This book discusses the design methodology for chemical process equipment carrying out heat and mass transfer operations and various types of reactors.

This book discusses the design methodology for chemical process equipment carrying out heat and mass transfer operations and various types of reactors. Process design is an important step before achieving a mechanical design of chemical process equipment. It requires comprehensive knowledge of thermodynamics, fluid flow, heat, and mass transfer operations, and chemical reaction engineering, which is covered by the various chapters in this book. It covers process design of (1) heat exchangers, condensers, and reboilers; (2) packed and stage columns for distillation and gas absorption in chapter; (3) liquid–liquid extractor and solid–liquid leaching systems; (4) cooling towers; and (5) four different types of catalytic reactors, packed bed, fluidized bed, slurry bubble column, and mechanically agitated slurry reactor.

The book emphasizes using correlations and equations in place of design data available in graphical or tabular forms to make it suitable for solving problems using spreadsheets and other software. It includes new correlations if not available in the literature and references to data available on web resources. The book covers all major topics for the course Chemical Process Engineering for undergraduate students and is also helpful in carrying out process design calculations for undergraduate design projects.

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Reviews the design methodology for chemical process equipment for heat and mass transfer operations Presents design equations for mass and heat transfer equipment and reactors in graphical or tabular form Demonstrates examples solved by computer software allowing students to carry out their own process design calculations
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Produktdetaljer

ISBN
9783031648601
Publisert
2025-01-31
Utgiver
Springer International Publishing AG
Høyde
240 mm
Bredde
168 mm
Aldersnivå
Upper undergraduate, UU, 05
Språk
Product language
Engelsk
Format
Product format
Innbundet
Antall sider
34

Forfatter