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首页> 外文期刊>International journal of hydrogen energy >Characterization of a selective, zero power sensor for distributed sensing of hydrogen in energy applications
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Characterization of a selective, zero power sensor for distributed sensing of hydrogen in energy applications

机译:选择性,零功率传感器的表征,用于能源应用中氢的分布式感测

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The use of hydrogen as a clean and renewable energy source is increasing rapidly for both vehicle and stationary applications. There are safety concerns for the locations in which hydrogen is made, used, and transported (i.e., pipelines and tanker trucks). Sensors are needed to comply with safety regulations and to enable a smooth and safe rollout of hydrogen as an alternative energy. However, hydrogen sensors do not yet exist that have the combined features of small size and low power for easy deployment coupled with high-volume manufacturability and low cost. This is necessary to accommodate the emerging fixed and mobile markets while retaining critical metrological metrics, including mea-surement range, detection limits, selectivity, fast response, stability, and long lifetime. An amperometric gas sensor for hydrogen (AGS) has been developed using an innovative manufacturing method. The sensor was designed using scalable fabrication strategies based on "Printed Electronics" (PE) methodology which are compatible with large-scale production. Prototype sensors were batch fabricated with multiple individual elements on a substrate compatible in size with a standard 8-inch wafer to enable high-volume, low-cost manufacturing, thereby leveraging PE and semiconductor fabrication infrastructure. This novel AGS was instrumented with control circuitry and evaluated for hydrogen detection in the range of 0-5000 ppmv H2 in air. Specific performance evaluations included assessment of the sensor measurement range, repeatability, and selectivity. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:对于诸如车辆和静止应用,使用氢气作为清洁和可再生能源的使用正在迅速增加。对于制造,使用和运输氢气(即,管道和油轮卡车),存在安全性问题。需要传感器来遵守安全规定,并使氢气平滑和安全的氢气推出作为替代能量。然而,氢传感器尚不存在,具有小尺寸和低功耗的组合特征,便于展开,耦合高容量的可制造性和低成本。这是为了容纳新出现的固定和移动市场,同时保留关键的计量指标,包括测量测量范围,检测限,选择性,快速响应,稳定性和长寿命。使用创新的制造方法开发了一种用于氢气(AGS)的氢气(AGS)的流量测定气体传感器。该传感器使用基于“印刷电子产品”(PE)方法的可扩展制造策略设计,这些方法与大规模生产兼容。原型传感器是用具有标准8英寸晶片的衬底上兼容的基板上的多个单独元素制造的批料,以实现高容量,低成本的制造,从而利用PE和半导体制造基础设施。该新型AGS用控制电路仪表用,并在空气中评价氢检测在0-5000ppmV H2的范围内。具体的性能评估包括对传感器测量范围,可重复性和选择性的评估。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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