Waste minimization is an important element of sustainable development. It is concerned with environmental protection and with the reduction of production costs by the reduction of waste at source and by recycling. This guide provides an introduction to the many practical techniques which can be implemented to minimize waste, ranging from simple good housekeeping practice to sophisticated computational and life cycle methods. The book also provides a widely-accepted methodology which can be followed to ensure that waste minimization programmes and projects are successfully implemented.
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.
Full of examples based on case studies from a variety of industries, Computer Simulated Plant Design for Waste Minimization/Pollution Prevention discusses preventing pollution and minimizing waste using computer simulation programs. The author examines the computer technologies used in the field, including the design and analysis of computer-aided flow sheets. With this book, readers will understand how to use computer technology to design plants that generate little or no pollution and how to use information generated by computer simulations for technical data in proposals and presentations and as the basis for making policy decisions.
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.
Waste minimization is an important element of sustainable development. It is concerned with environmental protection and with the reduction of production costs by the reduction of waste at source and by recycling. This guide provides an introduction to the many practical techniques which can be implemented to minimize waste, ranging from simple good housekeeping practice to sophisticated computational and life cycle methods. The book also provides a widely-accepted methodology which can be followed to ensure that waste minimization programmes and projects are successfully implemented.
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