会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 23. 发明申请
    • Method of reutilization and method of shaping of waste plastic
    • 废塑料的再利用方法和成型方法
    • US20070135667A1
    • 2007-06-14
    • US10576854
    • 2004-10-20
    • Takayuki ArakiKoichi FukudaKenji Kato
    • Takayuki ArakiKoichi FukudaKenji Kato
    • C10G1/10C07C4/00
    • B29B17/02B29B2017/0496B29K2027/06C08J11/12C10B53/07C10B57/04Y02P20/143Y02W30/622Y02W30/625Y02W30/703Y10S264/911
    • The present invention provides a method of reutilization and method of shaping of waste plastic which reduces the amount of volatile ingredients and oil cake* to extents preferable as materials for coke ovens, enables the formation of plastic granular materials able to maintain suitable shapes even after charging into a coke oven, and does not require expensive facilities for treating any produced hydrogen chloride gas, that is, a method of reutilization of waste plastic characterized by melting waste plastic at over 160° C. to 250° C. in temperature in part or whole, compression shaping it to thereby obtain a plastic granular material having an apparent density of 0.7 to 1.2 kg/liter, and mixing this plastic granular material with coal for dry distillation in a coke oven. By bringing the gas produced at the time of compression shaping the waste plastic into contact with water or an ammonia solution and combining the water or ammonia solution with an ammonia solution of an ammonia solution treatment facility attached to the coke furnace, it is possible to remove the hydrogen chloride contained in the produced gas.
    • 本发明提供一种再利用方法和废塑料成型方法,其将挥发成分和油饼*的量优选为焦化炉的材料,使得能够形成即使在充电之后能够保持合适形状的塑料颗粒材料 并且不需要昂贵的设备来处理任何产生的氯化氢气体,也就是废旧塑料的再利用方法,其特征在于废塑料在160℃至250℃的温度下部分熔化,部分或部分温度 全部进行压缩成型,得到表观密度为0.7〜1.2kg / l的塑料颗粒状材料,并将该塑料颗粒材料与焦炉中的干馏混合。 通过将废塑料压缩成型时产生的气体与水或氨溶液接触并将水或氨溶液与附着在焦炉上的氨溶液处理设备的氨溶液结合,可以除去 生成气体中所含的氯化氢。
    • 24. 发明申请
    • Electricity storage device and process for producing the same
    • 蓄电装置及其制造方法
    • US20070117017A1
    • 2007-05-24
    • US10582548
    • 2004-12-09
    • Minoru SugiyamaKenji KatoKazuo OnishiShingo Sewa
    • Minoru SugiyamaKenji KatoKazuo OnishiShingo Sewa
    • H01M4/58H01M10/04
    • H01G11/50H01M4/0407H01M4/38H01M4/387H01M4/405H01M10/052H01M10/0565Y02E60/13Y02T10/7011Y02T10/7022Y10T29/49115
    • There are provided an electricity storage device, comprising a polymer electrolyte and polarizable electrodes, the polarizable electrodes each comprising an interface with the polymer electrolyte, the polarizable electrodes being metal electrodes, a negative electrode of the polarizable electrodes having, at its interface with the polymer electrolyte, a lithium alloy with a metal component contained in the negative electrode, the lithium alloy being capable of releasing lithium ions through a reversible electrochemical oxidation-reduction reaction; and a method for producing an electricity storage device, comprising: a structure forming step of obtaining an electrode-electrolyte structure where each of the polarizable electrodes is formed on a polymer electrolyte through an electroless plating method; and a layer forming step of applying voltage to the polarizable electrode while the electrode-electrolyte structure obtained by the structure forming step includes a solution containing lithium ions, to form a layer containing lithium and a metal component of the polarizable electrodes at the negative electrode of the polarizable electrodes.
    • 提供了一种蓄电装置,其包括聚合物电解质和可极化电极,所述极化电极各自包含与所述聚合物电解质的界面,所述可极化电极为金属电极,所述可极化电极的负极在其与所述聚合物的界面处具有 电解质,含有负极中的金属成分的锂合金,锂合金能够通过可逆电化学氧化还原反应释放锂离子; 以及蓄电装置的制造方法,其特征在于,具备:通过无电解电镀法,在高分子电解质上形成各可极化电极的电极 - 电解质结构的结构形成工序; 以及在通过结构形成步骤获得的电极 - 电解质结构包括含有锂离子的溶液的同时将电压施加到可极化电极的层形成步骤,以形成含锂的层和可极化电极的负极上的金属成分 极化电极。
    • 26. 发明申请
    • Tertiary block copolymer, process for producing the same, and biocompatible material
    • 三嵌段共聚物,其制备方法和生物相容性材料
    • US20060223975A1
    • 2006-10-05
    • US10563560
    • 2004-07-07
    • Shinji TanakaKenji KatoYuichi OhyaTatsuo Ouchi
    • Shinji TanakaKenji KatoYuichi OhyaTatsuo Ouchi
    • C08G69/10
    • C08G63/664C08G63/6852C08G2261/126
    • The present invention relates to a triblock copolymer, that is multipurpose yet has sufficient properties particularly for medical applications, and is useful as a material having excellent flexibility and water absorbability, as well as to a method for producing the same, and a biocompatible material. The copolymer of the present invention is composed of segments A1 and A2 each composed of a polymer having a depsipeptide unit, such as a segment selected from a homopolymer of depsipeptide or a copolymer of lactide and depsipeptide, and segment B composed of polyalkylene glycol, such as PEG, and is a A1-B-A2 triblock copolymer having a number average molecular weight of 8000 to 500000. The biocompatible material of the present invention contains the triblock copolymer as a main component, and may be used as a tissue anti-adhesion barrier.
    • 本发明涉及三嵌段共聚物,其多功能性具有特别适用于医疗应用的足够特性,并且可用作具有优异的柔软性和吸水性的材料,以及其制备方法和生物相容性材料。 本发明的共聚物由具有脱肽肽单元的聚合物组成的段A 1和A 2组成,例如选自前肽的均聚物或 丙交酯和缩酚酸酯的共聚物,以及由聚亚烷基二醇(如PEG)组成的片段B,并且是数均分子量为1的2-S-2 8000〜500000。本发明的生物相容性材料含有三嵌段共聚物作为主要成分,可用作组织抗粘连屏障。