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    • 1. 发明授权
    • Process for producing olefin polymers
    • 生产烯烃聚合物的方法
    • US07741419B2
    • 2010-06-22
    • US10550021
    • 2005-03-30
    • Yasushi TohiKenji SugimuraToshiyuki Tsutsui
    • Yasushi TohiKenji SugimuraToshiyuki Tsutsui
    • C08F4/642C08F4/6592B01J31/22
    • C08F10/00C08F4/65912Y10S526/943C08F4/65927C08F2/06C08F210/16C08F210/14C08F2500/12C08F2500/08
    • A process for producing an olefin polymer is provided, in which ethylene and at least one kind or more of monomers selected from α-olefins are polymerized by a high temperature solution polymerization in a temperature range between 120 and 300° C., in the presence of an olefin polymerization catalyst composed of a bridged metallocene compound represented by general formula [I] described below and at least one kind or more compounds (B) selected from (b-1) an organoaluminum oxy-compound, (b-2) a compound capable of forming an ion pair in a reaction with the bridged metallocene compound mentioned above, and (b-3) an organoaluminum compound. According to the high temperature solution polymerization of the present invention, it has become possible to obtain a polymer having a high molecular weight with high polymerization activity that was so far unattainable, and when the polymer is a copolymer, it is a process for producing a high molecular weight olefin polymer with a large comonomer content, a narrow composition distribution, and a narrow molecular weight distribution.
    • 提供了一种制备烯烃聚合物的方法,其中乙烯和至少一种或多种选自α-烯烃的单体通过高温溶液聚合在120-300℃的温度范围内聚合, 的由下述通式[I]表示的桥连金属茂化合物和至少一种以上选自(b-1)有机铝氧化合物,(b-2)a 能够与上述桥连茂金属化合物反应形成离子对的化合物和(b-3)有机铝化合物。 根据本发明的高温溶液聚合,可以获得迄今为止无法实现的具有高聚合活性的高分子量聚合物,并且当聚合物是共聚物时,它是制备 具有大的共聚单体含量的高分子量烯烃聚合物,组成分布窄,分子量分布窄。
    • 6. 发明申请
    • Sales shop system
    • 销售店系统
    • US20060097045A1
    • 2006-05-11
    • US11259260
    • 2005-10-27
    • Toshiyuki TsutsuiMasataka ItakuraTomohiro HamadaAkihito ItouKazuma Kurata
    • Toshiyuki TsutsuiMasataka ItakuraTomohiro HamadaAkihito ItouKazuma Kurata
    • G06K15/00G07F19/00
    • G06Q20/40G06Q20/4014G06Q20/40145G06Q30/02
    • Conventionally, to acquire specific information of a customer, acquisition of the information is only possible by using information such as a bank account number owned by the customer, and further it is not possible to present information beneficial to the customer unless information owned by the customer is acquired from the customer. More specifically, there is a problem in that much time is necessary for a customer or a system operator to input such information. To solve the above-stated problem, the present invention outputs information associated with a customer by using biometric information including a face image. More specifically, biometric information is acquired from a user of a first terminal unit included in a plurality of terminal units, and information associated with an operation made by the user is identified. Then, when the user is going to use a second terminal unit (or when the second terminal unit executes processing of information on the user based on inputs by a third party, etc.), biometric information is acquired from the user, and information that is identified by an operation made on the first terminal unit is retrieved for output by using the biometric information.
    • 通常,为了获取客户的具体信息,只能通过使用客户拥有的银行帐号等信息来获取信息,而且除了客户所拥有的信息之外,还不可能提供有益于客户的信息 是从客户那里获得的。 更具体地说,存在客户或系统操作员输入这样的信息需要很多时间的问题。 为了解决上述问题,本发明通过使用包括脸部图像的生物信息来输出与顾客相关联的信息。 更具体地,从包括在多个终端单元中的第一终端单元的用户获取生物特征信息,并且识别与由用户进行的操作相关联的信息。 然后,当用户要使用第二终端单元(或者当第二终端单元基于第三方的输入来执行对用户的信息的处理等)时,从用户获取生物特征信息,以及信息 通过在第一终端单元上进行的操作来识别,通过使用生物特征信息被检索以输出。
    • 9. 发明授权
    • Process for olefin polymerization
    • 烯烃聚合方法
    • US6043325A
    • 2000-03-28
    • US978602
    • 1997-11-26
    • Toshiyuki TsutsuiKen YoshitsuguMasaaki OhgizawaTetsuhiro MatsumotoJunichi Imuta
    • Toshiyuki TsutsuiKen YoshitsuguMasaaki OhgizawaTetsuhiro MatsumotoJunichi Imuta
    • C08F4/642C08F4/659C08F4/6592C08F10/00C08F210/16C08F4/64
    • C08F10/00C08F210/16C08F4/65912C08F4/65916C08F4/6592Y10S526/904Y10S526/943
    • A process for olefin polymerization, including polymerizing or copolymerizing an olefin in the presence of an olefin polymerization catalyst composed of: a fine particle carrier; (A) a transition metal compound of a Group IVB metal of the periodic table, containing a ligand having a cyclopentadienyl skeleton; (B) an aluminoxane compound; and optionally (C) an organoaluminum compound, wherein said aluminoxane compound has an alkyl groups to aluminum ratio of 1.3 to 2.1; said transition metal compound (A) and said organoaluminum oxy-compound (B) and said organoaluminum compound being supported on the fine particle carrier; and said solid catalyst having a bulk density of 0.3 g/cm.sup.3 to 0.5 g/cm.sup.3 and a fluidity index of 45 to 70 and an olefin polymerization process using the olefin polymerization catalyst; and an olefin prepolymerized catalyst obtained by prepolymerizing the catalyst, and an olefin polymerization process using the olefin prepolymerized catalyst. The olefin polymerization process produces a polymer showing excellent particle properties and an olefin polymer which does not stick to the wall of the polymerization reactor.
    • 一种烯烃聚合方法,包括在烯烃聚合催化剂存在下聚合或共聚烯烃,所述烯烃聚合催化剂由微粒载体构成; (A)周期表第ⅣB族金属的过渡金属化合物,其含有具有环戊二烯基骨架的配位体; (B)铝氧烷化合物; 和任选地(C)有机铝化合物,其中所述铝氧烷化合物具有1.3至2.1的烷基与铝的比率; 所述过渡金属化合物(A)和所述有机铝氧化合物(B)和所述有机铝化合物负载在所述微粒载体上; 所述固体催化剂的体积密度为0.3g / cm 3〜0.5g / cm 3,流动性指数为45〜70,使用该烯烃聚合催化剂的烯烃聚合方法; 和通过使催化剂预聚合获得的烯烃预聚合催化剂和使用烯烃预聚合催化剂的烯烃聚合方法。 烯烃聚合方法产生显示出优异的颗粒性能的聚合物和不粘在聚合反应器壁上的烯烃聚合物。