HCBBS Forum (English)
Submit Chemical Projects / Find Solutions
Amplify Your Requirements on a Broader Chemical Platform *Engineering · Technology · Equipment · Solutions*
Submit Request

【Daily Question】Chemical Engineering Principles 217: Distillation Equilibrium Lines (October 29)

2015-10-29View Original

Thread Content

The Chemical Engineering Theory section is launching the \"One Question per Day\" campaign starting today, aimed at helping everyone reinforce their basic knowledge of 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 you will give it your active support! Answers to the questions in the \"One Question per Day\" campaign can be viewed directly by replying to the post, and the thread will be closed after 1 day ! Participation earns 3 wealth points, with an additional 3 wealth points for correct answers. True or False: If the distillation equilibrium line is in the upper left part of the diagonal, separation can be achieved using distillation; if it is in the lower right part of the diagonal, then distillation cannot be used for separation. ( ) Wrong
Reply #22015-10-29
Error--------------------------------------------
Reply #32015-10-29
The distillation equilibrium line is located in the upper left part of the diagonal; in such cases, separation can be achieved using distillation. If the equilibrium line is in the lower right part of the diagonal, then separation cannot be accomplished by distillation. ( x )
Reply #42015-10-29
The distillation equilibrium line is located in the upper left part of the diagonal; in such cases, separation can be achieved using distillation. If the equilibrium line is in the lower right part of the diagonal, then separation cannot be accomplished by distillation. Error
Reply #52015-10-29
The answer to this question is incorrect; the farther apart the vapor line and the liquid line are, the easier it is to separate the system. If the vapor line and the liquid line coincide, then separation is not possible. Systems that cannot be separated by distillation have a relative volatility of 1.
Reply #62015-10-29
The distillation equilibrium line is located in the upper left part of the diagonal; in such cases, separation can be achieved using distillation. If the equilibrium line is in the lower right part of the diagonal, then separation cannot be accomplished by distillation. (Mistake)
Reply #72015-10-29
If the distillation equilibrium line is in the upper left part of the diagonal, separation by distillation is possible; if it is in the lower right part of the diagonal, then separation by distillation is not possible... Incorrect
Reply #82015-10-29
The distillation equilibrium line is located in the upper left part of the diagonal; in such cases, separation can be achieved using distillation. If the equilibrium line is in the lower right part of the diagonal, then separation cannot be accomplished by distillation. ( Wrong )
Reply #92015-10-29
The distillation equilibrium line is located in the upper left part of the diagonal; in such cases, separation can be achieved using distillation. If the equilibrium line is in the lower right part of the diagonal, then separation cannot be accomplished by distillation. ( × )

Submit a Project

**Looking for Chemical Technology, Equipment & Solutions?** No Registration Required Broader Platform Exposure | Global Chemical Service Provider Connections

Submit Request — Free Consultation

Disclaimer

This is an automated machine translation of the original thread. Some technical terms may have inaccuracies; the original text shall prevail. Click "View Original" at the top right to access the source page, which supports IP-based automatic real-time language translation. Please watch out for contact details and sales inducements to prevent fraud. All content and translations are for reference only, representing solely the poster's personal views. For enquiries, email service@hcbbs.com.