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Application of Flexible Micro Temperature Sensor in Oxidative Steam Reforming by a Methanol Micro Reformer

机译:柔性微温度传感器在甲醇微重整器氧化重整中的应用

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摘要

Advances in fuel cell applications reflect the ability of reformers to produce hydrogen. This work presents a flexible micro temperature sensor that is fabricated based on micro-electro-mechanical systems (MEMS) technology and integrated into a flat micro methanol reformer to observe the conditions inside that reformer. The micro temperature sensor has higher accuracy and sensitivity than a conventionally adopted thermocouple. Despite various micro temperature sensor applications, integrated micro reformers are still relatively new. This work proposes a novel method for integrating micro methanol reformers and micro temperature sensors, subsequently increasing the methanol conversion rate and the hydrogen production rate by varying the fuel supply rate and the water/methanol ratio. Importantly, the proposed micro temperature sensor adequately controls the interior temperature during oxidative steam reforming of methanol (OSRM), with the relevant parameters optimized as well.
机译:燃料电池应用的进步反映了重整器生产氢气的能力。这项工作提出了一种基于微机电系统(MEMS)技术制造的柔性微温度传感器,并将其集成到平板式微甲醇重整器中以观察该重整器内部的状况。微型温度传感器比传统采用的热电偶具有更高的精度和灵敏度。尽管有各种微型温度传感器应用,但集成的微型重整器仍然相对较新。这项工作提出了一种集成微型甲醇重整器和微型温度传感器的新方法,随后通过改变燃料供应速率和水/甲醇比来提高甲醇转化率和制氢率。重要的是,建议的微型温度传感器在甲醇氧化蒸汽重整(OSRM)期间充分控制了内部温度,同时优化了相关参数。

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