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    • 53. 发明授权
    • Apparatus for removing carbon dioxide from a gas
    • 从气体中除去二氧化碳的设备
    • US08500886B2
    • 2013-08-06
    • US13067677
    • 2011-06-20
    • Hiroshi OkanoTsutomu Hirose
    • Hiroshi OkanoTsutomu Hirose
    • B01D53/02
    • B01D53/06B01D53/261B01D2253/108B01D2253/206B01D2257/504B01D2257/80B01D2258/0283B01D2259/4009Y02C10/04Y02C10/08
    • Exhaust gas after coal or oil burning has moisture, which hinders carbon dioxide adsorption. It is necessary to completely remove this moisture with the minimum use of energy. The exhaust gas from the burning apparatus is first lowered of its temperature by passing through an total heat exchanger rotor, and the resultant gas which has low temperature and humidity is sent to a carbon dioxide adsorption rotor, thereby removing carbon dioxide from the gas, which is then sent through the total heat exchanger rotor with the resultant desorption of moisture adsorbed there and is exhausted to outside atmosphere, while the carbon dioxide adsorption rotor is desorbed of its carbon dioxide using water vapor, with the resultant very humid carbon dioxide to be sent to a processing system such as for underground burial.
    • 煤或油燃烧后的废气有水分,这阻碍了二氧化碳的吸附。 有必要用最少的能量彻底清除这种水分。 来自燃烧装置的排气首先通过全热交换器转子而降低其温度和湿度低的所得气体送入二氧化碳吸附转子,从而从气体中除去二氧化碳, 然后通过整个热交换器转子传送,吸附在其上的水分被吸收并被排出到外部大气,而二氧化碳吸附转子用水蒸汽从其二氧化碳中解吸,所得的非常潮湿的二氧化碳被送出 到一个处理系统,如埋地埋葬。
    • 57. 发明授权
    • Method for constructing enterprise system
    • 企业制度建设方法
    • US06684383B1
    • 2004-01-27
    • US09662592
    • 2000-09-14
    • Mari NatoriHiroshi OkanoSeiichiro Tanaka
    • Mari NatoriHiroshi OkanoSeiichiro Tanaka
    • G06F944
    • G06F8/36
    • There is provided an enterprise system constructing method capable of supporting to rapidly construct enterprise systems to share and reuse the whole structure of the systems, and of flexibly and easily changing and extending the systems. A framework 10 includes: a framework 11 which defines the basic attribute and behavior of an enterprise system; frameworks 12, 13 and 14 which inherit the framework 11 and which define the basic attribute and behavior suitable for various executable environments; and a framework for integrating systems 15 which inherits the framework 11 and which defines the basic attribute and behavior relating to combinations of the frameworks 12, 13 and 14. Each of the frameworks 11, 12, 13, 14 and 15 is inherited and materialized, and systems prepared from the frameworks 12, 13 and 14 are combined so as to have a tree structure, the vertex of which is an integrating system prepared from the frameworks for integrating systems 15.
    • 提供了一种能够支持快速构建企业系统共享和重用整个系统结构的企业系统构建方法,并灵活方便地更改和扩展系统。框架10包括:框架11,其定义基本 企业制度的属性和行为; 框架12,13和14,其继承框架11并且定义适合于各种可执行环境的基本属性和行为; 以及用于集成系统15的框架,其继承框架11并且定义与框架12,13和14的组合相关的基本属性和行为。框架11,12,13,14和15中的每一个被继承和实现, 并且从框架12,13和14准备的系统被组合以具有树结构,其顶点是从用于集成系统15的框架准备的集成系统。
    • 60. 发明授权
    • Thermoelectric device
    • 热电装置
    • US06222243B1
    • 2001-04-24
    • US09404938
    • 1999-09-23
    • Matsuo KishiHirohiko NemotoHiroshi Okano
    • Matsuo KishiHirohiko NemotoHiroshi Okano
    • H01L31058
    • H01L35/32H01L35/34
    • A thermoelectric device comprises a pair of substrates each having a surface, P-type and N-type thermoelectric material chips interposed between the pair of substrates, electrodes disposed on the surface of each substrate and connecting adjacent P-type and N-type thermoelectric material chips to each other, and support elements disposed over the surface of each of the substrates for supporting and aligning the thermoelectric material chips on the respective electrodes and between the pair of substrates. Each of the thermoelectric material chips has a first distal end connected to one of the electrodes of one of the substrates and a second distal end connected to one of the electrodes of the other of the substrates. The adjacent P-type and N-type thermoelectric material chips connected by the electrodes are interposed between the pair of substrates such that a line connecting centers of the adjacent P-type and N-type thermoelectric material chips is coincident with a diagonal of each of the adjacent P-type and N-type thermoelectric material chips.
    • 一种热电装置包括一对基板,每个基板具有介于一对基板之间的表面P型和N型热电材料芯片,设置在每个基板的表面上并连接相邻的P型和N型热电材料的电极 以及设置在每个基板的表面上的支撑元件,用于支撑和对准各个电极之间和一对基板之间的热电材料芯片。 每个热电材料芯片具有连接到一个基板的一个电极的第一远端和连接到另一个基板中的一个电极的第二远端。 通过电极连接的相邻P型和N型热电材料芯片插入在一对基板之间,使得相邻的P型和N型热电材料芯片的中心连接的线与每个的对角线一致 相邻的P型和N型热电材料芯片。