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Rapid Refrigeration and Water Protection: Next Generation Adsorbents

Rapid Refrigeration and Water Protection: Next Generation Adsorbents

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  • More about Rapid Refrigeration and Water Protection: Next Generation Adsorbents


This book provides a comprehensive assessment of the development of adsorption-based refrigerants and super-adsorbent-based wastewater purification, covering new perspectives and recent findings from global field experts. It appeals to a wide range of professionals.

Format: Hardback
Length: 265 pages
Publication date: 24 May 2022
Publisher: Springer Nature Switzerland AG


This comprehensive book delves into the intricate realm of adsorption-based refrigerants and super-adsorbent-based wastewater purification, offering a multi-faceted and interdisciplinary analysis. Spanning the horizons of the 21st century, it explores two pivotal aspects: the development of an environmentally friendly adsorption cooling system and the preparation of a highly effective super-adsorbent for water purification. While previous research has shed light on these subjects, the authors present the most recent advancements and offer fresh viewpoints. Crafted as a valuable reference resource, the book features contributions from esteemed global field experts, making it an essential read for water engineers, chemists, environmentalists, physicists, material scientists, nano-technologists, and environmental technologists alike.

Adsorption-based refrigerants have gained significant attention in recent years due to their potential for environmentally friendly cooling systems. These refrigerants utilize adsorbent materials, such as activated carbon or zeolite, to capture and remove heat from air or other gases. One of the key advantages of adsorption-based refrigerants is their low global warming potential (GWP), which is significantly lower than traditional refrigerants such as chlorofluorocarbons (CFCs) and hydrofluorocarbons (HFCs). Additionally, adsorption-based refrigerants are non-toxic, have a long lifespan, and can be regenerated easily, making them a sustainable alternative to traditional refrigerants.

Super-adsorbent-based wastewater purification is another area of focus in this book. Super-adsorbents are materials that have a high capacity to absorb and retain pollutants, including heavy metals, organic compounds, and pathogens. They are commonly used in water treatment processes to remove contaminants from wastewater before it is discharged into the environment. Super-adsorbents can be prepared using various materials, such as natural clay, activated carbon, and silica gel. One of the advantages of super-adsorbents is their ability to be reused multiple times, making them cost-effective and environmentally friendly.

The book provides a detailed overview of the development of adsorption-based refrigerants and super-adsorbent-based wastewater purification, including the underlying principles, materials, and applications. It covers various topics such as adsorbent selection, adsorption kinetics, adsorption thermodynamics, and adsorption-based cooling systems. The authors also discuss the preparation of super-adsorbents, including their characterization, optimization, and application in water purification.

In addition to providing a theoretical foundation, the book includes case studies and practical examples to illustrate the real-world applications of adsorption-based refrigerants and super-adsorbent-based wastewater purification. These case studies showcase the successful implementation of these technologies in various industries, such as air conditioning, water treatment, and waste management.

Overall, this book is a valuable resource for researchers, engineers, and practitioners in the fields of water engineering, chemistry, environmental science, and nanotechnology. It provides a comprehensive and up-to-date understanding of the development of adsorption-based refrigerants and super-adsorbent-based wastewater purification, and its potential to address the challenges of sustainable energy and water management.

Weight: 582g
Dimension: 235 x 155 (mm)
ISBN-13: 9783030938444
Edition number: 1st ed. 2022

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