Modeling of the Whole Lifecycle Dioxins for Municipal Solid Waste Incineration : Numerical Simulation and AI-Driven Method
Language: English
Published by Taylor & Francis Ltd Sep 2026, 2026
- Hardcover
- New

Seller: AHA-BUCH GmbH, Einbeck, GermanyAHA-BUCH GmbH
AbeBooks seller since August 14, 2006
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Add to basketItem description from seller
Neuware - This book by leading experts consolidates information on the numerical simulation and AI-driven modeling of multiple points of dioxin concentration in the municipal solid waste incineration (MSWI) process to provide readers with the skills to develop safer and more efficient waste management practices.The authors of Modeling of the Whole Lifecycle Dioxins for Municipal Solid Waste Incineration: Numerical Simulation and AI-Driven Method explore the complex interplay between municipal solid waste (MSW) management and environmental health, specifically focusing on the generation and production of dioxins during incineration. This comprehensive work amalgamates theoretical insights and practical applications, leveraging numerical simulations and AI techniques to offer innovative modeling solutions. It addresses the critical problem of dioxin generation and emissions from MSWI through a structured approach integrating exhaustive research data, case studies, and advanced computational methodologies, providing an integrated model accounting for various operational parameters and their effects on emissions. It both discusses the existing theoretical frameworks and empirical studies and applies advanced modeling techniques to yield practical insights. Readers will find clear representations of simulation processes alongside discussions on optimization and control mechanisms. This facilitates an understanding of the underlying mechanisms of dioxin formation, enabling targeted solutions that are informed by both experimental results and advanced simulation techniques. This ultimately furnishes practitioners with robust tools to better understand and mitigate the risks associated with dioxin emissions so they can contribute to safer and more efficient waste management practices.This is an essential resource for engineers, policy-makers, and researchers involved in sustainable waste management and environmental protection. In particular, environmental engineers, MSWI plant operators, and researchers will benefit from the integrated theoretical and practical approaches and discussions of real-world scenarios and applications.…
Seller Inventory # 9781041061830
- Title
- Modeling of the Whole Lifecycle Dioxins for Municipal Solid Waste Incineration : Numerical Simulation and AI-Driven Method
- Author
- Junfei Qiao
- Publisher
- Taylor & Francis Ltd Sep 2026
- Publication year
- 2026
- Condition
- Neu
- Binding
- Buch
- Language
- English
- ISBN 10
- 1041061838
- ISBN 13
- 9781041061830
- Item weight
- 1,060 grams
- Dimensions
- 234x156x35 mm
This book by leading experts consolidates information on the numerical simulation and AI-driven modeling of multiple points of dioxin concentration in the municipal solid waste incineration (MSWI) process to provide readers with the skills to develop safer and more efficient waste management practices.
The authors of Modeling of the Whole Lifecycle Dioxins for Municipal Solid Waste Incineration: Numerical Simulation and AI-Driven Method explore the complex interplay between municipal solid waste (MSW) management and environmental health, specifically focusing on the generation and production of dioxins during incineration. This comprehensive work amalgamates theoretical insights and practical applications, leveraging numerical simulations and AI techniques to offer innovative modeling solutions. It addresses the critical problem of dioxin generation and emissions from MSWI through a structured approach integrating exhaustive research data, case studies, and advanced computational methodologies, providing an integrated model accounting for various operational parameters and their effects on emissions. It both discusses the existing theoretical frameworks and empirical studies and applies advanced modeling techniques to yield practical insights. Readers will find clear representations of simulation processes alongside discussions on optimization and control mechanisms. This facilitates an understanding of the underlying mechanisms of dioxin formation, enabling targeted solutions that are informed by both experimental results and advanced simulation techniques. This ultimately furnishes practitioners with robust tools to better understand and mitigate the risks associated with dioxin emissions so they can contribute to safer and more efficient waste management practices.
This is an essential resource for engineers, policy-makers, and researchers involved in sustainable waste management and environmental protection. In particular, environmental engineers, MSWI plant operators, and researchers will benefit from the integrated theoretical and practical approaches and discussions of real-world scenarios and applications.
"Synopsis" may belong to another edition of this title.
About the Author
Jian Tang is a Professor at Beijing University of Technology and Deputy Director of Beijing Laboratory of Smart Environmental Protection. He received his Ph.D. from Northeastern University, Shenyang, China, in 2012. He has authorized over 50 US/Chinese invention patents and obtained over 30 software copyrights. He is a senior member of IEEE.
Loai Aljerf is a Professor at Damascus University. He has created partnerships and memberships in prestigious organizations, including the Advances in Cleaner Production Network, the German Chemical Society e.V. (GDCh), the Asian Chemical Society, and the American University of Beirut.
Junfei Qiao is a Professor with the Beijing University of Technology and Director of Beijing Laboratory of Smart Environmental Protection, Beijing, China. He received his Ph.D. from Northeastern University, Shenyang, China, in 1998. He is a member of several government bodies and director of several national committees in China. He is a senior member of IEEE.
"About the title" may belong to another edition of this title.
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