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    • 8. 发明授权
    • Power generating device employing hydrogen absorbing alloy and low heat
    • 采用吸氢合金和低热的发电装置
    • US6141966A
    • 2000-11-07
    • US202625
    • 1998-12-16
    • Yasuaki Osumi
    • Yasuaki Osumi
    • F24V30/00F01K25/08F03G7/00F03G7/06F25B17/12F28D20/00F01K25/06
    • F03G7/06F01K25/08F03G7/00F25B17/12F28D20/003F28D2020/006Y02B30/62Y02E10/46Y02E60/142Y02E70/30
    • A power generating device employing hydrogen absorbing alloy and low heat wherein two types of hydrogen absorbing alloys that can reversibly absorb and release hydrogen gas and have different thermal equilibrium hydrogen pressure characteristics are used and loaded, respectively, in a first hydrogen absorbing alloy heat exchanger container (1) and a second hydrogen absorbing alloy heat exchanger container (2) that are ventilably connected to each other, wherein at least two sets of heat generating cycles are provided that employ heat generated when hydrogen gas is moved between the first hydrogen absorbing alloy heat exchanger container (1) and the second hydrogen absorbing alloy heat exchanger container (2), wherein a low temperature side hydrogen absorbing alloy hydrogen compound that has a higher equilibrium hydrogen pressure at the same temperature is heated by low quality heat sources (8, 9, 10), wherein released hydrogen is absorbed by a high temperature side hydrogen absorbing alloy having a lower equilibrium hydrogen pressure to thereby obtain heat having a temperature that is higher than the temperature of the low quality heat sources, and wherein cooling medium vapour is generated by the heat so obtained so that power generation can be effected by a gas turbine (13).
    • PCT No.PCT / JP96 / 01741 Sec。 371日期1998年12月16日第 102(e)日期1998年12月16日PCT提交1996年6月21日PCT公布。 公开号WO97 / 48887 日期1997年12月24日使用吸氢合金和低热的发电装置,其中可以可逆地吸收和释放氢气并具有不同热平衡氢压力特性的两种类型的吸氢合金分别在第一氢 吸收合金热交换器容器(1)和通气连接的第二吸氢合金热交换器容器(2),其中提供至少两组发热循环,所述两组发热循环使用当氢气在 第一吸氢合金热交换器容器(1)和第二吸氢合金热交换器容器(2),其中在相同温度下具有较高平衡氢压的低温侧吸氢合金氢化合物由低质量热量加热 源(8,9,10),其中释放的氢被高温侧hy吸收 具有较低的平衡氢压的吸氢合金,从而获得温度高于低质量热源的温度的热,并且其中通过所获得的热量产生冷却介质蒸汽,从而可以通过 燃气轮机(13)。
    • 10. 发明授权
    • Power generating device employing hydrogen absorbing alloys and low heat
    • 采用吸氢合金和低热的发电装置
    • US06298665B1
    • 2001-10-09
    • US09629931
    • 2000-08-01
    • Yasuaki Osumi
    • Yasuaki Osumi
    • F01K2506
    • F03G7/06F01K25/08F02C1/04F02C1/05F02C6/18F03G7/00F25B17/12F28D20/003Y02B30/625Y02E60/142Y02E70/30
    • A power generating device employing hydrogen absorbing alloy and low heat and further comprising: two types of hydrogen absorbing alloys which are able to reversibly absorb and release hydrogen gas and which have different thermal equilibrium hydrogen pressure characteristics; said two types of hydrogen absorbing alloys loaded respectively in a first determined hydrogen absorbing alloy heat exchanger container (1) and a second determined hydrogen absorbing alloy heat exchanger container (2) which are connected ventably to each other; at least two sets of heat generating cycles which employ heat generated when hydrogen gas is moved between said first hydrogen absorbing alloy heat exchanger container (1) and second hydrogen absorbing alloy heat exchanger container (2) provided; a hydrogen compound of one of said hydrogen absorbing alloys at a low temperature side having a higher equilibrium pressure at the same temperature is heated by at least one low quality heat sources (8)(9)(10) having a temperature from 15° C. to 200° C. to release hydrogen; said released hydrogen absorbed by the other hydrogen absorbing alloy at a high temperature side having a lower equilibrium hydrogen pressure to generate heat having a temperature from 80° C. to 500° C. which is higher than the temperature of the low quality heat source; said heat is transmitted to generate heating medium vapor; and where power is generated by a gas turbine (13) driven by pressure of said heating medium vapor.
    • 一种使用吸氢合金和低热的发电装置,还包括:能够可逆地吸收和释放氢气并具有不同热平衡氢压特性的两种类型的吸氢合金; 所述两种类型的吸氢合金分别装在第一确定的吸氢合金热交换器容器(1)和第二确定的吸氢合金热交换器容器(2)中,它们彼此通气连接; 在所述第一吸氢合金热交换器容器(1)和设置的第二吸氢合金热交换器容器(2)之间移动氢气时产生的热量产生循环的至少两组; 在相同温度下具有较高平衡压力的低温侧的一种吸氢合金的氢化合物被加热至少一种温度为15℃的低品质热源(8)(9)(10) 至200℃以释放氢气; 所述释放的氢气被另一个吸氢合金吸收在具有较低平衡氢压力的高温侧,以产生温度高于低质量热源的温度为80℃至500℃的热; 所述热量传递以产生加热介质蒸气; 并且在由所述加热介质蒸汽的压力驱动的燃气轮机(13)产生动力的情况下。