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- W3202846191 endingPage "119891" @default.
- W3202846191 startingPage "119891" @default.
- W3202846191 abstract "The mass transfer performance of CO2 is an index for the design of CO2 capture equipment. In this study, the mass transfer characteristics of CO2 in the blade unit of a tridimensional rotational flow sieve tray (TRST) were investigated using a CO2–NaOH system. The rotational and perforated flow modes were separated experimentally, and the rotational flow ratio of the gas phase at the outlets was controlled such that the flow characteristics of the blade unit were similar to those of the TRST. The effects of the gas-phase artificial rotational flow ratio (Rctrl), gas-phase F-factor (Fs), and liquid spray density (LW) on the overall volumetric mass transfer coefficients of the rotational and perforated flows ([KGaV]rot, [KGaV]per), as well as the overall volumetric mass transfer coefficient of the total process ([KGaV]tot), were investigated. The results showed that under the experimental conditions, [KGaV]rot increased with Rctrl and LW. Fs did not significantly affect [KGaV]per, whereas [KGaV]per increased with LW, reaching a maximum value of 0.00194 kmol/(m3∙s∙kPa). The mass transfer processes of the two flow modes are complementary. When Rctrl is 0.5, [KGaV]tot is optimal at 0.0023 kmol/(m3∙s∙kPa). This study lays a theoretical foundation for the optimal design of TRSTs." @default.
- W3202846191 created "2021-10-11" @default.
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- W3202846191 date "2022-01-01" @default.
- W3202846191 modified "2023-10-18" @default.
- W3202846191 title "Experimental study on CO2 mass transfer in blade unit of tridimensional rotational flow sieve tray" @default.
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- W3202846191 doi "https://doi.org/10.1016/j.seppur.2021.119891" @default.
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