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TRACE LEVEL SULFUR SENSOR FOR FUEL CELLS

机译:燃料电池用微量硫传感器

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The primary objective of this work is to develop a trace level sulfur sensor for high sensitivity detection of impurities before they reach hydrogen fuel cell membranes. A novel sensing mechanism, "hybrid plasmon damping", was explored to detect and quantify the sulfur traces in hydrogen fuels using the spectral shifts that is generated by the interaction of silver nanoparticles and sulfur compounds. We have investigated the sensor technology for detection of sulfur compounds to the part per billion (ppb) trace levels that are typically present in hydrogen fuels, and demonstrated this unique sensing mechanism through bench top experimental set ups and analysis methods.
机译:这项工作的主要目的是开发一种痕量硫传感器,用于在杂质到达氢燃料电池膜之前进行高灵敏度检测。探索了一种新型的感应机制“混合等离子体激元阻尼”,利用银纳米颗粒和硫化合物的相互作用所产生的光谱位移来检测和量化氢燃料中的硫痕迹。我们已经研究了用于检测硫化合物的传感器技术,该检测技术可检测到氢燃料中通常存在的十亿分之一(ppb)痕量水平,并通过台式实验装置和分析方法论证了这种独特的传感机制。

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