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Heat and Mass Transfer for Chemical Engineers: Principles and Applications

Heat and Mass Transfer for Chemical Engineers: Principles and Applications

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Heat and Mass Transfer for Chemical Engineers: Principles and Applications is a concept-based introduction to heat and mass transfer procedures, with comprehensive discussions on conductive and diffusive processes and engineering correlations. It includes Mathematica workbooks for calculations and exploration of trends, and refers to Perry's Chemical Engineers Handbook for data and correlations. Coverage includes introduction to heat and mass transfer, thermal conductivity, heat conduction, convective heat transfer, diffusion, and mass transfer with chemical reaction.

Format: Paperback / softback
Length: 432 pages
Publication date: 20 September 2021
Publisher: McGraw-Hill Education


This comprehensive textbook offers a hands-on approach to understanding heat and mass transfer principles, providing a solid foundation for practical applications in various fields related to chemical and biochemical processing. Authored by a renowned academic and experienced author, Heat and Mass Transfer for Chemical Engineers: Principles and Applications delves into comprehensive discussions on conductive and diffusive processes, offering valuable insights into the engineering correlations between momentum, heat, and mass transfer.

To enhance the learning experience, the book includes Mathematica workbooks that facilitate calculations and help explore trends. It also extensively references Perry's Chemical Engineers' Handbook, Ninth Edition, for comprehensive data and correlations.

The book's coverage spans a wide range of topics, including:

Introduction to heat and mass transfer: This section provides an overview of the fundamental concepts and principles of heat and mass transfer.

Thermal conductivity: It explores the thermal conductivity of materials, which is crucial in understanding heat transfer processes.

Steady-state, one-dimensional heat conduction: It examines the transfer of heat in one dimension, considering factors such as temperature, heat flux, and boundary conditions.

Combined conductive and convective heat transfer: It discusses the combined transfer of heat and mass in various scenarios, including flow through pipes, heat exchangers, and free convection.

Multidimensional and transient heat conduction: It explores the transfer of heat in multiple dimensions and considers the effects of time-dependent variables such as temperature and concentration.

Convective heat transfer: It examines the transfer of heat by convection, including natural convection, forced convection, and radiation.

Thermal design of heat exchangers: It covers the design principles and calculations involved in designing heat exchangers, including shell and tube exchangers, plate exchangers, and packed bed exchangers.

Ficks law and diffusivity: It discusses the Ficks law of diffusion, which describes the movement of molecules across a solid or liquid interface, and the diffusivity of substances in different media.

One-dimensional, multi-dimensional, and transient diffusion: It explores the diffusion of substances in one, two, and three dimensions, considering the effects of geometry, concentration gradients, and boundary conditions.

Convective mass transfer: It examines the transfer of mass in convective flows, including the mass transfer coefficients, Sherwood numbers, and Reynolds numbers.

Design of packed gas absorption and stripping columns: It discusses the design of packed gas absorption and stripping columns used in various chemical processes, such as air separation, gas purification, and solvent extraction.

Multicomponent diffusion and coupled mass transfer processes: It explores the diffusion and mass transfer of multiple components in a mixture, considering the interactions between them and the effects of chemical reactions.

Mass transfer with chemical reaction: It examines the mass transfer processes occurring in chemical reactors, including reaction kinetics, mass transfer coefficients, and reactor design.

By presenting these topics in a clear and concise manner, Heat and Mass Transfer for Chemical Engineers: Principles and Applications equips readers with the knowledge and skills necessary to apply heat and mass transfer principles to real-world chemical engineering problems. Whether you are a student, professional, or researcher in the field, this textbook is an invaluable resource for advancing your understanding of these critical processes and their applications.

Weight: 736g
Dimension: 188 x 235 x 24 (mm)
ISBN-13: 9781264266678

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