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LNG cryogenic power generation system that uses molten carbonate fuel cells.

机译:使用熔融碳酸盐燃料电池的液化天然气低温发电系统。

摘要

An LNG cryogenic power generation system using a molten carbonate fuel cell (1) is equipped with a CO2 separator (II). The CO2 separator (II) takes advantages of cryogenic LNG in a manner such that CO2 among gases discharged from an anode chamber (4) of the fuel cell (1) is liquefied with cryogenic LNG and separated from the anode exhaust gas. Cell reactions take place at a cathode chamber (3) and the anode chamber (4) of the fuel cell (1) to cause power generation as the oxidizing gas which contains CO2 is fed to the cathode chamber (3) and the fuel gas is fed to the anode chamber. LNG is reformed by a reformer of the fuel cell and (4) the reformed gas is fed to the anode chamber (4). During the cell reaction, CO2 of the oxidizing gas fed to the cathode chamber (3) is transferred as carbonate ion to the anode chamber (4) and CO2 is enriched or concentrated before expelled from the anode chamber (4). This anode gas is introduced to the CO2 separator (II). In the CO2 separator (II), CO2 among the anode gas is liquefied by cryogenic LNG and separated from the anode gas. As a result, the power generation and the CO2 recovery are carried out at the same time, and an amount of CO2 discharged to atmosphere is remarkably reduced. IMAGE
机译:使用熔融碳酸盐燃料电池(1)的LNG低温发电系统配备有CO 2分离器(II)。 CO 2分离器(II)利用低温LNG的方式,使得从燃料电池(1)的阳极室(4)排出的气体中的CO 2被低温LNG液化并与阳极废气分离。燃料电池(1)的阴极室(3)和阳极室(4)发生电池反应,将含CO2的氧化气体送入阴极室(3),燃料气体经燃烧后发电。送入阳极室。 LNG通过燃料电池的重整器进行重整,并将(4)重整后的气体供入阳极室(4)。在电池反应期间,送入阴极室(3)的氧化气体的CO 2作为碳酸根离子被转移到阳极室(4),在从阳极室(4)排出之前,CO 2被浓缩或浓缩。将该阳极气体引入CO 2分离器(II)。在CO 2分离器(II)中,阳极气体中的CO 2被低温LNG液化并与阳极气体分离。结果,同时进行发电和CO 2回收,并且显着减少了排放到大气中的CO 2量。 <图像>

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