Distillation Design/Related Articles: Difference between revisions
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==Other related topics== | ==Other related topics== | ||
{{r|Continuous distillation}} | |||
{{r|Fenske equation}} | |||
{{r|McCabe-Thiele method}} | |||
{{r|Perry's Chemical Engineers' Handbook}} | {{r|Perry's Chemical Engineers' Handbook}} | ||
{{r|Relative volatility}} | |||
{{r|Unit Operations of Chemical Engineering}} | {{r|Unit Operations of Chemical Engineering}} | ||
Revision as of 20:01, 22 July 2008
- See also changes related to Distillation Design, or pages that link to Distillation Design or to this page or whose text contains "Distillation Design".
Parent topic
- Chemical engineering [r]: a branch of engineering that uses chemistry, biology, physics, and math to solve problems involving fuel, drugs, food, and many other products [e]
- Continuous distillation [r]: An ongoing separation process in which a liquid mixture of two or more miscible components is continuously fed into the process and physically separated into two or more products by preferentially boiling the more volatile (i.e., lower boiling point) components out of the mixture. [e]
- Fenske equation [r]: An equation for calculating the minimum number of theoretical plates needed to separate a binary feed stream by a fractionation column operated at total reflux (i.e., meaning that no overhead product is being withdrawn from the column). [e]
- McCabe-Thiele method [r]: A graphical method considered to be the simplest, most instructive method for the analysis of binary distillation. [e]
- Perry's Chemical Engineers' Handbook [r]: The eighth edition of a chemical engineering reference book that has been a classic for more than seventy years. [e]
- Relative volatility [r]: A measure that compares the vapor pressures of components in a liquid mixture that is widely used in designing distillation and similar separation processes. [e]
- Unit Operations of Chemical Engineering [r]: First published in 1956, this is the seventh edition of one of the oldest chemical enginering textbooks still in widespread use. [e]