Introduction to Catalytic Combustion
by
R.E. Hayes
Book Details
Format
Hardback or Cased Book
ISBN-10
9056990926
ISBN-13
9789056990923
Publisher
Taylor & Francis Ltd
Imprint
Taylor & Francis Ltd
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jan 26th, 1998
Print length
714 Pages
Weight
1,372 grams
Dimensions
18.30 x 25.40 x 4.50 cms
Product Classification:
CatalysisBiochemical engineering
Ksh 66,600.00
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In a clear and concise manner, this text explains how to apply concepts in chemical reaction engineering and transport phenomena to the design of catalytic combustion systems. It uses stationary gas turbines, process fluid heaters and radiant heaters as examples that cover much of the area where research is currently most active.
In a clear and concise manner, this book explains how to apply concepts in chemical reaction engineering and transport phenomena to the design of catalytic combustion systems. Although there are many textbooks on the subject of chemical reaction engineering, catalytic combustion is mentioned either only briefly or not at all.
The authors have chosen three examples where catalytic combustion is utilized as a primary combustion process and natural gas is used as a fuel - stationary gas turbines, process fluid heaters, and radiant heaters; these cover much of the area where research is currently most active. In each of these there are clear environmental benefits to be gained illustrating catalytic combustion as a "cleaner primary combustion process" . The dominant heat transfer processes in each of the applications are different, as are the support systems, flow geometrics and operating conditions.
The authors have chosen three examples where catalytic combustion is utilized as a primary combustion process and natural gas is used as a fuel - stationary gas turbines, process fluid heaters, and radiant heaters; these cover much of the area where research is currently most active. In each of these there are clear environmental benefits to be gained illustrating catalytic combustion as a "cleaner primary combustion process" . The dominant heat transfer processes in each of the applications are different, as are the support systems, flow geometrics and operating conditions.
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