Applications in Design and Simulation of Sustainable Chemical Processes (e-bog) af Kiss, Anton A.
Kiss, Anton A. (forfatter)

Applications in Design and Simulation of Sustainable Chemical Processes e-bog

2190,77 DKK (inkl. moms 2738,46 DKK)
Applications in Design and Simulation of Sustainable Chemical Processes addresses the challenging applications in designing eco-friendly but efficient chemical processes, including recent advances in chemistry and catalysis that rely on renewable raw materials. Grounded in the fundamental knowledge of chemistry, thermodynamics, chemical reaction engineering and unit operations, this book is an ...
E-bog 2190,77 DKK
Forfattere Kiss, Anton A. (forfatter)
Forlag Elsevier
Udgivet 8 august 2019
Længde 754 sider
Genrer Industrial chemistry and chemical engineering
Sprog English
Format epub
Beskyttelse LCP
ISBN 9780444638861
Applications in Design and Simulation of Sustainable Chemical Processes addresses the challenging applications in designing eco-friendly but efficient chemical processes, including recent advances in chemistry and catalysis that rely on renewable raw materials. Grounded in the fundamental knowledge of chemistry, thermodynamics, chemical reaction engineering and unit operations, this book is an indispensable resource for developing and designing innovating chemical processes by employing computer simulations as an efficient conceptual tool. Targeted to graduate and post graduate students in chemical engineering, as well as to professionals, the book aims to advance their skills in process innovation and conceptual design. The work completes the book Integrated Design and Simulation of Chemical Processes by Elsevier (2014) authored by the same team. Includes comprehensive case studies of innovative processes based on renewable raw materials Outlines Process Systems Engineering approach with emphasis on systematic design methods Employs steady-state and dynamic process simulation as problem analysis and flowsheet creation tool Applies modern concepts, as process integration and intensification, for enhancing the sustainability