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    • 3. 发明申请
    • OZONE GENERATING APPARATUS
    • 臭氧发生装置
    • US20100296980A1
    • 2010-11-25
    • US12690651
    • 2010-01-20
    • Hajime NAKATANIDaisuke TakauchiTomoaki TakedaKoichi Tokimori
    • Hajime NAKATANIDaisuke TakauchiTomoaki TakedaKoichi Tokimori
    • B01J19/08
    • C01B13/11C01B2201/64C01B2201/76
    • An ozone generating apparatus having high reliability in which a glass tube can prevent from being damaged by melting a power feeding brush even if a large amount of short-circuit current flows. In an ozone generating apparatus using silent discharge, an alternating high voltage power is supplied from a power supply to a metal film formed in an inner wall of a glass tube by a power feeding brush comprising a brush shaft made of metal and a large number of metal thin wires fixed to the periphery of the brush shaft, the following equation satisfies. (D2/D1)≧(1+(1/20 β)), wherein ‘D1’ indicates an outer diameter of a bundle of metal thin wires, ‘D2’ indicates an outer diameter of the brush shaft and ‘β’ indicates the line density of metal thin wires on a surface of the brush shaft.
    • 一种具有高可靠性的臭氧发生装置,其中即使大量短路电流流动,玻璃管也可以防止熔化供电刷而损坏玻璃管。 在使用无声放电的臭氧发生装置中,通过由金属制的刷轴和大量的金属制的电力供给电刷将交流高压电力从电源供给到形成在玻璃管的内壁的金属膜 固定在刷轴周边的金属细线,满足下式。 (D2 / D1)≥(1+(1/20&bgr))),其中'D1'表示金属细线束的外径,'D2'表示刷轴的外径,'&bgr' 表示刷轴表面上的金属细线的线密度。
    • 4. 发明授权
    • Ozone generating apparatus
    • 臭氧发生装置
    • US08337767B2
    • 2012-12-25
    • US12690651
    • 2010-01-20
    • Hajime NakataniDaisuke TakauchiTomoaki TakedaKoichi Tokimori
    • Hajime NakataniDaisuke TakauchiTomoaki TakedaKoichi Tokimori
    • B01J19/08
    • C01B13/11C01B2201/64C01B2201/76
    • An ozone generating apparatus having high reliability in which a glass tube can prevent from being damaged by melting a power feeding brush even if a large amount of short-circuit current flows. In an ozone generating apparatus using silent discharge, an alternating high voltage power is supplied from a power supply to a metal film formed in an inner wall of a glass tube by a power feeding brush comprising a brush shaft made of metal and a large number of metal thin wires fixed to the periphery of the brush shaft, the following equation satisfies. (D2/D1)≧1/{1+(1/20β)}, wherein ‘D1’ indicates an outer diameter of a bundle of metal thin wires, ‘D2’ indicates an outer diameter of the brush shaft and ‘β’ indicates the line density of metal thin wires on a surface of the brush shaft.
    • 一种具有高可靠性的臭氧发生装置,其中即使大量短路电流流动,玻璃管也可以防止熔化供电刷而损坏玻璃管。 在使用无声放电的臭氧发生装置中,通过由金属制的刷轴和大量的金属制的电力供给电刷将交流高压电力从电源供给到形成在玻璃管的内壁的金属膜 固定在刷轴周边的金属细线,满足下式。 (D2 / D1)≥1/ {1+(1/20&bgr;)},其中D1表示金属细线束的外径,D2表示刷轴的外径和bgr; 表示刷轴表面上的金属细线的线密度。
    • 5. 发明申请
    • GAS PROCESSING APPARATUS
    • 气体加工设备
    • US20120067071A1
    • 2012-03-22
    • US13265013
    • 2010-09-09
    • Kazuhiro TakedaYosuke NakagawaTomoaki TakedaYasushi Mori
    • Kazuhiro TakedaYosuke NakagawaTomoaki TakedaYasushi Mori
    • F25B49/02
    • F04B49/06F04B49/065F04B2203/0209F04B2205/01F25J3/0223F25J3/0252F25J3/0257F25J3/0266F25J3/0295F25J2230/30F25J2240/02F25J2245/02F25J2280/02Y02C10/12Y02E60/34
    • Disclosed is a gas processing apparatus which can be operated independently of the feed flow rate of a process gas. The gas processing apparatus comprises a compressor (1), a first processing unit (2) at the downstream side of the compressor (1), an expander (3) at the downstream side of the first processing unit (2), a second processing unit (4) at the downstream side of the expander (3), and a driver for driving the compressor (1), wherein the apparatus comprises a first pressure gauge (10) at the inlet of the compressor (1), a second pressure gauge (11) at the outlet of the second processing unit (4), a recirculation channel (24) between the outlet of the second processing unit (4) and the inlet of the compressor (1), a first pressure control valve (12) in the recirculation channel (24), a second pressure control valve (13) at the downstream side of the second pressure gauge (11), a tachometer (14) for measuring the rotation rate of the driver, and a controller for controlling at least one of the following in accordance with the measured pressure and rotation rate: the rotation rate of the driver, the first pressure control valve (12), or the second pressure control valve (13).
    • 公开了一种能够独立于处理气体的进料流量操作的气体处理装置。 气体处理装置包括压缩机(1),位于压缩机(1)的下游侧的第一处理单元(2),在第一处理单元(2)的下游侧的膨胀器(3),第二处理 在膨胀机(3)的下游侧的单元(4)和用于驱动压缩机(1)的驱动器,其中该设备包括在压缩机(1)入口处的第一压力表(10),第二压力 在第二处理单元(4)的出口处的压力表(11),在第二处理单元(4)的出口和压缩机(1)的入口之间的再循环通道(24),第一压力控制阀 ),在第二压力表(11)的下游侧的第二压力控制阀(13),用于测量驾驶员的转速的转速计(14),以及用于控制在第二压力表 根据测量的压力和转速,以下至少一个:驾驶员的转速 ,第一压力控制阀(12)或第二压力控制阀(13)。
    • 7. 发明授权
    • Gas treatment device
    • 气体处理装置
    • US08899076B2
    • 2014-12-02
    • US13265391
    • 2010-09-09
    • Kazuhiro TakedaYosuke NakagawaTomoaki TakedaYasushi Mori
    • Kazuhiro TakedaYosuke NakagawaTomoaki TakedaYasushi Mori
    • F25J3/00F25J3/06
    • F25J3/0695F25J2210/06F25J2230/20F25J2230/30F25J2270/04F25J2270/12F25J2280/02
    • Disclosed is a gas treatment device that can efficiently regulate the temperature of a gas without being affected by load. Said device is provided with: a compressor (1); a heat exchanger; a separator; an expander (3); a refrigerant gas flow control valve (22); a branching channel (13); a first branching-channel heat exchanger (24) and a second branching-channel heat exchanger (25); a first outlet channel that is connected to a liquefied process gas outlet on the separator and that bypasses the first branching-channel heat exchanger (24); a second outlet channel that is connected to an outlet on the expander (3) and that bypasses the second branching-channel heat exchanger (25); a first thermometer (23) in a main channel; a second thermometer (26) in the branching channel (13); a third thermometer (27) in the separator; a flow control valve (20) on the main channel; and a control means (5) that controls the flow control valve (20) and/or the refrigerant gas flow control valve (22) on the basis of temperatures measured by the first through third thermometers (23, 26, 27).
    • 公开了一种能够有效地调节气体温度而不受负荷影响的气体处理装置。 所述装置设有:压缩机(1); 热交换器; 分隔符 扩张器(3); 制冷剂气体流量控制阀(22); 分支通道(13); 第一分支通道热交换器(24)和第二分支通道热交换器(25); 第一出口通道,其连接到分离器上的液化工艺气体出口并绕过第一分支通道热交换器(24); 第二出口通道,其连接到所述膨胀机(3)上的出口并绕过所述第二分支通道热交换器(25); 主通道中的第一温度计(23) 分支通道(13)中的第二温度计(26); 分离器中的第三温度计(27); 主通道上的流量控制阀(20); 以及基于由第一至第三温度计(23,26,27)测量的温度来控制流量控制阀(20)和/或制冷剂气体流量控制阀(22)的控制装置(5)。
    • 8. 发明申请
    • GAS TREATMENT DEVICE
    • 气体处理装置
    • US20120060528A1
    • 2012-03-15
    • US13265391
    • 2010-09-09
    • Kazuhiro TakedaYosuke NakagawaTomoaki TakedaYasushi Mori
    • Kazuhiro TakedaYosuke NakagawaTomoaki TakedaYasushi Mori
    • F25B49/02
    • F25J3/0695F25J2210/06F25J2230/20F25J2230/30F25J2270/04F25J2270/12F25J2280/02
    • Disclosed is a gas treatment device that can efficiently regulate the temperature of a gas without being affected by load. Said device is provided with: a compressor (1); a heat exchanger; a separator; an expander (3); a refrigerant gas flow control valve (22); a branching channel (13); a first branching-channel heat exchanger (24) and a second branching-channel heat exchanger (25); a first outlet channel that is connected to a liquefied process gas outlet on the separator and that bypasses the first branching-channel heat exchanger (24); a second outlet channel that is connected to an outlet on the expander (3) and that bypasses the second branching-channel heat exchanger (25); a first thermometer (23) in a main channel; a second thermometer (26) in the branching channel (13); a third thermometer (27) in the separator; a flow control valve (20) on the main channel; and a control means (5) that controls the flow control valve (20) and/or the refrigerant gas flow control valve (22) on the basis of temperatures measured by the first through third thermometers (23, 26, 27).
    • 公开了一种能够有效地调节气体温度而不受负荷影响的气体处理装置。 所述装置设有:压缩机(1); 热交换器; 分隔符 扩张器(3); 制冷剂气体流量控制阀(22); 分支通道(13); 第一分支通道热交换器(24)和第二分支通道热交换器(25); 第一出口通道,其连接到分离器上的液化工艺气体出口并绕过第一分支通道热交换器(24); 第二出口通道,其连接到所述膨胀机(3)上的出口并绕过所述第二分支通道热交换器(25); 主通道中的第一温度计(23) 分支通道(13)中的第二温度计(26); 分离器中的第三温度计(27); 主通道上的流量控制阀(20); 以及基于由第一至第三温度计(23,26,27)测量的温度来控制流量控制阀(20)和/或制冷剂气体流量控制阀(22)的控制装置(5)。