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Principles Of Chemical Reaction Engineering: A Complete Introduction to Kinetics, Reactor Design, and Catalysis - Softcover

R. REYNER, DANIEL

 
9798174250680: Principles Of Chemical Reaction Engineering: A Complete Introduction to Kinetics, Reactor Design, and Catalysis

Synopsis

A reaction that runs cleanly in a beaker can behave in an entirely different way inside a full-scale reactor, where heat, mixing, and flow all shape the result.

Many students arrive at reaction engineering able to balance equations and calculate equilibrium, yet stall the moment a problem asks how large a reactor must be, how much conversion it will reach, or why its temperature refuses to hold still. The difficulty is seldom the chemistry. It is the missing bridge between what a reaction does and how a vessel must be designed and operated to carry it out on a useful scale, and formulas memorized without their origins rarely survive the first unfamiliar problem.

This comprehensive guide is built to close that gap. Rather than cataloguing equations, it develops the subject from a small number of durable ideas and shows how every design result follows from them. Beginning with the general mole balance and the definition of reaction rate, fifteen carefully ordered chapters carry the reader to the design of real reactors under demanding conditions, with derivations worked in full, key methods illustrated by examples, and practice problems in every chapter.

Inside, you will:

  • Understand how a reaction rate is defined, measured, and written as a rate law

  • Size and design the four ideal reactors, batch, stirred-tank, plug-flow, and packed-bed, for a target conversion

  • Extract reaction order, rate constants, and activation energy from experimental data

  • Manage multiple reactions and selectivity by controlling concentration and temperature

  • Carry out energy balances and analyze stability, runaway, and thermal safety

  • Evaluate catalysis, adsorption, and pore diffusion, and design for nonideal flow using residence time distribution


It is written for junior and senior undergraduates in chemical engineering who have completed material and energy balances, calculus, and elementary thermodynamics. It also serves graduate students reviewing the fundamentals and practicing engineers who want a clear, self-contained path through the subject.

Begin building a clear, connected understanding of how reactions become reactors, and work through the principles, methods, and applications that define kinetics, reactor design, and catalysis.

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