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    • 1. 发明专利
    • Hydrogen utilization system
    • 氢利用系统
    • JP2003328172A
    • 2003-11-19
    • JP2002136471
    • 2002-05-13
    • Toshiba Corp株式会社東芝
    • ITO ARATAYOKOBORI SEIICHIMIYAZAWA TATSUOISHITORI TAKASHI
    • C01B3/00C01B31/02C25B1/04C25B15/02C25B15/08
    • Y02E60/327Y02E60/366Y02E70/10Y02P20/129
    • PROBLEM TO BE SOLVED: To provide a hydrogen utilization system for producing, storing, and supplying a large quantity of hydrogen with high heat efficiency without discharging carbon dioxide. SOLUTION: The hydrogen utilization system is provided with: a power plant 1 for generating heat and power; a low boiling point medium power and cold plant 2 using a medium having a boiling point lower than that of water as an operation medium and for producing power and a cooling medium using the waste heat from the power plant; a water electrolysis plant 3 for electrolyzing water by receiving the supply of the power from the low boiling point medium power and cold plant 2 and the power plant 1; a liquefaction plant 4 for cooling and liquefying hydrogen and oxygen produced in the water electrolysis plant 3 by receiving the supply of the cooling medium from the low boiling point medium power and cold plant 2; a hydrogen storage facility 5 for adsorption-storing the cooled hydrogen on a hydrogen storage alloy; and a liquefied oxygen storage facility 6 for storing the liquefied oxygen. COPYRIGHT: (C)2004,JPO
    • 解决的问题:提供一种在不排出二氧化碳的情况下以高热效率生产,储存和供应大量氢的氢利用系统。 解决方案:氢气利用系统设有:用于产生热量和功率的发电厂1; 使用沸点低于水的介质作为操作介质的低沸点中功率和冷设备2,并且使用来自发电厂的废热产生电力和冷却介质; 用于通过接收来自低沸点介质动力和冷却装置2以及发电厂1的动力的供给来电解水的水电解装置3; 用于通过从低沸点介质动力和冷却设备2接收冷却介质的供应来冷却和液化在水电解设备3中产生的氢气和氧气的液化设备4; 用于将冷却的氢气吸附储存在储氢合金上的储氢设备5; 以及用于储存液化氧的液化氧存储设备6。 版权所有(C)2004,JPO
    • 2. 发明专利
    • Culturing system
    • 文化系统
    • JP2003284449A
    • 2003-10-07
    • JP2002094110
    • 2002-03-29
    • Toshiba Corp株式会社東芝
    • ITO ARATAYOKOBORI SEIICHIWATANABE YUTAKA
    • A01K61/00A01K63/00A01K63/04G21D9/00
    • Y02A40/81Y02E20/14Y02P60/64
    • PROBLEM TO BE SOLVED: To provide a culturing system by which ocean fishery products are cultured and grown by heating seawater without stopping over a whole year by efficiently utilizing waste heat of a power-generating plant. SOLUTION: The culturing system has an ocean deep water-taking installation 4 for taking ocean deep water 14, a surface seawater-taking installation 5 for taking surface seawater 15, a power-generating system 1, a heat-exchanging installation 3, a land culturing installation 2 and a releasing installation 10. The power generating system 1 generates electric power by generating high-temperature and high-pressure steam, and has a condenser for cooling and condensing the seam after the power generation by the ocean deep water 14 fed from the ocean deep water-taking installation 4. The heat-exchanging installation 3 heat-exchanges the ocean deep water 14 fed from the ocean deep water-taking installation 4 with the surface seawater 15 fed from the surface seawater-taking installation 5. The land culturing installation 2 is used for the culturing of the fishery products by using the ocean deep water heated at the power-generating system 1 and the ocean deep water heated at the heat-exchanging installation 3 fed thereto. The releasing installation 10 releases the ocean deep water used in the land culturing installation 2 to seashore region to enrich the sea area. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:通过有效利用发电厂的废热,提供海洋渔业产品通过加热海水培养和生长而不停止一年的养殖系统。

      解决方案:培养系统具有海洋深层采水装置4,用于采集海洋深水14,采集海面15的表面采水装置5,发电系统1,热交换装置3 ,土地培育装置2和释放装置10.发电系统1通过产生高温高压蒸汽发电,并且具有用于通过海洋深水发电后的接缝冷却和冷凝的冷凝器 14从海洋深水采水装置进行供水4.热交换装置3从海洋深水取水装置4加热海水深水14与表面海水15从表面海水采集装置5供给 土地培育装置2用于通过使用在发电系统1加热的海洋深水和在热交换器加热的海洋深水来培养渔业产品 送入其中。 释放装置10将土地培育装置2中使用的海洋深水释放到海滨地区,以丰富海域。 版权所有(C)2004,JPO

    • 5. 发明专利
    • COMBINED POWER GENERATING PLANT
    • JP2000120404A
    • 2000-04-25
    • JP29192998
    • 1998-10-14
    • TOSHIBA CORP
    • ITO ARATAKATAOKA KAZUYOSHIHIRONO HIDEJISUMIYAMA SHIGEAKI
    • G21D5/00F01K21/04F01K23/10F01K25/06F01K25/10F02C6/00F02C6/14
    • PROBLEM TO BE SOLVED: To suppress discharge of carbon dioxide by using electric power and thermal energy of nuclear power generation during night to produce and reserve fuel for peak power generating fuel in the daytime, and by burning this fuel for power generation in the daytime. SOLUTION: A mixed medium power generator 30 is connected to a nuclear power generating system 1. The system 1 is connected on an exhaust gas side of a steam turbine 5 thereof to a suction type refrigerator 2. The refrigerator 2 is connected to a low-temperature type liquefying device 21. The liquefying device 21 is connected to a storage cryogenic converter 4. The converter 4 is connected to a combustor 11 of a methanol gas turbine combined power generating system 26. During a peak demand for power generation in the daytime, reserved methanol, oxygen and carbon dioxide generate combustion gas to drive a gas turbine 12. The resultant waste heat generates steam, thereby driving a steam turbine 14. The waste heat of the steam turbine 14 generates ammonia vapor for a mixed liquid cycle to drive a mixed medium turbine, thereby achieving power generation in accordance with the peak demand for power. Carbon dioxide generated by methanol combustion is liquefied to be reserved.