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Gas molecules move into the blood by partitioning, which is a gas-transfer process between two phases, such as between the air and the blood or the blood and the tissues.
The SOLAS air sea gas exchange experiment (SAGE) was a multiple-objective study investigating gas-transfer processes and the influence of iron fertilisation on biologically driven gas exchange in high-nitrate low-silicic acid low-chlorophyll (HNLSiLC) Sub-Antarctic waters characteristic of the expansive subpolar zone of the southern oceans.
The results suggest that for liquid metal irrigated beds, the total hold-up is effective in gas phase transfer processes.
Rotating packed bed (RPB) has owned the significant advantages for gas-liquid mass transfer process intensification.
The volumetric mass transfer coefficient (kLa) is regarded as the transient change value to characterize the gas-liquid mass transfer process of CO2 in water.
The results show that kLa increases with both superficial gas velocity and oscillatory conditions, in two and three-phase systems, the oscillatory conditions being the ones with the highest impact on the gas-liquid mass transfer process.
In the present work, it is studied for the first time the use of an oscillatory flow reactor provided with smooth period constrictions (OFR-SPC) in gas-liquid mass transfer process when a solid phase is present.
As the characteristics of aphron bubbles play a key role on the performance of flotation, the experiments conducted in this work were specially designed to test the effect of gas transfer during aphron generation process.
TheSinceoperthes are used in the secoxidation as a basis fof apyritetinvolvesnumerical simulathen in AMD-produconsumptionrofk piles.
The difference between the experimentally observed particle Nusselt numbers and the theoretically predicted Nusselt numbers based on the Ranz-Marshall equation is probably due to the influence of particle rotation on the gas-to-particle heat transfer process.
The effects of WAR are emphasised for the modelling of the gas properties and the subsequent heat transfer process.
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