DOE OSTI · 2339577
Fiber-Based Distributed Hydrogen Measurement at High Temperatures
Abstract
In this work, we discuss the implementation of evanescent field optical fiber sensors for distributed gas sensing of H2, focusing on results using a Ni / Gd-doped CeO2 nanocomposite sensing material for detection of low levels of H2 (0-4%) at 700 °C. This approach utilizes sensors prepared using a low-cost, wet chemical deposition process, in conjunction with a custom-built interrogator system leveraging optical time domain reflectometry (OTDR). Using a specially designed dual-gas flow reactor system, the sensor is tested by establishing a controlled equilibrium gradient of gas concentration. Initial results are shown using silica fiber, but provides a pathway for utilization with high temperature stable single crystal optical fiber for operation at higher temperatures and higher levels of H2 relevant for solid oxide fuel cell (SOFC) operating conditions.
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Wuenschell, Jeffrey, Jee, Youngseok, Lander, Gary, Lim, Geunsik, Buric, Michael. 2024-04-21. Fiber-Based Distributed Hydrogen Measurement at High Temperatures. https://www.osti.gov/biblio/2339577
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