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- W2327141331 abstract "The potential of ammonia (NH3)-hydrogen (H2) blends as a carbon-free fuel in a microthermophotovoltaic (micro-TPV) device integrated with a micro-reformer is evaluated experimentally. A micro-emitter as a thermal heat source is a simple cylinder with an annular-type shield to adopt a heat-recirculation concept and an expanded exhaust outlet to control ignition, which provides stable burning in a small confinement and uniform distribution of temperature along the outer wall. The micro-emitter is surrounded with a micro-reformer for converting NH3 to H2 using ruthenium as a catalyst. The micro-reformer is surrounded by a chamber, the inner and outer walls of which have installations of gallium antimonide (GaSb) photovoltaic cells and cooling fins, respectively. Under optimized design and operating conditions, the micro-TPV device integrated with the micro-reformer shows the emitter efficiency up to 37 % with the maximum temperature of the micro-emitter outer surface up to 1468 K and the conversion rate of NH3 to H2 up to 96.0% in the microreformer. Thus, the feasibility of using NH3-H2 blends in practical micro power and H2 generation devices has been demonstrated, implying the potential of partial NH3 substitution to improve the safety of pure H2 use with no carbon generation." @default.
- W2327141331 created "2016-06-24" @default.
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- W2327141331 date "2013-07-12" @default.
- W2327141331 modified "2023-09-23" @default.
- W2327141331 title "An Ammonia/Hydrogen-Fueled Micro-Thermophotovoltaic Device Integrated with a Micro-reformer" @default.
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- W2327141331 doi "https://doi.org/10.2514/6.2013-3612" @default.
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