Waste-derived Biochar for Sustainable Rural Revitalization
Language: English
Published by John Wiley and Sons Inc, US, 2025
- Hardcover
- New

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Condition: New
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Comprehensive reference summarizing different technologies for application-oriented biochar production from waste biomass resources in rural areas Waste-derived Biochar for Sustainable Rural Revitalization summarizes recent research developments, introduces state-of-the-art knowledge, incorporates case studies, offers scientific insights, highlights current challenges, and shows the way forward for biochar technologies as a novel, cost-effective, and environmentally friendly solution for sustainable rural revitalization. This book succinctly summarizes different technologies for application-oriented biochar production from waste biomass resources (e.g., crop residues, pruning of fruit trees, animal waste, food waste, and domestic sludge) in rural areas, with an emphasis on tailored selection of pyrolytic and pre/post-treatment conditions. Readers will find information on renewable biofuels, clean compost conditioner, organic seeding substrate, slow-release fertilizers, green pesticides, targeting plant disease suppressors, farmland soil conditioner/amendment, adsorbent/catalyst for agriculture wastewater treatment, farmland carbon sequestration, and low-carbon construction materials. This book also evaluates these technologies through Technical and Economic Analysis (TEA) and Environmental, Social, and Governance (ESG) frameworks and discusses potential environmental risks. Written by a team of highly qualified authors, Waste-derived Biochar for Sustainable Rural Revitalization explores sample topics including: Slow, fast, microwave, and flash pyrolysis, physical and chemical modification of biochars, and commonly used biochar raw materialsTechnologies and key influencing factors in biochar preparation, types and characteristics of carbonation reactors, and migration of alkali metals during biochar combustionWaste-derived biochar as organic seeding substrate, discussing the growing media of compost, humic acid, and activated carbonImprovement of soil physical, chemical, and biological properties by waste-derived biochar, covering effects on soil pH, organic matter, and cation exchange quantity Waste-derived Biochar for Sustainable Rural Revitalization serves as an invaluable reference for engineers, scientists, researchers, and graduate students in waste recycling and management, sustainable rural development, environmental engineering, civil engineering, chemical engineering, and related fields.…
Seller Inventory # LU-9781394250271
- Title
- Waste-derived Biochar for Sustainable Rural Revitalization
- Author
- Yuqing Sun
- Publisher
- John Wiley and Sons Inc, US
- Publication year
- 2025
- Condition
- New
- Binding
- Hardback
- Language
- English
- ISBN 10
- 1394250274
- ISBN 13
- 9781394250271
- Item weight
- 971 grams
Comprehensive reference summarizing different technologies for application-oriented biochar production from waste biomass resources in rural areas
Waste-derived Biochar for Sustainable Rural Revitalization summarizes recent research developments, introduces state-of-the-art knowledge, incorporates case studies, offers scientific insights, highlights current challenges, and shows the way forward for biochar technologies as a novel, cost-effective, and environmentally friendly solution for sustainable rural revitalization. This book succinctly summarizes different technologies for application-oriented biochar production from waste biomass resources (e.g., crop residues, pruning of fruit trees, animal waste, food waste, and domestic sludge) in rural areas, with an emphasis on tailored selection of pyrolytic and pre/post-treatment conditions.
Readers will find information on renewable biofuels, clean compost conditioner, organic seeding substrate, slow-release fertilizers, green pesticides, targeting plant disease suppressors, farmland soil conditioner/amendment, adsorbent/catalyst for agriculture wastewater treatment, farmland carbon sequestration, and low-carbon construction materials. This book also evaluates these technologies through Technical and Economic Analysis (TEA) and Environmental, Social, and Governance (ESG) frameworks and discusses potential environmental risks.
Written by a team of highly qualified authors, Waste-derived Biochar for Sustainable Rural Revitalization explores sample topics including:
- Slow, fast, microwave, and flash pyrolysis, physical and chemical modification of biochars, and commonly used biochar raw materials
- Technologies and key influencing factors in biochar preparation, types and characteristics of carbonation reactors, and migration of alkali metals during biochar combustion
- Waste-derived biochar as organic seeding substrate, discussing the growing media of compost, humic acid, and activated carbon
- Improvement of soil physical, chemical, and biological properties by waste-derived biochar, covering effects on soil pH, organic matter, and cation exchange quantity
Waste-derived Biochar for Sustainable Rural Revitalization serves as an invaluable reference for engineers, scientists, researchers, and graduate students in waste recycling and management, sustainable rural development, environmental engineering, civil engineering, chemical engineering, and related fields.
"Synopsis" may belong to another edition of this title.
About the Author
Yuqing Sun, PhD, is an Associate Professor in School of Agriculture and Biotechnology at Sun Yat-Sen University. She has published over 60 articles in top 10% journals and received over 7,900 citations. Her research covers the customized design and application of engineered biochar in green and sustainable agricultural applications.
Daniel C.W. Tsang, PhD (ICE Fellow, RSC Fellow, HKIE Fellow) is a Professor in Department of Civil and Environmental Engineering and Director of Research Center on Decarbonization Technology at The Hong Kong University of Science and Technology. He has published over 600 articles in top 10% journals and received over 78,000 citations. His research team strives to develop green technologies to ensure sustainable development and long-term decarbonization.
"About the title" may belong to another edition of this title.
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