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- W2610837879 abstract "Measurements of NO concentration and temperature in laminar, premixed, natural-gas/air flames stabilized on a water-cooled sinter burner at atmospheric pressure are reported. The NO concentration and temperature, determined by laser-induced fluorescence and coherent anti-Stokes Raman scattering, respectively, are seen to vary with exit velocity of the fuel-air mixture and thereby with the degree of heat transfer upstream to the burner. For lean and stoichiometric flames, the NO concentration decreases rapidly with increased stabilization, as the contribution from the zeldovich mechanism is diminished. Further, near extinction, these flames exhibit a finite NO concentration (12±2 ppm at =1 and 2±2 ppm at =0.85), ascribed to the Fenimore mechanism that form a lower limit to NO x control strategies based on upstream heat loss, such as radiant surface combustion. Measurements on fuel-rich flames at equivalence ratios of 1.3 and 1.4 also show a strong dependence on exit velocity, allowing for the possibility of operating low-NO x radiant surface burners under fuel-rich conditions. The results are compared with those from one-dimensional flame calculations to gain more insight into the processes involved. Whereas the fuel-lean and stoichiometric flames appear to be well understood, the origin of the decrease in NO concentration with increasing stabilization in the fuel-rich flames is unclear. In addition, the practical implications of the results are discussed." @default.
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- W2610837879 date "1996-01-01" @default.
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- W2610837879 title "A lif and cars study of the effects of upstream heat loss on no formation from laminar premixed burner-stabilized natural-gas/air flames" @default.
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- W2610837879 doi "https://doi.org/10.1016/s0082-0784(96)80040-3" @default.
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