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Preparation of Synthesis Gas from CO2 for Fischer–Tropsch Synthesis—Comparison of Alternative Process Configurations

机译:来自CO2的合成气的制备Fischer-Tropsch合成 - 替代工艺配置的比较

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摘要

We compare different approaches for the preparation of carbon monoxide-rich synthesis gas (syngas) for Fischer–Tropsch (FT) synthesis from carbon dioxide (CO2) using a self-consistent design and process simulation framework. Three alternative methods for suppling heat to the syngas preparation step are investigated, namely: allothermal from combustion (COMB), autothermal from partial oxidation (POX) and autothermal from electric resistance (ER) heating. In addition, two alternative design approaches for the syngas preparation step are investigated, namely: once-through (OT) and recycle (RC). The combination of these alternatives gives six basic configurations, each characterized by distinctive plant designs that have been individually modelled and analyzed. Carbon efficiencies (from CO2 to FT syncrude) are 50–55% for the OT designs and 65–89% for the RC designs, depending on the heat supply method. Thermal efficiencies (from electricity to FT syncrude) are 33–41% for configurations when using low temperature electrolyzer, and 48–59% when using high temperature electrolyzer. Of the RC designs, both the highest carbon efficiency and thermal efficiency was observed for the ER configuration, followed by POX and COMB configurations.
机译:我们使用自一致的设计和工艺模拟框架,比较用于从二氧化碳(CO2)的Fischer-Tropsch(FT)合成的富含富含富含氧化物的合成气(Syngas)的不同方法。研究了用于为合成气制备步骤提供热量的三种替代方法,即:从燃烧(梳子)的燃烧(梳子),从部分氧化(POX)和电阻(ER)加热自热。此外,研究了合成气制备步骤的两种替代设计方法,即:一次通过(OT)和再循环(RC)。这些替代方案的组合给出了六种基本配置,每个配置都是由独特建模和分析的独特植物设计的特征。碳效率(来自二氧化碳到FT Syncrude)为OT设计为50-55%,而RC设计的65-89%,具体取决于供热法。在使用高温电解槽时,在使用低温电解槽时,散热效率(来自电力至FT Syncrude)为33-41%,以及48-59%。对于RC设计,对于ER配置,观察到最高的碳效率和热效率,其次是POX和梳型配置。

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