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    • 4. 发明授权
    • Fluid separation method and fluid separation apparatus
    • 流体分离方法和流体分离装置
    • US08236091B2
    • 2012-08-07
    • US12534860
    • 2009-08-04
    • Sheng-Chiang YangShih-Chi LuBing-Joe Hwang
    • Sheng-Chiang YangShih-Chi LuBing-Joe Hwang
    • B08B3/00
    • B01D53/0423B01D53/0454G01N30/461G01N30/468G01N2030/207
    • A fluid separation apparatus suitable for separating a mixed fluid with different properties and capable of separating a complex fluid mixture efficiently is provided. The fluid separation apparatus includes a sampling entrance, a first separation column, a second separation column, a bypass line, a detector and a guide multi-channel valve. A mixed fluid flows into the first separation column via the sampling entrance. The second separation column is connected to the first separation column in series and connected to the bypass line in parallel. The detector is connected to the second separation column and the bypass line. The guide multi-channel valve has different modes to control a flow-through status and a closed status between the first separation column and the second separation column, between the first separation column and the bypass line, between the second separation column and the detector, and between the bypass line and the detector.
    • 提供了一种适用于分离具有不同性能并能够有效分离复杂流体混合物的混合流体的流体分离装置。 流体分离装置包括取样入口,第一分离塔,第二分离塔,旁通管线,检测器和引导多通道阀。 混合流体经由取样入口流入第一分离塔。 第二分离塔串联连接到第一分离塔并且与旁路管并联连接。 检测器连接到第二分离柱和旁路管。 引导多通道阀具有不同的模式来控制第一分离柱和第二分离柱之间的第一分离柱和旁通管之间的第二分离柱和检测器之间的流通状态和闭合状态, 并且在旁路管线和检测器之间。
    • 10. 发明申请
    • LITHIUM-ION BATTERY AND METHOD FOR FABRICATING THE SAME
    • 锂离子电池及其制造方法
    • US20130122379A1
    • 2013-05-16
    • US13425405
    • 2012-03-20
    • Bing-Joe HwangFu-Ming WangChia-Hui Lee
    • Bing-Joe HwangFu-Ming WangChia-Hui Lee
    • H01M10/02H01M2/14
    • H01M10/0567H01M10/052Y10T29/49108
    • A lithium-ion battery and a method for fabricating the same are provided. The lithium-ion battery includes an anode, a cathode, a separator, and an electrolyte solution. The cathode is disposed opposite to the anode. The separator is disposed between the anode and the cathode, where an accommodating region is defined by the anode, the cathode and the separator. The electrolyte solution disposed within the accommodating region includes an organic solvent, a lithium salt and an additive. The additive includes a sulfonyl-containing species, and the content thereof is 0.1 to 5 wt % based on the total weight of the electrolyte solution. The whole-cell potential of the lithium-ion battery is 4.5 V or above. In the lithium-ion battery and the method for fabricating the same of the invention, the sulfonyl-containing species serves as the additive, so that the battery is capable of being operated under a condition of high-voltage charge and discharge.
    • 提供了一种锂离子电池及其制造方法。 锂离子电池包括阳极,阴极,隔膜和电解质溶液。 阴极与阳极相对设置。 隔板设置在阳极和阴极之间,其中容纳区域由阳极,阴极和隔板限定。 设置在容纳区域内的电解质溶液包括有机溶剂,锂盐和添加剂。 添加剂包括含磺酰基的物质,其含量为电解液总重量的0.1〜5重量%。 锂离子电池的全电池电位为4.5V以上。 在本发明的锂离子电池及其制造方法中,含磺酰基的物质作为添加剂,能够在高电压充放电的条件下进行动作。