SEPARATION CHIP AND SEPARATION METHOD
    1.
    发明申请
    SEPARATION CHIP AND SEPARATION METHOD 有权
    分离芯片和分离方法

    公开(公告)号:US20100294732A1

    公开(公告)日:2010-11-25

    申请号:US12864283

    申请日:2009-01-27

    IPC分类号: B01D21/26

    摘要: A separation chip for separating an insoluble component from a suspension using centrifugal force by rotation, includes a suspension holding tank, a separation liquid holding tank, and an insoluble component holding tank arranged in order from an inner circumferential side during rotation, wherein the suspension holding tank and the insoluble component holding tank are connected to each other, the insoluble component holding tank and the separation liquid holding tank are connected to each other by a narrow portion, and in the insoluble component holding tank, a connecting portion with the suspension holding tank is positioned further toward an outer circumferential side than the narrow portion.

    摘要翻译: 一种用于通过旋转离心力将不溶性成分与悬浮液分离的分离芯片,包括悬挂保持槽,分离液容纳槽,以及在旋转期间从内周侧依次配置的不溶性成分保持槽, 罐和不溶性成分保持槽彼此连接,不溶性成分保持槽和分离液容纳槽相互连接,在不溶性成分保持槽中,与悬浮液保持槽 被定位成比狭窄部分更靠外周侧。

    LIQUID-FEEDING CHIP AND ANALYSIS METHOD
    2.
    发明申请
    LIQUID-FEEDING CHIP AND ANALYSIS METHOD 有权
    液体进料和分析方法

    公开(公告)号:US20100255483A1

    公开(公告)日:2010-10-07

    申请号:US12743248

    申请日:2008-11-20

    摘要: A liquid-feeding chip for feeding a liquid utilizing the action of centrifugal force and gravity by rotating the chip around an axis of rotation, includes a first storage tank (1-1) into which the liquid can be introduced when rotation of the chip is stopped, and two or more liquid-feeding units arranged in a plurality of levels adjacent to each other, each liquid-feeding unit (U-1, U-2, U-3) being composed of a first holding tank (10-1, 20-1, 30-1), a second holding tank (10-2, 20-2, 30-2) positioned in the direction of gravity with respect to the first holding tank, and a channel B (B-1, B-2, B-3) which extends from the first holding tank in the direction of gravity and which connects the first holding tank and the second holding tank, the first holding tank at a first level being connected with a channel A (A-1) which extends from the first storage tank toward an outer circumferential side. In the liquid-feeding chip, the adjacent liquid-feeding units are connected by a channel C (C-1, C-2) which extends from the second holding tank of the liquid-feeding unit at an upper level to an outer circumferential side during rotation, and which is in communication with the first holding tank of the liquid-feeding unit at a lower level.

    摘要翻译: 一种利用离心力和重力作用使液体沿着旋转轴旋转的液体供给芯片,包括:第一储存罐(1-1),当芯片旋转时可以引入液体 每个供液单元(U-1,U-2,U-3)由第一容纳槽(10-1)组成,每个液体供给单元 ,20-1,30-1),相对于第一容纳槽位于重力方向上的第二保持箱(10-2,20-2,30-2),以及通道B(B-1, B-2,B-3),其从重力方向从第一容纳箱延伸并且连接第一保持箱和第二保持箱,第一水平的第一保持箱与通道A(A- 1),其从第一储罐延伸到外周侧。 在供液芯片中,相邻的送液单元通过从上述液体供给单元的第二容纳槽延伸到外周侧的通道C(C-1,C-2) 在旋转期间,其与较低水平的液体供给单元的第一容纳槽连通。

    Separation chip and separation method
    3.
    发明授权
    Separation chip and separation method 有权
    分离芯片和分离方法

    公开(公告)号:US08409447B2

    公开(公告)日:2013-04-02

    申请号:US12864283

    申请日:2009-01-27

    IPC分类号: B01D21/26 B04B5/04 G01N33/49

    摘要: A separation chip for separating an insoluble component from a suspension using centrifugal force by rotation, includes a suspension holding tank, a separation liquid holding tank, and an insoluble component holding tank arranged in order from an inner circumferential side during rotation, wherein the suspension holding tank and the insoluble component holding tank are connected to each other, the insoluble component holding tank and the separation liquid holding tank are connected to each other by a narrow portion, and in the insoluble component holding tank, a connecting portion with the suspension holding tank is positioned further toward an outer circumferential side than the narrow portion.

    摘要翻译: 一种用于通过旋转离心力将不溶性成分与悬浮液分离的分离芯片,包括悬挂保持槽,分离液容纳槽,以及在旋转期间从内周侧依次配置的不溶性成分保持槽, 罐和不溶性成分保持槽彼此连接,不溶性成分保持槽和分离液容纳槽相互连接,在不溶性成分保持槽中,与悬浮液保持槽 被定位成比狭窄部分更靠外周侧。

    Liquid-feeding chip and analysis method
    4.
    发明授权
    Liquid-feeding chip and analysis method 有权
    送液芯片及分析方法

    公开(公告)号:US08821813B2

    公开(公告)日:2014-09-02

    申请号:US12743248

    申请日:2008-11-20

    摘要: A liquid-feeding chip for feeding a liquid utilizing the action of centrifugal force and gravity by rotating the chip around an axis of rotation, includes a first storage tank (1-1) into which the liquid can be introduced when rotation of the chip is stopped, and two or more liquid-feeding units arranged in a plurality of levels adjacent to each other, each liquid-feeding unit (U-1, U-2, U-3) being composed of a first holding tank (10-1, 20-1, 30-1), a second holding tank (10-2, 20-2, 30-2) positioned in the direction of gravity with respect to the first holding tank, and a channel B (B-1, B-2, B-3) which extends from the first holding tank in the direction of gravity and which connects the first holding tank and the second holding tank, the first holding tank at a first level being connected with a channel A (A-1) which extends from the first storage tank toward an outer circumferential side. In the liquid-feeding chip, the adjacent liquid-feeding units are connected by a channel C (C-1, C-2) which extends from the second holding tank of the liquid-feeding unit at an upper level to an outer circumferential side during rotation, and which is in communication with the first holding tank of the liquid-feeding unit at a lower level.

    摘要翻译: 一种利用离心力和重力作用使液体沿着旋转轴旋转的液体供给芯片,包括:第一储存罐(1-1),当芯片旋转时可以引入液体 每个供液单元(U-1,U-2,U-3)由第一容纳槽(10-1)组成,每个液体供给单元 ,20-1,30-1),相对于第一容纳槽位于重力方向上的第二保持箱(10-2,20-2,30-2),以及通道B(B-1, B-2,B-3),其从重力方向从第一容纳箱延伸并且连接第一保持箱和第二保持箱,第一水平的第一保持箱与通道A(A- 1),其从第一储罐延伸到外周侧。 在供液芯片中,相邻的送液单元通过从上述液体供给单元的第二容纳槽延伸到外周侧的通道C(C-1,C-2) 在旋转期间,其与较低水平的液体供给单元的第一容纳槽连通。

    METHOD FOR PRODUCING A CHEMICAL PRODUCT AND CONTINUOUS FERMENTATION APPARATUS
    5.
    发明申请
    METHOD FOR PRODUCING A CHEMICAL PRODUCT AND CONTINUOUS FERMENTATION APPARATUS 审中-公开
    生产化学产品和连续发酵装置的方法

    公开(公告)号:US20110177551A1

    公开(公告)日:2011-07-21

    申请号:US13121727

    申请日:2009-09-16

    IPC分类号: C12P1/00 C12M1/12

    摘要: To control flow velocity of a culture liquid inside a membrane separation tank without giving influences to culture conditions in the fermentation tank, and also suppress precipitation of microorganisms or culture cells so that the production efficiency of the chemical product can be improved, in a method for producing a chemical product including the steps of: cultivating microorganisms or culture cells in a fermentation tank; transferring a culture liquid from the fermentation tank to a membrane separation tank so as to filter the culture liquid through a separation membrane; and collecting a fermentation product from a filtration liquid as the chemical product while refluxing an unfiltered culture liquid that has not been filtered so as to be joined to the culture liquid on an upstream side of the membrane separation tank, one portion of the culture liquid to be transferred from the fermentation tank is allowed to bypass the membrane separation tank depending on a pressure at the culture liquid flow-in side of the membrane separation tank.

    摘要翻译: 为了控制膜分离槽内的培养液的流速,不影响发酵罐中的培养条件,并且还抑制微生物或培养细胞的沉淀,从而可以提高化学品的生产效率 生产化学产品,包括以下步骤:在发酵罐中培养微生物或培养细胞; 将培养液从发酵罐转移到膜分离罐中,以通过分离膜过滤培养液; 并将来自过滤液的发酵产物作为化学产品收集,同时回流未过滤的未过滤的培养液,以便在膜分离罐的上游侧与培养液接合,将一部分培养液转移至 根据膜分离罐的培养液流入侧的压力,从发酵罐转移允许绕过膜分离罐。

    NAVIGATION SYSTEM, NAVIGATION SERVER, NAVIGATION CLIENT, AND NAVIGATION METHOD
    7.
    发明申请
    NAVIGATION SYSTEM, NAVIGATION SERVER, NAVIGATION CLIENT, AND NAVIGATION METHOD 有权
    导航系统,导航服务器,导航客户端和导航方法

    公开(公告)号:US20140005942A1

    公开(公告)日:2014-01-02

    申请号:US14003394

    申请日:2012-02-20

    IPC分类号: G01C21/34

    摘要: Provided is a system or the like capable of allowing a navigation-client to efficiently use a route search result by a navigation server, while accepting the existence of difference between map data used by each of the navigation server and the navigation-client. By having a common description such as coordinate values, it is able to make the navigation-client 200 efficiently use the route search result by the navigation server 100, while accepting the existence of difference of map data used by each of the navigation server 100 and the navigation-client 200.

    摘要翻译: 提供了一种能够允许导航 - 客户端在导航服务器中使用导航服务器的路由搜索结果,同时接受由导航服务器和导航客户端之间使用的地图数据之间的差异的存在的系统等。 通过具有诸如坐标值的共同描述,能够使导航 - 客户端200有效地使用导航服务器100的路线搜索结果,同时接受由导航服务器100和导航服务器100中的每一个使用的地图数据的差异的存在 导航 - 客户端200。

    METHOD FOR PRODUCING POLYAMIDE
    9.
    发明申请
    METHOD FOR PRODUCING POLYAMIDE 有权
    生产聚酰胺的方法

    公开(公告)号:US20110245454A1

    公开(公告)日:2011-10-06

    申请号:US13119249

    申请日:2009-09-11

    IPC分类号: C08G69/28

    CPC分类号: C08G69/28

    摘要: A method of producing polyamide by the direct polycondensation of a diamine component and a dicarboxylic acid component without using a solvent, such as water. The diamine component containing 70 mol % or more of p-xylylenediamine is added to a reaction system containing the dicarboxylic acid component under pressure while maintaining the reaction system in a molten state. After the addition of the diamine component, the pressure of the reaction system is reduced to atmospheric pressure over 50 min or more at a pressure falling speed of 1.0 MPa/h or less. By the production method, polyamide with a small molecular weight dispersion is easily produced.

    摘要翻译: 通过二胺成分和二羧酸成分的直接缩聚而不使用溶剂如水来生产聚酰胺的方法。 将含有70摩尔%以上的对苯二甲胺的二胺成分加入到含有二羧酸成分的反应体系中,同时保持反应体系处于熔融状态。 加入二胺成分后,在1.0MPa / h以下的压力下降速度下,反应体系的压力在50分钟以上降至大气压。 通过该制造方法,容易制造分子量分散性小的聚酰胺。