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    • 53. 发明授权
    • Electric power plant, and method for running electric power plant
    • 电厂,电厂运行方式
    • US08448439B2
    • 2013-05-28
    • US12920505
    • 2009-01-30
    • Koji NambaShigeo HatamiyaFumio TakahashiKoji NishidaSusumu NakanoTakanori Shibata
    • Koji NambaShigeo HatamiyaFumio TakahashiKoji NishidaSusumu NakanoTakanori Shibata
    • F01K3/00F01K13/02F01K13/00F01K17/00F01K7/34
    • F01K17/005
    • An electric power plant supplies steam generated to a high-pressure turbine and a low-pressure turbine. The steam discharged from the low-pressure turbine is condensed with a condenser. Water generated with the condenser is heated with a low-pressure feed water heater and a high-pressure feed water heater. The steam extracted from the high-pressure turbine is supplied to the high-pressure feed water heater. The steam extracted from the low-pressure turbine is compressed with a steam compressor, and the steam whose temperature has been increased is then supplied to the high-pressure feed water heater. The feed water is heated in the high-pressure feed water heater by the steam extracted from the high-pressure turbine and the steam compressed with the steam compressor. Because the feed water is heated by the extracted steam and the compressed steam in the high-pressure feed water heater, the amount of power consumed by the steam compressor can be reduced.
    • 电力厂将产生的蒸气供给到高压汽轮机和低压汽轮机。 从低压涡轮机排出的蒸汽与冷凝器一起冷凝。 用冷凝器产生的水用低压给水加热器和高压给水加热器加热。 将从高压涡轮机抽出的蒸汽供给到高压给水加热器。 从低压涡轮机提取的蒸汽用蒸汽压缩机压缩,然后将温度升高的蒸汽供给至高压给水加热器。 供给水在高压给水加热器中被从高压汽轮机抽出的蒸汽和用蒸汽压缩机压缩的蒸汽加热。 由于供水通过提取的蒸汽和高压给水加热器中的压缩蒸汽进行加热,因此可以减少蒸汽压缩机消耗的功率。
    • 57. 发明授权
    • System and method for coproduction of activated carbon and steam/electricity
    • 用于生产活性炭和蒸汽/电力的系统和方法
    • US07981835B2
    • 2011-07-19
    • US12120639
    • 2008-05-14
    • Srivats SrinivasacharSteven BensonCharlene CrockerJill Mackenzie
    • Srivats SrinivasacharSteven BensonCharlene CrockerJill Mackenzie
    • C01B31/08F01K13/00F01K17/00C09C1/56
    • B01J20/20B01J20/30B01J20/3078B01J20/3466C01B32/336F01K15/00F22B1/1838F22B1/1892
    • A system and method for producing activated carbon comprising carbonizing a solid carbonaceous material in a carbonization zone of an activated carbon production apparatus (ACPA) to yield a carbonized product and carbonization product gases, the carbonization zone comprising carbonaceous material inlet, char outlet and carbonization gas outlet; activating the carbonized product via activation with steam in an activation zone of the ACPA to yield activated carbon and activation product gases, the activation zone comprising activated carbon outlet, activation gas outlet, and activation steam inlet; and utilizing process gas comprising at least a portion of the carbonization product gases or a combustion product thereof; at least a portion of the activation product gases or a combustion product thereof; or a combination thereof in a solid fuel boiler system that burns a solid fuel boiler feed with air to produce boiler-produced steam and flue gas, the boiler upstream of an air heater within a steam/electricity generation plant, said boiler comprising a combustion zone, a boiler-produced steam outlet and at least one flue gas outlet.
    • 一种生产活性炭的体系和方法,包括在活性炭生产设备(ACPA)的碳化区中碳化固体碳质材料以产生碳化产物和碳化产物气体,所述碳化区包括碳质材料入口,炭出口和碳化气体 出口; 通过在ACPA的活化区域中的蒸汽激活来活化碳化产物以产生活性炭和活化产物气体,活化区包括活性炭出口,活化气体出口和活化蒸汽入口; 并且利用包含至少一部分碳化产物气体的工艺气体或其燃烧产物; 活化产物气体的至少一部分或其燃烧产物; 或其组合,其在固体燃料锅炉系统中燃烧固体燃料锅炉进料与空气以产生锅炉产生的蒸汽和烟道气,所述锅炉在蒸汽/发电设备内的空气加热器的上游,所述锅炉包括燃烧区 锅炉生产的蒸汽出口和至少一个烟气出口。
    • 58. 发明申请
    • WATER RECLAMATION SYSTEM AND METHOD
    • 水回收系统和方法
    • US20110023485A1
    • 2011-02-03
    • US12937173
    • 2009-04-14
    • Frank Schubert
    • Frank Schubert
    • F01K17/00F01B31/00F01K13/00
    • C02F1/14C02F1/048Y02A20/212Y02E10/46Y02W10/37
    • A system reclaiming contaminated water includes a heat exchanger that receives the contaminated water and converts at least a portion of the contaminated water into steam and collects at least a portion of the contaminants within the heat exchanger. A thermal transfer fluid is heated by a solar concentrator during daytime and by a biofuel combustion device during nighttime. The heated fluid is circulated through the heat exchanger to heat the contaminated water. A steam engine is coupled to a generator, the steam engine receives the steam from the heat exchanger to drive the generator to provide power for the system. Steam exhausted from the steam engine is supplied to supplemental heat loads. The collected contaminants are directed to an evaporation device to remove residual liquid.
    • 回收受污染的水的系统包括接收污染水并将至少一部分污染的水转化成蒸汽并收集热交换器内的至少一部分污染物的热交换器。 白天由太阳能集热器和夜间通过生物燃料燃烧装置加热热传递流体。 加热的流体循环通过热交换器以加热污染的水。 蒸汽发动机联接到发电机,蒸汽发动机接收来自热交换器的蒸汽以驱动发电机为系统提供动力。 从蒸汽机排出的蒸汽被供应到补充热负荷。 收集的污染物被引导到蒸发装置以除去残留的液体。
    • 59. 发明申请
    • Electric Power Plant, and Method for Running Electric Power Plant
    • 电厂和运行电厂的方法
    • US20110005225A1
    • 2011-01-13
    • US12920505
    • 2009-01-30
    • Koji NambaShigeo HatamiyaFumio TakahashiKoji NishidaSusumu NakanoTakanori Shibata
    • Koji NambaShigeo HatamiyaFumio TakahashiKoji NishidaSusumu NakanoTakanori Shibata
    • F01K13/00F01K17/00
    • F01K17/005
    • An electric power plant, e.g., a boiling water reactor nuclear power plant supplies steam generated in a nuclear reactor to a high-pressure turbine and a low-pressure turbine. The steam discharged from the low-pressure turbine is condensed with a condenser. Water generated with the condenser, used as feed water, flows through a feed water pipe, is heated with a low-pressure feed water heater and a high-pressure feed water heater, and then supplied to the nuclear reactor. The steam extracted from the high-pressure turbine is supplied to the high-pressure feed water heater. The steam extracted from the low-pressure turbine is compressed with a steam compressor, and the steam whose temperature has been increased is then supplied to the high-pressure feed water heater. The feed water to be directed to the nuclear reactor is heated in the high-pressure feed water heater by both the steam extracted from the high-pressure turbine and the steam compressed with the steam compressor. Because the feed water is heated by both the extracted steam and the compressed steam in the high-pressure feed water heater, the amount of plant service power consumed by the steam compressor can be reduced. Therefore, it is possible to increase thermal efficiency in the electric power plant when increasing the power output.
    • 诸如沸水堆核电站的发电厂将在核反应堆中产生的蒸汽提供给高压涡轮机和低压涡轮机。 从低压涡轮机排出的蒸汽与冷凝器一起冷凝。 用作为给水的冷凝器产生的水通过给水管流动,用低压给水加热器和高压给水加热器加热,然后供给核反应堆。 将从高压涡轮机抽出的蒸汽供给到高压给水加热器。 从低压涡轮机提取的蒸汽用蒸汽压缩机压缩,然后将温度升高的蒸汽供给至高压给水加热器。 通过从高压涡轮机提取的蒸汽和用蒸汽压缩机压缩的蒸汽,在高压给水加热器中加热要引导到核反应堆的给水。 由于通过高压给水加热器中的抽出的蒸汽和压缩蒸汽两者来供给供水,所以可以减少蒸汽压缩机所消耗的设备的使用能量。 因此,当增加功率输出时,可以提高发电厂的热效率。