Evan K. Paleologos – författare
1 192 kr
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*Examines problems such as transport, burial/storage, monitoring, and spillage - and tells how to overcome them*Provides tables, graphs, and formulas for risk analysis and risk management strategies*Explains complex statistical techniques in clear, basic terms
2 403 kr
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1 477 kr
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Fundamentals of Geoenvironmental Engineering: Understanding Soil, Water, and Pollutant Interaction and Transport examines soil-water-pollutant interaction, including physico-chemical processes that occur when soil is exposed to various contaminants. Soil characteristics relevant to remedial techniques are explored, providing foundations for the correct process selection. Built upon the authors' extensive experience in research and practice, the book updates and expands the content to include current processes and pollutants. The book discusses propagation of soil pollution and soil characteristics relevant to remedial techniques. Practicing geotechnical and environmental engineers can apply the theory and case studies in the book directly to current projects.
The book first discusses the stages of economic development and their connections to the sustainability of the environment. Subsequent chapters cover waste and its management, soil systems, soil-water and soil-pollutant interactions, subsurface transport of pollutants, role of groundwater, nano-, micro- and biologic pollutants, soil characteristics that impact pollution diffusion, and potential remediation processes like mechanical, electric, magnetic, hydraulic and dielectric permittivity of soils.
Presents a clear understanding of the propagation of pollutants in soils Identifies the physico-chemical processes in soils Covers emerging pollutants (nano-, micro- and biologic contaminants) Features in-depth coverage of hydraulic, electrical, magnetic and dielectric permittivity characteristics of soils and their impact on remedial technologies2 101 kr
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1 714 kr
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Pollution Assessment for Sustainable Practices in Applied Sciences and Engineering provides an integrated reference for academics and professionals working on land, air, and water pollution. The protocols discussed and the extensive number of case studies help environmental engineers to quickly identify the correct process for projects under study.
The book is divided into four parts; each of the first three covers a separate environment: Geosphere, Atmosphere, and Hydrosphere. The first part covers ground assessment, contamination, geo-statistics, remote sensing, GIS, risk assessment and management, and environmental impact assessment. The second part covers atmospheric assessment topics, including the dynamics of contaminant transport, impacts of global warming, indoor and outdoor techniques and practice. The third part is dedicated to the hydrosphere including both the marine and fresh water environments. Finally, part four examines emerging issues in pollution assessment, from nanomaterials to artificial intelligence. There are a wide variety of case studies in the book to help bridge the gap between concept and practice.
Environmental Engineers will benefit from the integrated approach to pollution assessment across multiple spheres. Practicing engineers and students will also benefit from the case studies, which bring the practice side by side with fundamental concepts.
Provides a comprehensive overview of pollution assessment Covers land, underground, water and air pollution Includes outdoor and indoor pollution assessment Presents case studies that help bridge the gap between concepts and practice2 174 kr
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2 663 kr
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This book explores the strategies, frameworks, and innovations that promote sustainable urban transportation systems. It examines how cities can reduce their carbon footprint, improve air quality, and enhance the quality of life for residents by adopting sustainable transport solutions. The book focuses on integrating environmental, social, and economic aspects to create transportation systems that are efficient, accessible, and eco-friendly. Topics covered may include the implementation of green public transport, the role of technology in smart transportation, and the challenges of transitioning to sustainable urban mobility in different regions. Also, it explores the advancements and practices that support sustainability in the construction sector, particularly in the development and improvement of concrete. Furthermore, it covers the use of eco-friendly materials, innovative construction techniques, and strategies to minimize the environmental impact of construction activities. Special attention is given to the durability, efficiency, and sustainability of concrete, including the use of industrial byproducts, recycled materials, and novel binders. The discussion also includes the performance of new construction methods, such as 3D printing, and their potential to revolutionize sustainable building practices. This book focuses on the principles and practices of green building and the role of energy efficiency in achieving sustainable construction goals. It explores the use of renewable materials, energy-efficient designs, and smart technologies in creating buildings that minimize environmental impact while maximizing comfort and utility. The topic also addresses the decarbonization of the building sector, highlighting the importance of reducing energy consumption through advanced building automation systems and innovative construction techniques. The future of green building, including the potential of 3D printed structures and other technologies, is also examined.