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Solid Waste Management: Foundations, Recycling Pathways, and Sustainable Practices - Softcover

 
9780443328442: Solid Waste Management: Foundations, Recycling Pathways, and Sustainable Practices

Synopsis

Solid Waste Management: Foundations, Recycling Pathways, and Sustainable Practices provides an introduction to the six types of waste, including municipal and rural solid waste, construction and demolition waste, hazardous waste, industrial waste, electric and electronic waste, and sewage sludge. These types of waste are discussed, along with treatment and recycling technologies, such as pre-treatment, reuse and recycling, anaerobic digestion, aerobic compositing, incineration for power, pyrolysis, and sanitary landfill. The book focuses on pollution control and resource utilization and describes combining process design principles with application examples to comprehensively describe various methods, principles, processes, new technologies, new methods, and new theories.

  • Presents a full description of pollution control and resource recovery
  • Provides the state-of-the-art textbook on ecological civilization, sustainable development, and engineering innovation
  • Strives to objectively reflect the actual needs of engineering applications so that readers can quickly and comprehensively grasp and apply relevant processing technologies

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About the Authors

Zhao Youcai, is currently a professor of environmental engineering at School of Environmental Science and Engineering, Tongji University. He got bachelor degree from Sichuan University (1984) and Ph.D. from Institute of Chemical Metallurgy (now Institute of Process Engineering), Chinese Academy of Sciences, Beijing (1989). After finished Post-doctoral research work at Fudan University, Shanghai, he joined in Tongji University in 1991. Meanwhile, he had ever worked at Aristotle University, Greece, National University of Singapore, Tulane University, USA, and Paul Scherrer Institute, Switzerland, for 4 years as research fellow or visiting professor. He had authored or co-authored 200 publications published in peer-reviewed internationally recognized journals, 480 publications in China journals, authored 9 English books (at Elsevier and Springer) and authored or co-authored 98 Chinese books (as an author or Editor-in-chief), 4 textbooks for undergraduate, graduate and PhD students with a fourth edition of undergraduate textbook (in Chinese). Currently, his research interests include treatment and recycling of municipal and rural solid waste, construction and demolition waste, hazardous waste, industrial waste, electric and electronic waste, and sewage sludge, and polluted soil.



Zhou Tao is an Associate Professor at the School of Environmental Science and Engineering, Tongji University. He received his bachelor degree in Environmental Engineering from Guangxi University, China in 2014 and his Ph D from Tongji University, China in 2019. He has authored or co-authored 42 peer-reviewed international papers, 15 Chinese papers, and 4 invited book chapters, 2 English book (Elsevier). His principal research interests lie in treatment and resource recovery of municipal and rural as well as industrial solid wastes.

From the Back Cover

Solid Waste Management: Foundations, Recycling Pathways, and Sustainable Practices provides an introduction to six types of waste, namely municipal and rural solid waste, construction and demolition waste, hazardous waste, industrial waste, electric and electronic waste, and sewage sludge. These types of waste will be discussed in great detail as well as combining with the treatment and recycling technologies, such as pre-treatment, reuse and recycling, anaerobic digestion and aerobic compositing, incineration for power, pyrolysis, and sanitary landfill. This book will focus on pollution control and resource utilization. It will also describe the combining process design principles with application examples to comprehensively describe various methods, principles, processes, new technologies, new methods, and new theories for solid waste treatment and recycling.

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