Title:    Emissions, spectrum and simulation data for ammonia/hydrogen blends at a wide range of equivalence ratios (0.55 - 1.30): data


Citation
Mashruk S, Valera-Medina A (2022). Emissions, spectrum and simulation data for ammonia/hydrogen blends at a wide range of equivalence ratios (0.55 - 1.30): dataCardiff Universityhttps://doi.org/10.17035/d.2022.0217184646



Access RightsCreative Commons Attribution 4.0 International

Access Method:  https://doi.org/10.17035/d.2022.0217184646 will take you to the repository page for this dataset, where you will be able to download the data or find further access information, as appropriate.


Cardiff University Dataset Creators


Dataset Details

PublisherCardiff University

Date (year) of data becoming publicly available2022

Coverage start date01/10/2021

Coverage end date15/01/2022

Data format.xlsx

Software RequiredExcel

Estimated total storage size of datasetLess than 100 megabytes

DOI 10.17035/d.2022.0217184646

DOI URLhttp://doi.org/10.17035/d.2022.0217184646


Description

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'. 

Research results based upon these data are published at https://doi.org/10.1016/j.energy.2022.125183


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Last updated on 2022-08-12 at 09:36