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CAMD or Computer Aided Molecular Design refers to the design of
molecules with desirable properties. That is, through CAMD, one
determines molecules that match a specified set of (target)
properties. CAMD as a technique has a very large potential as in
principle, all kinds of chemical, bio-chemical and material
products can be designed through this technique.
Properties of chemical compounds and their mixtures are needed in
almost every aspect of process and product design. When the use of
experimental data is not possible, one of the most widely used
options in the use of property estimation models.
The idea of editing a book on modern software architectures and
tools for CAPE (Computer Aided Process Engineering) came about when
the editors of this volume realized that existing titles relating
to CAPE did not include references to the design and development of
CAPE software.
The 31st European Symposium on Computer Aided Process Engineering: ESCAPE-31, Volume 50 contains the papers presented at the 31st European Symposium of Computer Aided Process Engineering (ESCAPE) event held in Istanbul, Turkey. It is a valuable resource for chemical engineers, chemical process engineers, researchers in industry and academia, students and consultants in the chemical industries.
Chemical Product Design: Towards a Perspective through Case Studies
provides a framework for chemical product design problems which are
clearly defined together with different solution approaches. This
book covers the latest methods and tools currently available in the
field and discusses future challenges that the chemical industry is
faced with. It focuses on important issues of chemical product
design and provides a good overview on industrial chemical product
design problems through case studies supplied by leading experts.
The editors of Chemical Product Design teach chemical product
design at graduate level courses and also serve as consultants for
various chemical companies. They have also developed experimental
techniques for chemical product design as well as computer-aided
design methods and tools.
This book covers the area of product and process modelling via a case study approach. It addresses a wide range of modelling applications with emphasis on modelling methodology and the subsequent in-depth analysis of mathematical models to gain insight via structural aspects of the models. These approaches are put into the context of life cycle modelling, where multiscale and multiform modelling is increasingly prevalent in the 21st century. The book commences with a discussion of modern product and process modelling theory and practice followed by a series of case studies drawn from a variety of process industries. The book builds on the extensive modelling experience of the authors, who have developed models for both research and industrial purposes. It complements existing books by the authors in the modelling area. Those areas include the traditional petroleum and petrochemical industries to biotechnology applications, food, polymer and human health application areas. The book highlights to important nature of modern product and process modelling in the decision making processes across the life cycle. As such it provides an important resource for students, researchers and industrial practitioners. Ian Cameron is Professor in Chemical Engineering at the University of Queensland with teaching, research, and consulting activities in process systems engineering. He has a particular interest in process modelling, dynamic simulation, and the application of functional systems perspectives to risk management, having extensive industrial experience in these areas. He continues to work closely with industry and government on systems approaches to process and risk management issues. He received his BE from the University of New South Wales (Australia) and his PhD from imperial College London. He is a Fellow of IChemE. Rafiqul Gani is a Professor of Systems Design at the Department
of Chemical and Biochemical Engineering, Technical University of
Denmark, and the director of the Computer Aided Product-Process
Engineering Center (CAPEC). His research interests include the
development of computer-aided methods and tools for modelling,
property estimation and process-product synthesis and design. He
received his BSc from Bangladesh University of Engineering and
Technology in 1975, and his MSc in 1976 and PhD in 1980 from
Imperial College London. He is the editor-in-chief of Computers and
Chemical Engineering journal and Fellow of IChemE as well as
AIChE.
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