Reaction Green Metrics - John Andraos

Reaction Green Metrics

Problems, Exercises, and Solutions

(Autor)

Buch | Hardcover
592 Seiten
2018
CRC Press (Verlag)
978-1-138-38895-6 (ISBN)
219,95 inkl. MwSt
The proposed work functions as an effective hands-on how-to guide for aspiring and established chemists interested in learning about and dealing with the complexities posed by the field and practice of green metrics through posed problems and worked solutions.
This book contains a series of exercises and problems posed in the subject of green metrics. Essentially it is a "how to" book on evaluating the material efficiency, environmental impact, safety-hazard impact, and energy efficiency of any kind of chemical reaction or synthesis plan. Only the essential green metrics in each of these categories are used. The introduction highlights the hierarchy of metrics used throughout the book, explains the structure of how the book is arranged, how the problems are posed, and how the reader is to use the book. Examples refer to themes according to the headings given in the table of contents and are arranged in a hierarchical order.

Key Features:

The topics cover fundamentals in chemistry and the chemical industry in a blended fashion
A unique text covering the fundamentals of green metrics from materials efficiency and environmental and safety-hazard impact, to new green technologies and more
The book will be useful in a range of chemistry courses, from early undergraduate to advanced graduate courses, whether based in lectures, tutorials or laboratory experiments
Using an extensive glossary of terms used in green metrics, each chapter has a specified theme where the relevant metrics definitions pertaining to that theme will be given with one or two illustrative worked examples
Supplemental web-based downloadable material including extra problems, full solutions, Excel files, ChemDraw files, templates, and exercises

John Andraos earned a Ph.D. in 1992 from the University of Toronto in physical organic chemistry. He then did post-doctoral work at the University of Ottawa and at The University of Queensland studying kinetics of reactions in heterogeneous media and cumulene intermediates in low temperature matrices, respectively. Since his appointment as Lecturer and Course Director at York University (1999-2009) he has taught and developed courses in organic chemistry. In 2002 he launched the first industrial and "green" chemistry course in the history of the Department of Chemistry at York. His current research is broadly defined as reaction optimization and discovery. His undertaking of an ambitious project to construct a database of synthesis plans fully quantified by green metrics analysis for pharmaceuticals, important natural products, dyestuffs, agrichemicals, and molecules of theoretical interest culminated in the publication of "The Algebra of Organic Synthesis: green metrics, design strategy, route selection, and optimization" (CRC Press-Taylor & Francis, 2012). He also co-edited "Green Syntheses Volume 1" (CRC Press-Taylor & Francis, 2014) with Prof. Pietro Tundo (University of Venice) which is the first resource of reliable green chemistry experiments that have been checked for greenness claims by rigorous material efficiency metrics analysis.

Preface

Chapter 1 Introduction

Chapter 2 Constitution of a Chemical Reaction and Reaction Balancing

Chapter 3 Experimental Description of Chemical Reactions

Chapter 4 Chemical Reaction Classifications

Chapter 5 Drawing Chemical Structures

Chapter 6 Waste Production and Input Material Consumption

Chapter 7 Intrinsic Greenness

Chapter 8 Automated Computation for a Single Reaction

Appendix: Other Terminologies

Index

Erscheinungsdatum
Zusatzinfo 100 Illustrations, black and white
Verlagsort London
Sprache englisch
Maße 156 x 234 mm
Gewicht 2200 g
Themenwelt Naturwissenschaften Chemie Anorganische Chemie
Naturwissenschaften Chemie Organische Chemie
Naturwissenschaften Chemie Technische Chemie
Technik Elektrotechnik / Energietechnik
ISBN-10 1-138-38895-5 / 1138388955
ISBN-13 978-1-138-38895-6 / 9781138388956
Zustand Neuware
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