<p>Set of data was obtained for various NH3/H2 blends using an industrial scale swirl burner with a swirl no, Sg = 1.05. Exhaust emissions was measured by a bespoke state-of-art Quantum Cascade Analyser (CT5100) for various blends for a wide range of equivalence ratios (0.55 - 1.30). Emissions data (NO, NO2, N2O, NH3) at 8 kW thermal power are provided in the 1st four sheets,respectively, titled '8 kW_NO', '8 kW_NO2', '8 kW_N2O' and '8 kW_NH3'. These data sheets also contain simulation predictions conducted by Chemkin. A Blue-wave StellerNet CMOS spectrometer was used to measure the radicals emitted from the previously mentioned blends. This spectrum data is provided in the fifth and sixth sheet, titled, 'Xnh3_0.75' and 'ER_0.65'. <br></p><p>Research results based upon these data are published at <a href="https://doi.org/10.1016/j.energy.2022.125183">https://doi.org/10.1016/j.energy.2022.125183</a><br></p>
Funding
Storage of ammonia for energy (SAFE), AGT pilot (2020-01-06 - 2025-05-02); Valera Medina, Agustin. Funder: Engineering and Physical Sciences Research Council