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[×ÊÔ´] Introduction to Chemical Reaction Engineering and Kinetics

Introduction to Chemical Reaction Engineering and Kinetics

Title: Introduction to Chemical Reaction Engineering and Kinetics
Author: Ronald W. Missen, Charles A. Mims, Bradley A. Saville,
Publisher: Wiley
Publication Date: 1998-12-17
Number Of Pages: 700
Average Amazon Rating: 3.0

Book Description

Solving problems in chemical reaction engineering and kinetics is now easier than ever! As students read through this text, they'll find a comprehensive, introductory treatment of reactors for single-phase and multiphase systems that exposes them to a broad range of reactors and key design features. They'll gain valuable insight on reaction kinetics in relation to chemical reactor design. They will also utilize a special software package that helps them quickly solve systems of algebraic and differential equations, and perform parameter estimation, which gives them more time for analysis. Key Features Thorough coverage is provided on the relevant principles of kinetics in order to develop better designs of chemical reactors. E-Z Solve software, on CD-ROM, is included with the text. By utilizing this software, students can have more time to focus on the development of design models and on the interpretation of calculated results. The software also facilitates exploration and discussion of realistic, industrial design problems. More than 500 worked examples and end-of-chapter problems are included to help students learn how to apply the theory to solve design problems. A web site, www.wiley.com/college/missen, provides additional resources including sample files, demonstrations, and a description of the E-Z Solve software.

Book Info

Written primarily for a first course in chemical reaction engineering (CRE) for undergraduate students in chemical engineering. Provides students with a thorough introduction to the fundamental aspects of chemical reactor analysis & design. CD-ROM included. DLC: Chemical reactors.

Table of Contents

1 Introduction 1
2 Kinetics and Ideal Reactor Models 25
3 Experimental Methods in Kinetics: Measurement of Rate of Reaction 42
4 Development of the Rate Law for a Simple System 64
5 Complex Systems 87
6 Fundamentals of Reaction Rates 115
7 Homogeneous Reaction Mechanisms and Rate Laws 154
8 Catalysis and Catalytic Reactions 176
9 Multiphase Reacting Systems 224
10 Biochemical Reactions: Enzyme Kinetics 261
11 Preliminary Considerations in Chemical Reaction Engineering 279
12 Batch Reactors (BR) 294
13 Ideal Flow 317
14 Continuous Stirred-Tank Reactors (CSTR) 335
15 Plug Flow Reactors (PFR) 365
16 Laminar Flow Reactors (LFR) 393
17 Comparisons and Combinations of Ideal Reactors 402
18 Complex Reactions in Ideal Reactors 422
19 Nonideal Flow 453
20 Reactor Performance with Nonideal Flow 495
21 Fixed-Bed Catalytic Reactors for Fluid-Solid Reactions 512
22 Reactors for Fluid-Solid (Noncatalytic) Reactions 552
23 Fluidized-Bed and Other Moving-Particle Reactors for Fluid-Solid Reactions 569
24 Reactors for Fluid-Fluid Reactions 599
App. A 623
App. B: Bibliography 625
App. C: Answers to Selected Problems 627
App. D Use of E-Z Solve for Equation Solving and Parameter Estimation 635
Nomenclature 643
References 652
Indexes 657


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[ Last edited by ¼Ñâù on 2009-5-18 at 20:04 ]
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