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This post was last edited by “Back to Cambridge” on December 5, 2015, at 14:06. Starting today, the Chemical Engineering Theory section is launching the “Question of the Day” activity, aimed at helping everyone reinforce their basic knowledge of chemical engineering. Subsequently, series such as “Fundamentals of Chemical Engineering”, “Mass Transfer and Separation”, “Chemical Thermodynamics”, and “Chemical Process Technology” will also be introduced. We hope for your active participation! For replies to the “Question of the Day” activity, answers can be viewed directly; however, the thread will be closed after one day ! Participation earns 3 wealth points, with an additional 3 wealth points for correct answers. Short answer: Since the partial pressure of the solute in the gas phase during the absorption process is always ____ greater than the equilibrium partial pressure of the solute in the liquid phase, the absorption operation line is always located ____ relative to the equilibrium line. Greater than Above
Since the total solute partial pressure in the gas phase during the absorption process is always _greater than_ the equilibrium solute partial pressure in the liquid phase, the absorption operation line is always located _above_ the equilibrium line.
Since the total solute partial pressure in the gas phase during the absorption process is always _greater than_ the equilibrium solute partial pressure in the liquid phase, the absorption operation line is always _above_ the equilibrium line.
Since the total solute partial pressure in the gas phase during the absorption process is always _greater than_ the equilibrium solute partial pressure in the liquid phase, the absorption operation line is always _above_ the equilibrium line.
Since the total solute partial pressure in the gas phase during the absorption process is always _greater than_ the equilibrium solute partial pressure in the liquid phase, the absorption operation line is always _above_ the equilibrium line.
----Greater than -------- above.
Short answer: Since the partial pressure of the solute in the gas phase during the absorption process is always _greater than_ the equilibrium partial pressure of the solute in the liquid phase, the absorption operation line is always located _above_ the equilibrium line.
Since the solute partial pressure in the gas phase during the absorption process is always (greater than) the equilibrium partial pressure of the solute in the liquid phase, the operating line for the absorption process is always (above) its equilibrium line
Since the total solute partial pressure in the gas phase during the absorption process is always _greater than_ the equilibrium solute partial pressure in the liquid phase, the absorption operation line is always located _above_ the equilibrium line.
Short answer: Since the partial pressure of the solute in the gas phase during the absorption process is always _greater than_ the equilibrium partial pressure of the solute in the liquid phase, the absorption operation line is always located _above_ the equilibrium line.