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Analysis of a heat recirculating cooler for fuel gas sulfur removal in solid oxide fuel cells

机译:固体氧化物燃料电池中用于去除燃气中硫的热循环冷却器的分析

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摘要

When using conventional fossil fuels, most fuel cell systems require sulfur removal as part of their fuel processing. A novel approach to enable conventional sulfur removal in high-temperature fuel processing is presented. Using established principles from heat-recirculating combustors, it is suggested that high-temperature syngas can be momentarily cooled to conditions that would permit conventional sulfur removal to be carried out at relatively low temperatures. The recirculated heat is then used to heat the gas back to conditions that are minimally less than the original temperature. A model for evaluating the performance of this concept is presented, and calculations suggest that relative to fuel cell applications, reasonable physical dimensions can be expected in actual applications. For high-pressure syngas (i.e., coal gasification), the physical dimensions will rise with the operating pressure.
机译:当使用常规的化石燃料时,大多数燃料电池系统需要脱硫作为燃料处理的一部分。提出了一种在高温燃料加工中能够常规脱硫的新颖方法。使用来自热循环燃烧器的既定原理,建议可以将高温合成气暂时冷却至可以在相对较低的温度下进行常规脱硫的条件。然后,将再循环的热量用于将气体加热回最小低于原始温度的条件。提出了评估该概念性能的模型,计算表明相对于燃料电池应用,在实际应用中可以预期合理的物理尺寸。对于高压合成气(即煤气化),其物理尺寸将随工作压力而升高。

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