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High efficiency and low carbon monoxide micro-scale methanol processors

机译:高效低碳一氧化碳微型甲醇处理器

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A micro-scale power supply is being developed to provide an alternative to current secondary batteries for use in microelectronics devices, such as microsensors. The work discussed in this paper expands on this earlier reported sub-watt power generation system. Two designs were evaluated: a processor optimized to improve the thermal efficiency of the methanol reforming reactor from 9 to above 20%, and a system tailored to decrease the carbon monoxide levels to below 500 ppm, preferably lower than 100 ppm. Each design was operated over a range of feed flow rates. Thermal efficiencies up to 33% were demonstrated with the optimized processor, likely as a result of the low operating temperature, high methanol concentration (~60 wt.%) in the feed, and the high hydrogen production. Up to 3.55 sccm hydrogen was produced with relatively low carbon monoxide. In the second design, significant decreases in carbon monoxide, in some cases below 100 ppm, were achieved while maintaining reasonable thermal efficiencies of up to 19%.
机译:正在开发一种微型电源,以提供用于诸如微传感器之类的微电子设备中的当前二次电池的替代品。本文讨论的工作扩展了该较早报道的亚瓦特发电系统。评估了两个设计:优化以将甲醇重整反应器的热效率从9%提高到20%以上的处理器,以及经定制以将一氧化碳含量降低至500 ppm以下,优选低于100 ppm的系统。每种设计均在一定的进料流速范围内运行。优化的处理器显示出高达33%的热效率,这可能是由于工作温度低,进料中甲醇浓度高(约60 wt。%)和氢气产量高所致。用相对较低的一氧化碳可生产高达3.55 sccm的氢气。在第二种设计中,一氧化碳显着降低(在某些情况下低于100 ppm),同时保持了高达19%的合理热效率。

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