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【Daily Question】Chemical Engineering Principles 248: Total Driving Force for Absorption (November 29)

2015-11-26View Original

Thread Content

The last edit to this post was made by Zaihui Kangqiao on 2015-12-5 at 14:07. The Chemical Engineering Theory section is now launching a \"One Question per Day\" activity aimed at helping everyone reinforce their basic knowledge in chemical engineering. Subsequent series such as \"Principles of Chemical Engineering,\" \"Mass Transfer and Separation,\" \"Thermodynamics in Chemical Engineering,\" and \"Chemical Process Engineering\" will also be introduced. We hope for your active support! Answers to the questions in the \"One Question per Day\" activity can be viewed directly, and the thread will be closed after 1 day! ! Participation earns 3 wealth points, with an additional 3 wealth points awarded for correct answers~~ Short answer: When the total driving force for absorption is expressed in terms of the gas phase concentration difference, it should equal the difference between __________________ and ________________________________. Molar concentration of the gas phase matrix ; Gas phase concentration in equilibrium with the concentration of the liquid phase matrix
Reply #22015-11-26
When the total driving force for absorption is expressed in terms of the gas-phase concentration difference, it should equal the difference between the molar concentration of the gas phase __ and the gas-phase concentration that is in equilibrium with the concentration in the liquid phase __.
Reply #32015-11-26
When the total driving force for absorption is expressed in terms of the gas-phase concentration difference, it should equal the difference between the _molar concentration in the gas phase_ and the _gas-phase concentration in equilibrium with the concentration in the liquid phase_.
Reply #42015-11-26
When the total driving force for absorption is expressed in terms of the gas-phase concentration difference, it should equal the difference between the _molar concentration of the gas phase in the inlet_ and the _molar concentration of the gas phase in the outlet_.
Reply #52015-11-26
Molar concentration in the gas phase, concentration of the main component in the liquid phase, gas phase concentration at phase equilibrium
Reply #62015-11-26
When the total driving force for absorption is expressed in terms of the gas-phase concentration difference, it should equal the difference between the _molar concentration in the gas phase_ and the _gas-phase concentration in equilibrium with the concentration in the liquid phase_.
Reply #72015-11-26
Short answer: When the total driving force for absorption is expressed in terms of the gas phase concentration difference, it should equal the difference between the molar concentration of the gas phase___________ and the gas phase concentration___________________, which is in equilibrium with the concentration in the liquid phase.
Reply #82015-11-26
When the total driving force for absorption is expressed in terms of the gas-phase concentration difference, it should equal the difference in the molar concentrations of the gas phase components
Reply #92015-11-26
When the total driving force for absorption is expressed in terms of the gas-phase concentration difference, it should equal the difference between the molar concentration of the gas phase ___, and the gas-phase concentration that is in equilibrium with the concentration of the solute in the liquid phase ___.
Reply #102015-11-26
(molar concentration of the gas phase phase) and (gas phase concentration in equilibrium with the concentration of the liquid phase phase)
Reply #112015-11-26
Short answer: When the total driving force for absorption is expressed in terms of the gas phase concentration difference, it should equal the difference between the molar concentration of the gas phase___________ and the gas phase concentration___________________, which is in equilibrium with the concentration in the liquid phase.

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