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- W2975762309 abstract "To address the challenges involved in industrial energy efficiency improvement and tightening of emission requirements, we have made efforts in areas of both design and technology toward the development of a W-type regenerative radiant tube burner that can be adapted to heat treatment furnaces. This design comprises several features of air staging, air swirling, and plasma-assisted combustion technology to improve performance and minimize NOx emissions. Using response surface methodology (RSM), an optimal experimental design was adopted and resulting data was subjected to analysis of variance (ANOVA) to examine the significance of the operating parameters, including excess air ratio and switching time. Interactions between variables were statistically validated. The results illustrate that the radiant tube can significantly reduce the temperature deviation and induce uniform temperature distribution on the furnace wall. ANOVA analysis showed that the process, properly represented by a second-order polynomial model, was significant (p < 0.0001) for all responses. It was also shown that both factors (excess air ratio and switching time) had significant effects on NOx emissions and heat recovery efficiency (p < 0.005). The estimated optimal conditions for improved NOx emission and heat recovery efficiency were 1.15 excess air ratio and 35 s switching time, representing NOx emission and efficiency of approximately 24.7 ppm @ 11% O2 and 85.94%, respectively. Not only in terms of modelling but also from a practical perspective this study addresses the pressing need for the heat treatment industry to adopt air staging, air swirling, and plasma-assisted combustion in the radiant tube burner, which processes can ensure high heat recovery efficiency and low NOx emissions." @default.
- W2975762309 created "2019-10-03" @default.
- W2975762309 creator A5023933006 @default.
- W2975762309 creator A5057411486 @default.
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- W2975762309 date "2020-01-01" @default.
- W2975762309 modified "2023-09-30" @default.
- W2975762309 title "Use of response surface methodology to optimize NOx emissions and efficiency of W-type regenerative radiant tube burner under plasma-assisted combustion" @default.
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- W2975762309 doi "https://doi.org/10.1016/j.jclepro.2019.118626" @default.
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