Chemical Engineering
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Process Engineering Renewal 1
Background and Training
by Éric Schaer
Part of the Chemical Engineering series
Process engineering emerged at the beginning of the 20th Century and has become an essential scientific discipline for the matter and energy processing industries. Its success is incontrovertible, with the exponential increase in techniques and innovations. Rapid advances in new technologies such as artificial intelligence, as well as current societal needs — sustainable development, climate change, renewable energy, the environment — are developments that must be taken into account in industrial renewal. Process Engineering Renewal 1 — the first volume of three — focuses on training, demonstrating the need for innovation in order for the field to have a framework that is sustainable, in a highly changeable world.
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Thermodynamic Processes 2
State and Energy Change Systems
by Salah Belaadi
Part of the Chemical Engineering series
Thermodynamic Processes 2 is devoted to the study of equilibrium between phases in the case of the four changes of physical state: fusion, boiling or vaporization, sublimation and allotropy or transition. It also includes a section that addresses energy's relationship to the zero sum aspect of exergy and thermal cycles. This second volume presents scientific and technical examples — both theoretical and industrial — which are the result of a careful selection, accrued over more than three decades of teaching thermodynamics and in collaboration with the industry sector. The didactic exercises and the practical problems are entirely dedicated to the understanding of this science, and the potential applications for the industrial world. This book is a tool for work and reflection essential for the student in training, as well as the engineer or experienced researcher.
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Thermodynamic Processes 1
Systems without Physical State Change
by Salah Belaadi
Part of the Chemical Engineering series
Thermodynamic Processes 1 offers a comprehensive take on process engineering, whereby technology transforms materials and energy production into various products. The scientific methods required for designing such processes are the result of knowledge from a number of different disciplines. As a result, thermodynamics is the basic discipline in process engineering training.
The application of laws and concepts of thermodynamics is essential before the design and optimization of any process, which allows downstream to control its reliability and validity. This book offers a pragmatic approach through practical and varied examples, chosen for their didactic and industrial interest.
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