Engineering Thermodynamics and Fuzzy Multicriteria Models for Waste Recovery Management

Engineering Thermodynamics and Fuzzy Multicriteria Models for Waste Recovery Management

Sale price  $292.50 Regular price $325.00
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Engineering Thermodynamics and Fuzzy Multicriteria Models for Waste Recovery Management

Engineering Thermodynamics and Fuzzy Multicriteria Models for Waste Recovery Management

Sale price  $292.50 Regular price $325.00

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Engineering Thermodynamics and Fuzzy Multicriteria Models for Waste Recovery Management

Sadhan Kumar Ghosh | Rahul Kar | Gunjan Mukherjee | Pushan Kumar Dutta

Technology & Engineering / Engineering

Master the exact thermal engineering techniques and adaptive frameworks you need to slash operational costs, conquer strict environmental regulations, and transform complex waste management challenges into high-efficiency energy solutions.

The role of smarter waste management and energy systems in industry development, waste management, and energy efficiency is a critical issue across industries today. The growing need to handle increasing waste volume while meeting strict environmental regulations has made innovative approaches essential. Industries face challenges like reducing operational costs, minimizing environmental harm, and complying with sustainability goals, while the demand for clean energy solutions that optimize resources and reduce waste is higher than ever. This book aims to bridge the gap between the theoretical principles of engineering thermodynamics and the practical challenges of municipal waste management. It explores how thermodynamic concepts can be applied to enhance energy efficiency and recovery in waste treatment systems. By incorporating advanced thermal engineering techniques such as heat exchangers, solar cooling, and trigeneration systems, the book offers actionable insights for creating sustainable and energy-efficient waste management solutions. These methods provide a strong foundation for addressing the energy demands associated with waste treatment while minimizing environmental impacts. The book addresses the inherent uncertainty and complexity of decision-making in waste management. Using fuzzy logic principles, it provides a framework for accommodating incomplete data and subjective judgments, enabling municipalities to adapt to variable scenarios such as changing waste compositions and fluctuating energy demands. This book is a comprehensive resource for academics, researchers, policymakers, and industry professionals, providing a blend of theoretical knowledge and real-world applications, making it a valuable tool for solving complex problems in municipal waste management.

Sadhan Kumar Ghosh, PhD, is the Director General of the Sustainable Development and Circular Economy Centre at the International Society of Waste Management, Air, and Water. He has published ten books, 55 edited volumes, and more than 300 national and international articles and book chapters, and has delivered more than 1,000 keynote, plenary, and invited speeches worldwide. His research interests include waste management, circular economy, and supply chain sustainability.

Rahul Kar is part of the School of Mathematics at Kalyani Mahavidyalaya, Kalyani, Nadia, West Bengal, and is currently pursuing a PhD in Mathematics from Bankura University. With eight years of teaching experience, he has published numerous research papers, edited 15 books, and is a member of the Indian Mathematical Society and an honorary member of the Carmels Research Institute in Dakar, Senegal.

Gunjan Mukherjee, PhD, is an Associate Professor in the Department of Computational Sciences at Brainware University with more than 20 years of teaching experience. He has authored a textbook series, edited several books, and published six Indian patents. His research interests include computer vision, machine learning, soft computing, and image processing.

Pushan Kumar Dutta, PhD, is an Assistant Professor at Amity University Kolkata, West Bengal, India. He has more than 300 publications to his credit, including books, book chapters, and journal articles. His research interests include machine learning, power electronics, data analysis, and pattern recognition.


Publication Date: 09 December 2026
Publisher: Wiley
Imprint: Wiley-Scrivener
ISBN-13: 9781394389551
Format: Hardback
Page Count: 672

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