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Prepared by an international team of eminent atmospheric scientists, Mechanisms of Atmospheric Oxidation of the Oxygenates is an authoritative source of information on the role of oxygenates in the chemistry of the atmosphere. The oxygenates, including the many different alcohols, ethers, aldehydes, ketones, acids, esters, and nitrogen-atom containing oxygenates, are of special interest today due to their increased use as alternative fuels and fuel additives. This book describes the physical properties of oxygenates, as well as the chemical and photochemical parameters that determine their reaction pathways in the atmosphere. Quantitative descriptions of the pathways of the oxygenates from release or formation in the atmosphere to final products are provided, as is a comprehensive review and evaluation of the extensive kinetic literature on the atmospheric chemistry of the different oxygenates and their many halogen-atom substituted analogues. This book will be of interest to modelers of atmospheric chemistry, environmental scientists and engineers, and air quality planning agencies as a useful input for development of realistic modules designed to simulate the atmospheric chemistry of the oxygenates, their major oxidation products, and their influence on ozone and other trace gases within the troposhere.
This text investigates the chemical mechanisms and reaction pathways governing the atmospheric oxidation of oxygenated organic compounds. The authors, a team of distinguished atmospheric scientists, synthesize extensive kinetic data to establish a framework for understanding how alcohols, ethers, aldehydes, and other oxygenates transform within the troposphere. By evaluating reaction parameters and final product formation, the book provides a quantitative basis for modeling the environmental impact of these compounds, particularly as they relate to alternative fuel usage.
What You Will Find
Experts recognize this volume as a foundational reference for atmospheric modelers and environmental engineers requiring precise kinetic parameters. Readers frequently note the high technical density of the prose, which serves as a specialized resource for professionals in air quality planning and chemical research.
Page Count:
1634
Publication Date:
2011-01-01
Publisher:
Oxford University Press
ISBN-10:
0199877475
ISBN-13:
9780199877478
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