By Uzi Mann(auth.)
An leading edge technique that is helping scholars circulate from the school room to expert perform
This text offers a complete, unified technique to investigate and layout chemical reactors, utilizing a reaction-based layout formula instead of the typical species-based layout formula. The book's acclaimed strategy addresses the weaknesses of present pedagogy via giving readers the data and instruments had to handle the technical demanding situations they are going to face in perform.
Principles of Chemical Reactor research and Design prepares readers to layout and function actual chemical reactors and to troubleshoot any technical difficulties that can come up. The text's unified technique is acceptable to either unmarried and a number of chemical reactions, to all reactor configurations, and to all sorts of fee expression. this article additionally . . .
- Describes reactor operations by way of dimensionless layout equations, producing dimensionless working curves that depict the development of person chemical reactions, the composition of species, and the temperature.
Combines all parameters that impact warmth move right into a unmarried dimensionless quantity that may be anticipated a priori.
debts for all diversifications within the warmth capability of the reacting fluid.
Develops an entire framework for economic-based optimization of reactor operations.
difficulties on the finish of every bankruptcy are labeled via their point of hassle from one to 4, giving readers the chance to check and boost their abilities.
Graduate and complex undergraduate chemical engineering scholars will locate that this text's unified method higher prepares them for pro perform by means of educating them the particular abilities had to layout and research chemical reactors.Content:
Chapter 1 review of Chemical response Engineering (pages 1–24):
Chapter 2 Stoichiometry (pages 25–79):
Chapter three Chemical Kinetics (pages 81–99):
Chapter four Species Balances and layout Equations (pages 101–129):
Chapter five strength Balances (pages 131–158):
Chapter 6 perfect Batch Reactor (pages 159–238):
Chapter 7 Plug?Flow Reactor (pages 239–316):
Chapter eight non-stop Stirred?Tank Reactor (pages 317–376):
Chapter nine different Reactor Configurations (pages 377–439):
Chapter 10 Economic?Based Optimization (pages 441–454):
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Extra info for Principles of Chemical Reactor Analysis and Design: New Tools for Industrial Chemical Reactor Operations, Second Edition
4 COMMON PRACTICES Inherently, the selection and design of a chemical reactor are made iteratively because, in many instances, the global reaction rates are not known a priori. In 16 OVERVIEW OF CHEMICAL REACTION ENGINEERING fact, the flow patterns of reacting fluid (which affect the global rates) can be estimated only after the reactor vessel has been specified and the operating conditions have been selected. This section provides a review of commonly used practices. 1 Experimental Reactors Often the kinetics of the chemical reaction and whether or not the reaction rate is affected by transport limitation are not known a priori.
3, the diagonal element in the first row is nonzero, and, to eliminate the entry below it, we add the first row to the second row and obtain " À1 0 À1 1 1 0 0 0 # (2:4:5) In general, when the diagonal element is zero, we replace it (if possible) with a nonzero element by interchanging the row with a lower row. We repeat the procedure for the diagonal element in the second column, then the third column, and so on until we obtain a reduced matrix. 5, all the elements below the diagonal are zero, therefore, it is a reduced matrix.
As we will see later, this parameter is extremely useful in the design formulation of chemical reactors because it enables us to express the changes in the total number of moles in the reactor. The following points concerning stoichiometry are worth noting: 1. 3. 2. The mathematical condition for a balanced chemical reaction is J X s j (MW j ) ¼ 0 j ¼ A, B, . . (2:2:6) j where sj and MWj are, respectively, the stoichiometric coefficient and the molecular mass of species j. 3. 2). 4. The numerical values of the species’ coefficients of the reaction depend on the specific chemical formula selected.