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    • 1. 发明授权
    • Retention device for retained substance and retention method
    • 保留物质保留装置及保留方法
    • US08998532B2
    • 2015-04-07
    • US14008779
    • 2012-03-26
    • Ziqiu XueSusumu NishioHiromichi KameyamaKoji Yoshizaki
    • Ziqiu XueSusumu NishioHiromichi KameyamaKoji Yoshizaki
    • B65G5/00B65D88/76B09B1/00G21F9/34B01J19/00C01B31/20
    • B65G5/00C01B32/50E21B41/0064Y02C10/14
    • A carbon dioxide tank (3) is connected to a pump device (5). The pump device (5) is joined and connected with an infusion well (9), which is a tubular body. The infusion well (9) extends downward beneath the ground (7) and is provided so as to reach a saltwater aquifer (11). Part of the infusion well (9) forms a horizontal well (10) in a substantially horizontal direction. In other words, the horizontal well (10) is a location in which part of the infusion well (9) is formed in a substantially horizontal direction within a saltwater aquifer (11). The horizontal well (10) is provided with filters (13), which are porous members. For the filters (13), for example, a fired member in which ceramic particles are mixed with a binder that binds those particles can be used. Moreover, if the hole diameter for the filters (13) is small, microbubbles with a smaller diameter can be generated.
    • 二氧化碳罐(3)连接到泵装置(5)。 泵装置(5)连接并与作为管状体的输注井(9)连接。 注入井(9)在地面(7)下方向下延伸,并且设置成达到盐水含水层(11)。 输液孔(9)的一部分在大致水平的方向上形成水平井(10)。 换句话说,水平井(10)是其中部分输注井(9)在盐水含水层(11)内沿基本上水平的方向形成的位置。 水平井(10)设置有多孔构件的过滤器(13)。 对于过滤器(13),例如,可以使用其中陶瓷颗粒与结合这些颗粒的粘合剂混合的烧制构件。 此外,如果过滤器(13)的孔径小,则可能产生具有较小直径的微泡。
    • 2. 发明授权
    • Device and method for sequestering a substance
    • 用于隔离物质的装置和方法
    • US08939223B2
    • 2015-01-27
    • US13386532
    • 2010-08-11
    • Hiromichi KameyamaSusumu NishioZiqiu XueToshifumi Matsuoka
    • Hiromichi KameyamaSusumu NishioZiqiu XueToshifumi Matsuoka
    • E21B41/00
    • E21B41/0064E21B43/164Y02C10/14Y02P90/70
    • There are provided a carbon dioxide storage apparatus and a carbon dioxide storage method which, through direct injection of carbon dioxide into an underground brine aquifer, can store carbon dioxide efficiently in the brine aquifer. A filter formed of, for example, grindstone is provided at a tip portion of an injection well. A pumping apparatus pumps carbon dioxide stored in a carbon dioxide tank. The pumping apparatus feeds carbon dioxide from the carbon dioxide tank into the injection well by means of a pump. In the pumping apparatus, carbon dioxide is held within a predetermined pressure range and a predetermined temperature range. Carbon dioxide is fed through the injection well, and is injected into a brine aquifer. Carbon dioxide injected into the brine aquifer assumes the form of microbubbles.
    • 提供二氧化碳储存装置和二氧化碳储存方法,其通过将二氧化碳直接注入地下盐水含水层中,可以有效地将二氧化碳储存在盐水含水层中。 在注入井的前端设有由例如磨石构成的过滤器。 泵送装置泵送存储在二氧化碳罐中的二氧化碳。 泵送装置通过泵将二氧化碳从二氧化碳罐送入注入井。 在抽吸装置中,二氧化碳保持在预定的压力范围和预定的温度范围内。 二氧化碳通过注入井进料,并注入盐水含水层。 注入盐水含水层的二氧化碳呈现微泡的形式。
    • 3. 发明申请
    • RETENTION DEVICE FOR RETAINED SUBSTANCE AND RETENTION METHOD
    • 用于保留物质和保持方法的保持装置
    • US20140072369A1
    • 2014-03-13
    • US14008779
    • 2012-03-26
    • Ziqiu XueSusumu NishioHiromichi KameyamaKoji Yoshizaki
    • Ziqiu XueSusumu NishioHiromichi KameyamaKoji Yoshizaki
    • B65G5/00
    • B65G5/00C01B32/50E21B41/0064Y02C10/14
    • A carbon dioxide tank (3) is connected to a pump device (5). The pump device (5) is joined and connected with an infusion well (9), which is a tubular body. The infusion well (9) extends downward beneath the ground (7) and is provided so as to reach a saltwater aquifer (11). Part of the infusion well (9) forms a horizontal well (10) in a substantially horizontal direction. In other words, the horizontal well (10) is a location in which part of the infusion well (9) is formed in a substantially horizontal direction within a saltwater aquifer (11). The horizontal well (10) is provided with filters (13), which are porous members. For the filters (13), for example, a fired member in which ceramic particles are mixed with a binder that binds those particles can be used. Moreover, if the hole diameter for the filters (13) is small, microbubbles with a smaller diameter can be generated.
    • 二氧化碳罐(3)连接到泵装置(5)。 泵装置(5)连接并与作为管状体的输注井(9)连接。 注入井(9)在地面(7)下方向下延伸,并且设置成达到盐水含水层(11)。 输液孔(9)的一部分在大致水平的方向上形成水平井(10)。 换句话说,水平井(10)是其中部分输注井(9)在盐水含水层(11)内沿基本上水平的方向形成的位置。 水平井(10)设置有多孔构件的过滤器(13)。 对于过滤器(13),例如,可以使用其中陶瓷颗粒与结合这些颗粒的粘合剂混合的烧制构件。 此外,如果过滤器(13)的孔径小,则可能产生具有较小直径的微泡。
    • 5. 发明授权
    • Throttle valve control device and control method thereof
    • 节流阀控制装置及其控制方法
    • US5983861A
    • 1999-11-16
    • US49670
    • 1998-03-27
    • Susumu NishioMitsuhiro MiyakeTakuya MatsumotoToru Hashimoto
    • Susumu NishioMitsuhiro MiyakeTakuya MatsumotoToru Hashimoto
    • F02D9/02F02D11/10F02D41/10F02D41/14F02D7/00
    • F02D11/105
    • A throttle valve control device is provided which includes a throttle valve mounted in an intake pipe of an internal combustion engine, an actuator which drives the throttle valve so as to change an opening of the throttle valve, an operating condition sensor which detects operating conditions of the internal combustion engine, an accelerator sensor which detects an accelerator pedal position that represents an amount by which an accelerator pedal is depressed by a driver, and a control unit for controlling the throttle valve. The control unit includes a first setting circuit that sets a first target opening of the throttle valve based on the accelerator pedal position detected by the accelerator sensor, a second setting circuit that sets a second target opening of the throttle valve based on the accelerator pedal position detected by the accelerator sensor, and the operating conditions of the engine detected by the operating condition sensor, and a control circuit that compares the first target opening with the second target opening, and controls the actuator based on the larger one of the first target opening and second target opening.
    • 提供了一种节气门控制装置,其包括安装在内燃机的进气管中的节流阀,驱动节流阀以便改变节流阀的开度的致动器,检测操作状态传感器, 内燃机,加速器传感器,其检测表示加速踏板被驾驶员压下的量的加速器踏板位置,以及用于控制节流阀的控制单元。 控制单元包括:第一设定电路,其基于由加速器传感器检测出的加速器踏板位置设定节流阀的第一目标开度;第二设定电路,其基于加速踏板位置设定节气门的第二目标开度 由所述加速器传感器检测到的所述发动机的运转状况以及由所述运转状态传感器检测到的所述发动机的运转状况;以及控制电路,其将所述第一目标开度与所述第二目标开度进行比较,并且基于所述第一目标开度 和第二个目标开放。
    • 6. 发明授权
    • Storing device for stored substance and method for storing stored substance
    • 储存物质储存装置及储存物质储存方法
    • US08684085B2
    • 2014-04-01
    • US13057375
    • 2009-08-12
    • Hiromichi KameyamaSusumu NishioZiqiu XueToshifumi Matsuoka
    • Hiromichi KameyamaSusumu NishioZiqiu XueToshifumi Matsuoka
    • E21B43/02E21B43/16
    • E21B43/02E21B41/0064E21B43/164E21B43/168Y02C10/14
    • A filter (13) is provided at a tip portion of an injection well (9). A pumping apparatus (5) pumps carbon dioxide stored in a carbon dioxide tank (3). The pumping apparatus (5) feeds carbon dioxide from the carbon dioxide tank (3) into the injection well (9) by means of a pump. In the pumping apparatus, the pressure and temperature of carbon dioxide are maintained at respective predetermined levels or higher by means of a pressure regulation valve, a temperature regulator, etc., whereby carbon dioxide enters a supercritical state. The carbon dioxide having entered a supercritical state is fed in the direction of arrow A through the injection well (9), passes through the filter (13) provided at an end portion of the injection well (9), and is injected into a brine aquifer (11). Carbon dioxide injected into the brine aquifer (11) assumes the form of microbubbles.
    • 过滤器(13)设置在注入井(9)的尖端部分。 泵送装置(5)泵送储存在二氧化碳罐(3)中的二氧化碳。 泵送装置(5)通过泵将二氧化碳从二氧化碳罐(3)进料到注入井(9)中。 在泵送装置中,通过压力调节阀,温度调节器等将二氧化碳的压力和温度保持在各自的预定水平或更高水平,由此二氧化碳进入超临界状态。 进入超临界状态的二氧化碳通过注入井(9)沿箭头A的方向进料,通过设在注入井(9)端部的过滤器(13),并注入盐水 含水层(11)。 注入盐水含水层(11)的二氧化碳呈现出微泡的形式。
    • 7. 发明申请
    • STORING DEVICE FOR STORED SUBSTANCE AND METHOD FOR STORING STORED SUBSTANCE
    • 用于储存物质的储存装置和存储储存物质的方法
    • US20110139455A1
    • 2011-06-16
    • US13057375
    • 2009-08-12
    • Hiromichi KameyamaSusumu NishioZiqiu XueToshifumi Matsuoka
    • Hiromichi KameyamaSusumu NishioZiqiu XueToshifumi Matsuoka
    • E21B43/00
    • E21B43/02E21B41/0064E21B43/164E21B43/168Y02C10/14
    • A filter (13) is provided at a tip portion of an injection well (9). A pumping apparatus (5) pumps carbon dioxide stored in a carbon dioxide tank (3). The pumping apparatus (5) feeds carbon dioxide from the carbon dioxide tank (3) into the injection well (9) by means of a pump. In the pumping apparatus, the pressure and temperature of carbon dioxide are maintained at respective predetermined levels or higher by means of a pressure regulation valve, a temperature regulator, etc., whereby carbon dioxide enters a supercritical state. The carbon dioxide having entered a supercritical state is fed in the direction of arrow A through the injection well (9), passes through the filter (13) provided at an end portion of the injection well (9), and is injected into a brine aquifer (11). Carbon dioxide injected into the brine aquifer (11) assumes the form of microbubbles.
    • 过滤器(13)设置在注入井(9)的尖端部分。 泵送装置(5)泵送储存在二氧化碳罐(3)中的二氧化碳。 泵送装置(5)通过泵将二氧化碳从二氧化碳罐(3)进料到注入井(9)中。 在泵送装置中,通过压力调节阀,温度调节器等将二氧化碳的压力和温度保持在各自的预定水平或更高水平,由此二氧化碳进入超临界状态。 进入超临界状态的二氧化碳通过注入井(9)沿箭头A的方向进料,通过设在注入井(9)端部的过滤器(13),并注入盐水 含水层(11)。 注入盐水含水层(11)的二氧化碳呈现出微泡的形式。