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首页> 外文期刊>日本舶用機関学会誌 >CO{sub}2 recovery from diesel engines in a solar-hydrogen-methanol energy system
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CO{sub}2 recovery from diesel engines in a solar-hydrogen-methanol energy system

机译:太阳能-氢-甲醇能源系统中柴油发动机的CO {sub} 2回收

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摘要

Concept of solar-hydrogen-methanol energy system for the transportation sector in Japan is outlined.In the system, methanol is produced with CO{sub}2 recycled and H{sub}2 produced by electrolysiswith photovoltaic power. Concerning CO{sub}2 recovery from the exhaust gas of a 10,000 kW diesel engine to be used inthe methanol energy system, the effects of CO{sub}2 recovery parameters such as gas and liquidflow rates, liquid concentration, and stripping temperature on the engine performance and theattainable CO{sub}2 recovery ratio are analyzed on the basis of a mass transfer calculation model fora packed column with aqueous monoethanolamine solution. Heat rejected from the engine is used forCO{sub}2 recovery, but reduction in the engine output power is not avoidable, which is mainlycaused by the shortage in power of turbocharger and the supplemental supercharging power. Boththe maximum attainable CO{sub}2 recovery ratio and the reduction in the engine output powerdepend on the ratio of the stripping steam feed rate to the flow rate of the exhaust gas.
机译:概述了日本交通运输业的太阳能-氢-甲醇能源系统的概念。在该系统中,甲醇是通过回收利用的CO {sub} 2进行生产的,而H {sub} 2是通过利用光伏发电的电解进行生产的。关于要从甲醇能源系统中使用的10,000 kW柴油机的废气中回收CO {sub} 2,CO {sub} 2回收参数(如气体和液体的流速,液体浓度和汽提温度)对燃料电池的影响。在单乙醇胺水溶液填充塔的传质计算模型的基础上,对发动机性能和可获得的CO {sub} 2回收率进行了分析。从发动机排出的热量被用于CO 2的回收,但是不可避免地降低了发动机的输出功率,这主要是由于涡轮增压器功率不足和辅助增压功率所致。可获得的最大CO {sub} 2回收率和发动机输出功率的降低均取决于汽提蒸汽进料速率与废气流量的比例。

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