Modeling of Chemical Kinetics and Reactor Design (2 SUB)

Modeling of Chemical Kinetics and Reactor Design (2 SUB)

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  • 製本 Hardcover:ハードカバー版/ページ数 1096 p.
  • 言語 ENG
  • 商品コード 9780884154815
  • DDC分類 660.281

Full Description


Selecting the best type of reactor for any particular chemical reaction, taking into consideration safety, hazard analysis, scale-up, and many other factors is essential to any industrial problem. An understanding of chemical reaction kinetics and the design of chemical reactors is key to the success of the chemist and the chemical engineer in such an endeavor. This valuable reference volume conveys a basic understanding of chemical reactor design methodologies, incorporating control, hazard analysis, and other topics not covered in similar texts. In addition to covering fluid mixing, the treatment of wastewater, and chemical reactor modeling, the author includes sections on safety in chemical reaction and scale-up, two topics that are often neglected or overlooked. As a real-world introduction to the modeling of chemical kinetics and reactor design, the author includes a case study on ammonia synthesis that is integrated throughout the text. The text also features an accompanying CD, which contains computer programs developed to solve modeling problems using numerical methods.Students, chemists, technologists, and chemical engineers will all benefit from this comprehensive volume. It shows readers how to select the best reactor design, hazard analysis, and safety in design methodology. It features computer programs developed to solve modeling problems using numerical methods.

Contents

Reaction Mechanisms And Rate Expressions; Thermodynamics Of Chemical Reactions; Reaction Rate Expression; Industrial And Laboratory Reactors; Introduction To Reactor Design Fundamentals For Ideal Systems; Non-Isothermal Reactors; Fluid Mixing In Reactors; Residence Time Distributions In Flow Reactors; Models For Non-Ideal Systems; Application Of Computational Fluid Dynamics And Computational Fluid Mixing In Reactors; Biochemical Reaction; Safety In Chemical Reaction Engineering; Scale-Up In Reactor Design