
    • 2016-02-03
    • HALDOR TOPSØE A/S
    • HANSEN, Torkil, OttesenEGEBERG, Rasmus, GottschalckJØRGENSEN, Lars
    • C10G45/02C07C1/26C07C1/30C10G19/02
    • C10G45/02C10G19/02
    • The invention relates to a process for removing halides from a hydrocarbon stream comprising one or more organic halides, said method comprising the steps of: (a) combining said hydrocarbon stream with a hydrogen rich stream to a hydrogen enriched hydrocarbon stream, (b) directing said hydrogen enriched hydrocarbon stream into a hydro-treatment reactor comprising a material catalytically active in converting organic halides into inorganic halides, (c) letting the hydrogen enriched hydrocarbon stream react at the presence of the catalytically active material, rendering a first hydrogenated product stream, (d) separating said first hydrogenated product stream into a first vapor phase and a first liquid phase in a separator unit, (e) removing halides from said first vapor phase to create a second vapor phase, (f) recycling at least part of said second vapor phase to the hydro-treatment reactor. The invention also relates to a system for carrying out the process of the invention.
    • 本发明涉及一种从包含一种或多种有机卤化物的烃流中除去卤化物的方法,所述方法包括以下步骤:(a)将所述烃流与富氢流合并成富氢烃流,(b)引导 所述富氢烃流进入加氢处理反应器,其包括将有机卤化物转化为无机卤化物具有催化活性的材料,(c)使富氢烃流在催化活性材料存在下反应,形成第一氢化产物流, (d)将所述第一氢化产物流分离成分离器单元中的第一气相和第一液相,(e)从所述第一气相除去卤化物以产生第二气相,(f)将至少部分所述 第二气相到加氢处理反应器。 本发明还涉及一种用于实施本发明方法的系统。
    • 10. 发明申请
    • PLANT ETHYLENE RESPONSE INHIBITION COMPOUNDS AND COMPLEXES
    • 植物乙烯反应抑制化合物和复合物
    • WO00010386A1
    • 2000-03-02
    • PCT/US1999/014891
    • 1999-06-30
    • A23B7/14A01N3/00A01N3/02A01N27/00A01N33/26A01N43/90A01N61/00A23B7/144A23L5/40C07C1/28C07C1/30C07C13/04C07C13/15C07C245/12A01N31/06A01N33/04A23B7/152A23L1/27C07C5/31C07C5/32C07C5/42A01N20/04
    • A01N3/02A01N27/00A01N33/26A01N43/90A01N61/00A01N25/10A01N25/08A01N25/18A01N2300/00
    • The present invention generally relates to the regulation of plant physiology, in particular to methods for inhibiting the ethylene response in plants or plant products, and has three embodiments. The first embodiment relates to methods of minimizing impurities capable of reversibly binding to plant ethylene receptor sites during the synthesis of cyclopropene and its derivatives such as methylcyclopropene, thereby avoiding the negative effects these impurities have on plants treated with cyclopropene and its derivatives. The second embodiment relates to complexes formed from molecular encapsulation agents such as cyclodextrin, and cyclopropene and its derivatives such as methylcyclopropene, in addition to cyclopentadiene and diazocyclopentadiene and their derivatives, thereby providing a convenient means for storing and transporting these compounds capable of inhibiting the ethylene response in plants, which are reactive gases and highly unstable because of oxidation and other potential reactions. The third embodiment relates to convenient methods of delivering to plants these compounds capable of inhibiting the ethylene response in the plants in order to extend their shelf life.
    • 本发明一般涉及植物生理学的调节,特别是涉及抑制植物或植物产品中乙烯应答的方法,并且具有三个实施方案。 第一实施方案涉及在环丙烯及其衍生物例如甲基环丙烯的合成期间最小化能够可逆地结合植物乙烯受体位点的杂质的方法,从而避免这些杂质对用环丙烯及其衍生物处理的植物的负面影响。 第二实施方案涉及除了环戊二烯和重氮环戊二烯及其衍生物之外由分子包封剂如环糊精和环丙烯及其衍生物如甲基环丙烯形成的络合物,从而提供了用于储存和运输能够抑制乙烯的这些化合物的方便的手段 在植物中的反应,其是反应性气体,并且由于氧化和其它潜在反应而高度不稳定。 第三实施方案涉及向植物递送能够抑制植物中的乙烯应答以延长其保质期的方便的方法。