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    • 52. 发明授权
    • Multi-stage system for producing a material of a battery cell
    • 用于生产电池单元材料的多级系统
    • US08968669B2
    • 2015-03-03
    • US13901121
    • 2013-05-23
    • Llang-Yuh Chen
    • Llang-Yuh Chen
    • B01J8/18B01J8/24C01B25/45C01B13/14B22F9/08B01J12/02
    • H01M4/04B01J8/18B01J8/1827B01J8/24B01J12/02B22F9/082B22F9/22C01B13/14C01B13/34C01B25/45C01G1/02C01P2006/40H01M4/0471H01M4/36H01M4/505H01M4/525Y02P20/129Y02P20/145
    • A system and method thereof are provided for multi-stage processing of one or more precursor compounds into a battery material. The system includes a mist generator, a drying chamber, one or more gas-solid separators, and one or more in-line reaction modules comprised of one or more gas-solid feeders, one or more gas-solid separators, and one or more reactors. Various gas-solid mixtures are formed within the internal plenums of the drying chamber, the gas-solid feeders, and the reactors. In addition, heated air or gas is served as the energy source within the processing system and as the gas source for forming the gas-solid mixtures to facilitate reaction rate and uniformity of the reactions therein. Precursor compounds are continuously delivered into the processing system and processed in-line through the internal plenums of the drying chamber and the reaction modules into final reaction particles useful as a battery material.
    • 提供了一种系统及其方法,用于将一种或多种前体化合物多级处理成电池材料。 该系统包括雾化发生器,干燥室,一个或多个气体 - 固体分离器,以及由一个或多个气体 - 固体进料器,一个或多个气体 - 固体分离器和一个或多个气固分离器组成的一个或多个在线反应模块 反应堆。 在干燥室,气固进料器和反应器的内部增压室内形成各种气体 - 固体混合物。 此外,加热的空气或气体被用作处理系统内的能源,并且用作形成气 - 固混合物的气源,以促进其中反应的反应速率和均匀性。 前体化合物被连续地输送到处理系统中,并且通过干燥室和反应模块的内部通气管线进行处理,成为可用作电池材料的最终反应颗粒。
    • 56. 发明申请
    • Multi-Stage Process for Producing a Material of a Battery Cell
    • 用于生产电池单元材料的多阶段工艺
    • US20140326918A1
    • 2014-11-06
    • US13901035
    • 2013-05-23
    • LIang-Yuh Chen
    • LIang-Yuh Chen
    • C01B25/45C01B13/14
    • H01M4/04B01J8/18B01J8/1827B01J8/24B01J12/02B22F9/082B22F9/22C01B13/14C01B13/34C01B25/45C01G1/02C01P2006/40H01M4/0471H01M4/36H01M4/505H01M4/525Y02P20/129Y02P20/145
    • A system and method thereof are provided for multi-stage processing of one more precursor compounds into a battery material. The system includes a mist generator, a drying chamber, one or more gas-solid separators, and one or more in-line reaction modules comprised of one or more gas-solid feeders, one or more gas-solid separators, and one or more reactors. Various gas-solid mixtures are formed within the internal plenums of the drying chamber, the gas-solid feeders, and the reactors. In addition, heated air or gas is served as the energy source within the processing system and as the gas source for forming the gas-solid mixtures to facilitate reaction rate and uniformity of the reactions therein. Precursor compounds are continuously delivered into the processing system and processed in-line through the internal plenums of the drying chamber and the reaction modules into final reaction particles useful as a battery material.
    • 提供了一种系统和方法,用于将多个前体化合物多级处理成电池材料。 该系统包括雾化发生器,干燥室,一个或多个气体 - 固体分离器,以及由一个或多个气体 - 固体进料器,一个或多个气体 - 固体分离器和一个或多个气体 - 固体分离器组成的一个或多个在线反应模块 反应堆。 在干燥室,气固进料器和反应器的内部增压室内形成各种气体 - 固体混合物。 此外,加热的空气或气体被用作处理系统内的能源,并且用作形成气 - 固混合物的气源,以促进其中反应的反应速率和均匀性。 前体化合物被连续地输送到处理系统中,并且通过干燥室和反应模块的内部通气管线进行处理,成为可用作电池材料的最终反应颗粒。
    • 57. 发明授权
    • Water based biological and photochemical batteries
    • 水基生物和光化学电池
    • US08871370B2
    • 2014-10-28
    • US12924272
    • 2010-09-24
    • Jian Zhang
    • Jian Zhang
    • H01M4/36
    • H01M4/36H01M14/005
    • The designs of prototype batteries are described based on some biological Fenton reactions and the photo-excitation of singlet oxygen. The biological battery consists of hydrogen peroxide (or an acid) and ferrous gluconate complexed with a second ligand. Salts such as sodium chloride or ammonium chloride are used as the electrolyte. The photochemical battery uses an aqueous paste of ferrous gluconate with an additional ligand and is irradiated by light. The power of the battery is higher by adding small amount of titanium oxide to ferrous gluconate. The power of these batteries can be increased by using higher concentration of the chemicals or connecting multiple batteries in sequence and/or in parallel. Replacing ferrous ion with cupric ions increases the current of the battery by about 20 times.
    • 基于一些生物芬顿反应和单线态氧的光激发来描述原型电池的设计。 生物电池由与第二配体络合的过氧化氢(或酸)和葡萄糖酸亚铁组成。 盐如氯化钠或氯化铵被用作电解质。 光化学电池使用葡萄糖酸亚铁的水性糊剂和另外的配体,并用光照射。 通过向葡萄糖酸亚铁中加入少量氧化钛,电池的功率更高。 这些电池的功率可以通过使用更高浓度的化学品或连续多个电池顺序和/或并联来增加。 用铜离子替代亚铁离子将电池的电流增加约20倍。