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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >System Analysis of Nuclear-Assisted Syngas Production From Coal
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System Analysis of Nuclear-Assisted Syngas Production From Coal

机译:煤制核辅助合成气的系统分析

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A system analysis has been performed to assess the efficiency and carbon utilization of a nuclear-assisted coal gasification process. The nuclear reactor is a high-temperature helium-cooled reactor that is used primarily to provide power for hydrogen production via high-temperature electrolysis. The supplemental hydrogen is mixed with the outlet stream from an oxygen-blown coal gasifier to produce a hydrogen-rich gas mixture, allowing most of the carbon dioxide to be converted into carbon monoxide, with enough excess hydrogen to produce a syngas product stream with a hydrogen/carbon monoxide molar ratio of about 2:1. Oxygen for the gasifier is also provided by the high-temperature electrolysis process. The results of the analysis predict 90.5% carbon utilization with a syngas production efficiency (defined as the ratio of the heating value of the produced syngas to the sum of the heating value of the coal plus the high-temperature reactor heat input) of 64.4% at a gasifier temperature of 1866 K for the high-moisture-content lignite coal considered. Usage of lower moisture coals such as bituminous can yield carbon utilization approaching 100% and 70% syngas production efficiency.
机译:已经进行了系统分析,以评估核辅助煤气化工艺的效率和碳利用率。核反应堆是高温氦冷却反应堆,主要用于通过高温电解为氢气生产提供动力。将补充的氢气与吹氧煤气化炉的出口物流混合,以产生富氢气体混合物,从而使大部分二氧化碳转化为一氧化碳,同时有足够的过量氢气以产生具有氢/一氧化碳的摩尔比约为2∶1。用于气化器的氧气也由高温电解过程提供。分析结果预测碳利用率为64.4%,合成气生产效率为90.5%(定义为所产生的合成气的热值与煤的热值加高温反应堆热输入之和的比值)。对于高水分褐煤,在1866 K的气化炉温度下进行了研究。使用较低水分的煤(例如烟煤)可使碳利用率接近100%和70%的合成气生产效率。

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