首页> 外文会议>Asia Pacific Conference on Optics Manufacture; 20070111-13; Hongkong(CN) >Integration of Micro Temperature Sensor and Heater in a Stainless Steel-based Micro Reformer
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Integration of Micro Temperature Sensor and Heater in a Stainless Steel-based Micro Reformer

机译:微型温度传感器和加热器集成在不锈钢微型重整器中

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With advances in micro fuel cell development, the production of hydrogen for micro reformer has become increasingly important. However, some problems regarding the micro reformer are yet to be resolved. These include reducing the size, reducing the quantity of CO and combining the fuel cell, among others. Accordingly, in this investigation, a micro temperature sensor and a heater are combined inside a stainless steel-based micro reformer to measure and control the temperature and thus improve performance and minimize the concentration of CO. In this work, micro-electro-mechanical-systems (MEMS) of the micro channel type are fabricated on a stainless steel substrate to enhance the methanol conversion ratio. The micro temperature sensor and heater are made of gold and placed inside the micro reformer. Although the micro temperature sensor and heater have already been used to measure and control temperature in numerous fields, they have not been employed in micro reformer and commercial products. Therefore, this study presents a new approach for integrating a micro temperature sensor and heater in a stainless steel-based micro reformer to minimize the size and improve performance.
机译:随着微型燃料电池开发的进步,用于微型重整器的氢的生产变得越来越重要。然而,关于微重整器的一些问题尚未解决。这些措施包括减小尺寸,减少CO的量以及组合燃料电池等。因此,在这项研究中,将微型温度传感器和加热器组合在基于不锈钢的微型重整器中,以测量和控制温度,从而提高性能并最小化CO的浓度。在这项工作中,微机电装置在不锈钢基板上制造微通道类型的微系统(MEMS),以提高甲醇转化率。微型温度传感器和加热器由金制成,并放置在微型转化炉内。尽管微型温度传感器和加热器已经在许多领域用于测量和控制温度,但是它们尚未用于微型重整器和商业产品中。因此,这项研究提出了一种将微型温度传感器和加热器集成到基于不锈钢的微型重整器中以最小化尺寸并提高性能的新方法。

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