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Introductory technical guidance for civil engineers, environmental engineers and other professional engineers and construction managers interested in air pollution control engineering. Here is what is discussed: 1. FORMATION OF SULFUR OXIDES, 2. AVAILABLE METHODS FOR REDUCING SOX EMISSIONS, 3. PROCEDURE TO MINIMIZE SOX EMISSION, 4. SAMPLE PROBLEMS, 5. NITROGEN OXIDES (NOx) CONTROL AND REDUCTION, TECHNIQUES.
Introductory technical guidance for professional engineers interested in air pollution control engineering. Here is what is discussed: 1. AIR QUALITY AND AUXILIARY EQUIPMENT, 2. INCINERATOR EMISSIONS PERMITTING, 3. POLLUTION CONTROL FOR STEAM POWER PLANTS, 4. SOLID WASTE INCINERATION, 5. STEAM BOILER EMISSIONS PERMITTING, 6. CYCLONE COLLECTORS, 7. FABRIC FILTERS, 8. SCRUBBERS AND PRECIPITATORS, 9. SULFUR AND NITROGEN OXIDES CONTROL, 10. AIR STRIPPING.
Introductory technical guidance for mechanical and environmental engineers and others interested in pollution control of sulfur and nitrogen oxides in flue gases such as from boilers. Here is what is discussed: 1. FORMATION OF SULFUR OXIDES 2. AVAILABLE METHODS FOR REDUCING SOX EMISSIONS 3. PROCEDURE TO MINIMIZE SOX EMISSION 4. SAMPLE PROBLEMS 5. NITROGEN OXIDES (NOx) CONTROL AND REDUCTION, TECHNIQUES.
THE AIR & WASTE MANAGEMENT ASSOCIATION is the world's leading membership organization for environmental professionals. The Association enhances the knowledge and competency of environmental professionals by providing a neutral forum for technology exchange, professional development, networking opportunities, public education, and outreach events. The Air & Waste Management Association promotes global environmental responsibility and increases the effectiveness of organizations and individuals in making critical decisions that benefit society.
A panel of respected air pollution control educators and practicing professionals critically survey the both principles and practices underlying control processes, and illustrate these with a host of detailed design examples for practicing engineers. The authors discuss the performance, potential, and limitations of the major control processes-including fabric filtration, cyclones, electrostatic precipitation, wet and dry scrubbing, and condensation-as a basis for intelligent planning of abatement systems,. Additional chapters critically examine flare processes, thermal oxidation, catalytic oxidation, gas-phase activated carbon adsorption, and gas-phase biofiltration. The contributors detail the Best Available Technologies (BAT) for air pollution control and provide cost data, examples, theoretical explanations, and engineering methods for the design, installation, and operation of air pollution process equipment. Methods of practical design calculation are illustrated by numerous numerical calculations.
Introductory technical guidance for professional engineers and construction managers interested in pollution control for steam power plants. Here is what is discussed: 1. AIR QUALITY CONTROL, 2. WATER QUALITY CONTROL, 3. OIL SPILL CONTROL, 4. SOLID WASTE DISPOSAL, 5. ENVIRONMENTAL REGULATIONS AND PERMITTING.
This unique textbook examines the basic health and environmental issues associated with air pollution including the relevant toxicology and epidemiology. It provides a foundation for the sampling and analysis of air pollutants as well as an understanding of international air quality regulations. Written for upper-level undergraduate and introductory graduate courses in air pollution, the book is also a valuable desk reference for practicing professionals who need to have a broad understanding of the topic. Key features: - Provides the most up-to-date coverage of the basic health and environmental issues associated with air pollution. - Offers a broader examination of air pollution topics, beyond just the meteorological and engineering aspects of air pollution. - Includes the following Instructor Resources: Instructor's Manual, PowerPoint Presentations, and a TestBank. The Phalens have put together a timely book on a critically important topic that affects all of us -- air pollution - and they do so in a new and highly relevant way: they consider the broad societal health impacts from a fundamental science viewpoint. The epidemiology, toxicology, and risks of air pollutants are included, and ethical issues of concern are highlighted. This book is a must-read for students who wish to become professionals in the air quality field and for students of environmental science whose work includes air pollution issues. The book is a significant contribution to the discipline." - Cliff I. Davidson, Director, Center for Sustainable Engineering; Thomas C. and Colleen L. Wilmot Professor of Engineering, Syracuse Center of Excellence in Environmental and Energy Systems and Department of Civil and Environmental Engineering, Syracuse University "Truly, human well-being and public health in the 21st century may hinge on our ability to anticipate, recognize, evaluate, control, and confirm responsible management of air pollution. This timely, informative, and insightful text provides a solid introduction for students and a technically sound handbook for professionals seeking literacy and critical thinking, real-life examples, understanding (not just rote applications), opportunities for continuous improvement, and modern tools for assessing and managing current and evolving air pollution challenges." - Mark D. Hoover, PhD, CHP, CIH Aerosol and health science researcher, author, and editor
Introductory technical guidance for mechanical engineers and other professional engineers and construction managers interested in steam electric power generating plants. Here is what is discussed: 1. INTRODUCTION, 2. PLANT FUNCTION AND PURPOSE, 3. STEAM POWER CYCLE ECONOMY, 4. COGENERATION CYCLES, 5. SELECTION OF CYCLE STEAM CONDITIONS, 6. CYCLE EQUIPMENT, 7. STEAM POWER PLANT ARRANGEMENT, 8. STEAM GENERATOR CONVENTIONAL TYPES AND CHARACTERISTICS, 9. OTHER STEAM GENERATOR CHARACTERISTICS, 10. STEAM GENERATOR SPECIAL TYPES, 11. MAJOR AUXILIARY SYSTEMS, 12. MINOR AUXILIARY SYSTEMS.
Air pollution control can be approached from a number of different engineering disciplines environmental, chemical, civil, and mechanical. To that end, Noel de Nevers has written an engaging overview of the subject. While based on the fundamentals of chemical engineering, the treatment is accessible to readers with only one year of college chemistry. In addition to discussions of individual air pollutants and the theory and practice of air pollution control devices, de Nevers devotes about half the book to topics that influence device selection and design, such as atmospheric models and U.S. air pollution law. The generous number of end-of-chapter problems are designed to develop more complex thinking about the concepts presented and integrate them with readers personal experienceincreasing the likelihood of deeper understanding.