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【Daily Question】Chemical Engineering Principles 175: Single-Stage Extraction (September 17)

2015-09-17View Original

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The last edit to this post was made by Zaihui Kangqiao on 2015-9-22 at 10:31. The Chemical Engineering Theory section is now launching a \"One Question per Day\" initiative aimed at helping everyone reinforce their basic knowledge in chemical engineering. Subsequent series will include those on \"Principles of Chemical Engineering\", \"Mass Transfer and Separation\", \"Thermodynamics in Chemical Engineering\", and \"Chemical Process Engineering\". We hope for your active support! Answers to the questions in the \"One Question per Day\" initiative can be viewed directly, and the thread will be closed after 1 day ! Participation earns 2 wealth points, with an additional 3 wealth points for correct answers. Fill-in-the-blank question: In single-stage extraction, if the feed liquid is F, then the greater the amount of solvent used, the more _______ the S point of the mixture becomes; when it reaches __________, the solution turns into a homogeneous phase. Near, on the solubility curve
Reply #22015-09-17
In a single-stage extraction process, where the feed solution is F, the greater the amount of solvent used, the more the mixture’s point approaches point S; when the _solubility curve_ is reached, the solution becomes a homogeneous phase.
Reply #32015-09-17
In a single-stage extraction process, where the feed solution is F, the greater the amount of solvent used, the more the mixture’s point approaches point S; when the ___solubility curve___ is reached, the solution becomes a homogeneous phase.
Reply #42015-09-17
In a single-stage extraction process, where the feed solution is F, the greater the amount of solvent used, the more the mixture’s point approaches point S. When the __solubility curve__ is reached, the solution becomes a homogeneous phase.
Reply #52015-09-17
In a single-stage extraction process, where the feed solution is F, the greater the amount of solvent used, the more the mixture’s point approaches point S; when it reaches the __solubility curve__, the solution becomes a homogeneous phase.
Reply #62015-09-17
In a single-stage extraction process, where the feed solution is F, the greater the amount of solvent used, the more the mixture’s point approaches point S; when the _____solubility curve_____ is reached, the solution becomes a homogeneous phase.
Reply #72015-09-17
In a single-stage extraction process, where the feed solution is F, the greater the amount of solvent used, the closer the mixture’s state becomes to point S; this occurs when the solution on the solubility curve reaches a homogeneous phase.
Reply #82015-09-17
Approaching point __ S, when the _solubility curve is reached, the solution becomes a homogeneous phase
Reply #92015-09-17
In a single-stage extraction process, where the feed solution is F, the greater the amount of solvent used, the closer the mixture’s state becomes to point S; when this point is reached on the solubility curve, the solution becomes a homogeneous phase.
Reply #102015-09-17
In a single-stage extraction process, where the feed solution is F, the greater the amount of solvent used, the more the mixture’s point approaches the S point; when it reaches the ______ on the solubility curve, the solution becomes a homogeneous phase.

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