Solvent including 1,2-dialkyl-1,2-difluoroethylene carbonate for non-aqueous electrolytic solution of lithium secondary battery
    1.
    发明授权
    Solvent including 1,2-dialkyl-1,2-difluoroethylene carbonate for non-aqueous electrolytic solution of lithium secondary battery 有权
    包括1,2-二烷基-1,2-二氟亚乙基碳酸酯的溶剂,用于锂二次电池的非水电解液

    公开(公告)号:US09240616B2

    公开(公告)日:2016-01-19

    申请号:US12864926

    申请日:2009-01-22

    CPC classification number: H01M10/0569 H01M10/0525 Y02E60/122 Y02T10/7011

    Abstract: A solvent for non-aqueous electrolytic solution of lithium secondary battery including a non-fluorine-containing cyclic carbonate (I), a non-fluorine-containing chain carbonate (II) and 1,2-dialkyl-1,2-difluoroethylene carbonate (III). When the total amount of (I), (II) and (III) is taken as 100% by volume, the non-fluorine-containing cyclic carbonate (I) is contained in an amount of 10 to 50% by volume, the non-fluorine-containing chain carbonate (II) is contained in an amount of 49.9 to 89.9% by volume and the 1,2-dialkyl-1,2-difluoroethylene carbonate (III) is contained in an amount of not less than 0.1% by volume and less than 30% by volume. A non-aqueous electrolytic solution including the above-mentioned solvent and a lithium secondary battery using the non-aqueous electrolytic solution are also disclosed.

    Abstract translation: 一种包含非含氟环状碳酸酯(I),不含氟链状碳酸酯(II)和1,2-二烷基-1,2-二氟亚乙基碳酸酯(II)的锂二次电池的非水电解液的溶剂 III)。 当(I),(II)和(III)的总量为100体积%时,非氟系环状碳酸酯(I)的含量为10〜50体积% 含氟链状碳酸酯(II)的含量为49.9〜89.9体积%,1,2-二烷基-1,2-二氟亚乙基碳酸酯(III)的含量为0.1%以上, 体积小于30%。 还公开了包含上述溶剂的非水电解液和使用非水电解液的锂二次电池。

    Power generation complex plant and plant control method
    2.
    发明授权
    Power generation complex plant and plant control method 有权
    发电复合厂和厂控制方法

    公开(公告)号:US08104282B2

    公开(公告)日:2012-01-31

    申请号:US12388185

    申请日:2009-02-18

    CPC classification number: F01K7/345 F01K7/38 F01K13/02 Y02E20/14

    Abstract: A power generation complex plant has a control switch, an overall control unit and a steam bypass facility. The overall control unit determines that a desired steam volume has reached a limit value of the volume of steam to be generated by a steam generating facility. A steam bypass facility control unit adds a bias value B1 to a control command value V4 of the steam bypass facility to generate a new control command value V5 when the desired steam volume is determined to have reached the limit value. The steam bypass facility control unit then controls the volume and pressure of steam passing through the steam bypass facility on the basis of the new control command value V5 so that no switch of control may be made in the control switch.

    Abstract translation: 一个发电综合设备有一个控制开关,一个整体的控制单元和一个蒸汽旁路设施。 整个控制单元确定所需的蒸汽量已经达到由蒸汽发生设备产生的蒸汽量的极限值。 蒸汽旁路设备控制单元将偏置值B1添加到蒸汽旁路设备的控制命令值V4,以在所需蒸汽量被确定为达到极限值时产生新的控制命令值V5。 然后,蒸汽旁路设备控制单元基于新的控制指令值V5控制通过蒸汽旁路设备的蒸汽的体积和压力,使得不能在控制开关中进行控制切换。

    ELECTROCHEMICAL DEVICE AND NONAQUEOUS ELECTROLYTE SOLUTION FOR ELECTROCHEMCIAL DEVICE
    5.
    发明申请
    ELECTROCHEMICAL DEVICE AND NONAQUEOUS ELECTROLYTE SOLUTION FOR ELECTROCHEMCIAL DEVICE 有权
    电化学装置和非电解电解质溶液

    公开(公告)号:US20140023938A1

    公开(公告)日:2014-01-23

    申请号:US14008356

    申请日:2012-03-30

    Abstract: The present invention aims to provide an electrochemical device excellent in high temperature storage characteristics and cycling characteristics at high voltages, and a nonaqueous electrolyte for the electrochemical device. The present invention relates to an electrochemical device including: a positive electrode; a negative electrode; and a nonaqueous electrolyte containing a nonaqueous solvent and an electrolyte salt, wherein the nonaqueous solvent contains a fluorinated linear carbonate represented by the formula (1): RfOCOOR  (1) (wherein Rf represents a C1-4 fluorinated alkyl group and R represents a C1-4 alkyl group), and further contains following compounds of (I) to (III) in a total amount of not more than 5000 ppm relative to the fluorinated linear carbonate: (I) a compound represented by the formula (2) RfOH  (2) (wherein Rf is defined as above); (II) a compound represented by the formula (3) ROH  (3) (wherein R is defined as above); and (III) a compound represented by the formula (4) ROCOCl  (4) (wherein R is defined as above).

    Abstract translation: 本发明的目的在于提供高电压下的高温保存特性和循环特性优异的电化学装置,以及用于电化学装置的非水电解质。 本发明涉及一种电化学装置,包括:正极; 负极; 和含有非水溶剂和电解质盐的非水电解液,其中非水溶剂含有式(1)表示的氟化线性碳酸酯:RfOCOOR(1)(其中Rf表示C1-4氟化烷基,R表示C1 -4-烷基),并且相对于氟化线性碳酸酯,还含有以下化合物(I)至(III)的总量不超过5000ppm:(I)由式(2)表示的化合物RfOH( 2)(其中Rf定义如上); (II)由式(3)表示的化合物ROH(3)(其中R如上定义); 和(III)由式(4)表示的化合物ROCOCl(4)(其中R如上所定义)。

    LITHIUM ION SECONDARY BATTERY AND NONAQUEOUS ELECTROLYTE FOR LITHIUM ION SECONDARY BATTERY
    6.
    发明申请
    LITHIUM ION SECONDARY BATTERY AND NONAQUEOUS ELECTROLYTE FOR LITHIUM ION SECONDARY BATTERY 审中-公开
    锂离子二次电池和非电解电解质锂离子二次电池

    公开(公告)号:US20140017560A1

    公开(公告)日:2014-01-16

    申请号:US14008285

    申请日:2012-03-29

    Abstract: The present invention provides a lithium ion secondary cell excellent in high-temperature storage characteristics and high voltage cycle characteristics; and a nonaqueous electrolyte for the cell.The present invention relates to a lithium ion secondary cell, comprising a positive electrode, a negative electrode, and a nonaqueous electrolyte containing nonaqueous solvents and an electrolyte salt, the nonaqueous solvents comprising a fluorine-containing ether represented by the formula (1): Rf1—O—Rf2  (1) wherein Rf1 and Rf2 are the same as or different from each other, each being a C1-10 alkyl group or a C1-10 fluoroalkyl group; and at least one of Rf1 and Rf2 is a fluoroalkyl group, and the following compounds (I) and (II): (I) a fluorine-containing unsaturated compound; and (II) a hydroxy group-containing compound represented by the formula (2): Rf1OH  (2) wherein Rf1 is the same as above, and the nonaqueous solvents comprising the compounds (I) and (II) in a total amount of 5000 ppm or less for the fluorine-containing ether.

    Abstract translation: 本发明提供高温保存特性和高电压循环特性优异的锂离子二次电池, 和用于电池的非水电解质。 锂离子二次电池本发明涉及一种锂离子二次电池,其包含正极,负极和含有非水溶剂和电解质盐的非水电解质,所述非水溶剂包含由式(1)表示的含氟醚:Rf1 -O-Rf2(1)其中Rf1和Rf2彼此相同或不同,各自为C1-10烷基或C1-10氟代烷基; Rf1和Rf2中的至少一个为氟代烷基,以下化合物(I)和(II):(I)含氟不饱和化合物; 和(II)式(2)表示的含羟基的化合物:Rf1OH(2)其中Rf1与上述相同,并且包含化合物(I)和(II)的非水溶剂的总量为5000 ppm以下的含氟醚。

    SOLVENT FOR NONAQUEOUS ELECTROLYTE SOLUTION OF LITHIUM SECONDARY BATTERY
    7.
    发明申请
    SOLVENT FOR NONAQUEOUS ELECTROLYTE SOLUTION OF LITHIUM SECONDARY BATTERY 有权
    锂二次电池非电解电解液溶剂

    公开(公告)号:US20120183867A1

    公开(公告)日:2012-07-19

    申请号:US13496971

    申请日:2010-09-17

    Abstract: The present invention provides a solvent for a nonaqueous electrolyte solution enabling a lithium secondary battery to exhibit an excellent discharge capacity, load characteristics, and cycle characteristics even under high voltages, as well as a nonaqueous electrolyte solution that uses this solvent and a lithium secondary battery. This solvent for a nonaqueous electrolyte solution is a solvent for a nonaqueous electrolyte solution for a lithium secondary battery, wherein the solvent for a nonaqueous electrolyte solution contains a fluorine-free cyclic carbonate (I), a fluorine-free chain carbonate (II), and a 1,1-di(fluorinated alkyl)ethylene carbonate (III), and wherein with a sum of (I), (II), and (III) being 100 volume %, the fluorine-free cyclic carbonate (I) is 10 to 50 volume %, the fluorine-free chain carbonate (II) is 49.9 to 89.9 volume %, and the 1,1-di(fluorinated alkyl)ethylene carbonate (III) is from at least 0.1 volume % to not more than 30 volume %.

    Abstract translation: 本发明提供一种非水电解液的溶剂,其能够使锂二次电池即使在高电压下也显示优异的放电容量,负载特性和循环特性,以及使用该溶剂的非水电解质溶液和锂二次电池 。 该非水电解液用溶剂是锂二次电池用非水电解液的溶剂,其中,非水电解液的溶剂含有无氟环状碳酸酯(I),无氟碳酸链(II), 和(I),(II)和(III)之和为100体积%的无水环状碳酸酯(I)为1〜2(氟化烷基)碳酸亚乙酯(III) 10〜50体积%,无碳链碳酸酯(II)为49.9〜89.9体积%,1,1-二(氟化烷基)碳酸亚乙酯(III)为0.1体积%以上30以下 体积%。

    POWER GENERATION COMPLEX PLANT AND PLANT CONTROL METHOD
    9.
    发明申请
    POWER GENERATION COMPLEX PLANT AND PLANT CONTROL METHOD 有权
    发电复合植物和植物控制方法

    公开(公告)号:US20090211252A1

    公开(公告)日:2009-08-27

    申请号:US12388185

    申请日:2009-02-18

    CPC classification number: F01K7/345 F01K7/38 F01K13/02 Y02E20/14

    Abstract: A power generation complex plant has a control switch, an overall control unit and a steam bypass facility. The overall control unit determines that a desired steam volume has reached a limit value of the volume of steam to be generated by a steam generating facility. A steam bypass facility control unit adds a bias value B1 to a control command value V4 of the steam bypass facility to generate a new control command value V5 when the desired steam volume is determined to have reached the limit value. The steam bypass facility control unit then controls the volume and pressure of steam passing through the steam bypass facility on the basis of the new control command value V5 so that no switch of control may be made in the control switch.

    Abstract translation: 一个发电综合设备有一个控制开关,一个整体的控制单元和一个蒸汽旁路设施。 整个控制单元确定所需的蒸汽量已经达到由蒸汽发生设备产生的蒸汽量的极限值。 蒸汽旁路设备控制单元将偏置值B1添加到蒸汽旁路设备的控制命令值V4,以在所需蒸汽量被确定为达到极限值时产生新的控制命令值V5。 然后,蒸汽旁路设备控制单元基于新的控制指令值V5控制通过蒸汽旁路设备的蒸汽的体积和压力,使得不能在控制开关中进行控制切换。

    Plant control apparatus, plant control method, and non-transitory computer-readable recording medium

    公开(公告)号:US09606516B2

    公开(公告)日:2017-03-28

    申请号:US13627253

    申请日:2012-09-26

    CPC classification number: G05B11/42

    Abstract: In accordance with an embodiment, a plant control apparatus includes a deviation calculation unit, a velocity-type PID calculation unit, a plurality of integral calculation units, a plurality of overwrite units, and an automatic balance unit. The deviation calculation unit calculates a deviation between a process value from a plant with operation terminals and a set value corresponding to a control object, and generates a deviation signal. The velocity-type PID calculation unit generates a velocity-type operation amount command signal corresponding to the deviation. The integral calculation units generate position command signals as defined operation terminal position command signals. The overwrite units generate additional position command signals to perform overwrite processing and newly define operation terminal position command signals. The automatic balance unit calculates a deviation between the defined operation terminal position command signals, corrects the operation amount command signal and supplies the corrected operation amount command signal.

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