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    • 2. 发明授权
    • Recovery of carbon dioxide from combustion exhaust gas
    • 从燃烧废气中回收二氧化碳
    • US5339633A
    • 1994-08-23
    • US957185
    • 1992-10-07
    • Masumi FujiiYoshitsugu HottaTaiichiro SudaKenji KobayashiKunihiko YoshidaShigeru ShimojoMutsunori KarasakiMasaki IijimaToru SetoShigeaki Mitsuoka
    • Masumi FujiiYoshitsugu HottaTaiichiro SudaKenji KobayashiKunihiko YoshidaShigeru ShimojoMutsunori KarasakiMasaki IijimaToru SetoShigeaki Mitsuoka
    • B01D53/14F01K13/00F01K17/00
    • B01D53/1418B01D53/1475Y02C10/04Y02C10/06
    • An electric generating power plant and a method of operation thereof wherein the boiler (1) produces steam to a turbine driven-generator (2), carbon dioxide from combustion exhaust gas emitted from the boiler is simultaneously absorbed in an absorbing solution in an absorber (7), the absorbing solution with the absorbed carbon dioxide is passed through a regenerator (10) where the carbon dioxide is stripped from the absorbing solution, the regenerated absorbing solution is returned to the absorber (7), and steam from either the boiler (1) or turbine of the turbine-driven generator (2) is supplied to a reboiler (13) to provide heat for operation of the regenerator (10). During periods of high demand for electric power steam extraction from the boiler or turbine is discontinued, operation of the regenerator (10) is discontinued and the absorbing solution from the absorber (7) is stored in a first storage unit (15). During periods of low power demand steam is supplied to the reboiler (13) from the boiler (1) or turbine and absorbing solution from the first storage unit (15) is fed to the regenerator (10) for operation thereof, and absorbing solution stripped of carbon dioxide from the regenerator (10) is stored in a second storage unit (16). Absorbing solution from the second storage unit (16) is fed to the absorber (7) during periods of high power demand.
    • 一种发电厂及其操作方法,其中锅炉(1)向涡轮机驱动发电机(2)产生蒸汽,从锅炉排出的来自燃烧废气的二氧化碳同时吸收在吸收器中的吸收溶液中 如图7所示,吸收的二氧化碳的吸收溶液通过再生器(10),二氧化碳从吸收溶液中汽提出来,再生的吸收液返回吸收器(7),蒸汽从锅炉 1)或涡轮机驱动的发电机(2)的涡轮机被供应到再沸器(13)以提供用于再生器(10)的操作的热量。 在对来自锅炉或涡轮机的电力蒸汽提取的高需求期间,中止再生器(10)的运行,并且来自吸收器(7)的吸收溶液被存储在第一存储单元(15)中。 在低功率需求期间,从锅炉(1)向再沸器(13)供应蒸汽,或将来自第一储存单元(15)的涡轮机和吸收溶液供给到再生器(10)进行操作,并吸收溶液 来自再生器(10)的二氧化碳存储在第二存储单元(16)中。 在高功率需求期间,来自第二存储单元(16)的吸收溶液被供给到吸收器(7)。
    • 10. 发明授权
    • Characteristic measuring device for solar cell
    • 太阳能电池特征测量装置
    • US08264251B2
    • 2012-09-11
    • US13140979
    • 2009-08-27
    • Yoshinori MizutaniTaiichiro Suda
    • Yoshinori MizutaniTaiichiro Suda
    • G01R31/26
    • H02S50/10
    • A solar cell characteristic measuring device measures the output characteristics of a solar cell while avoiding junction capacitance. The device provides a solar cell load circuit by connecting the solar cell with an electronic load device setting a load current or voltage variably, and a measurement circuit connecting voltage and current detectors with the load. An operation point control element divides the magnitude of the load, taken from the solar cell, of the electronic load device into a plurality ranging from states of opening to short-circuiting, while driving the load device in the load circuit periodically and intermittently, changing the load magnitude stepwise and controlling the operation point of the solar cell, and a processing element reading and processing the detected values of the voltage and current detectors at each drive period of the electronic load device and for the period of the stable output voltage of the solar cell.
    • 太阳能电池特性测量装置测量太阳能电池的输出特性,同时避免结电容。 该装置通过将太阳能电池与可变地设定负载电流或电压的电子负载装置连接并且将电压和电流检测器与负载连接的测量电路来提供太阳能电池负载电路。 操作点控制元件将电子负载装置的负载的大小从开路状态到短路状态分为多个,同时周期性地和间歇地驱动负载电路中的负载装置,改变 负载量级并控制太阳能电池的操作点,以及处理元件在电子负载装置的每个驱动周期读取和处理电压和电流检测器的检测值,并且在稳定的输出电压的时间段内 太阳能电池。