Lignin-driven Advanced Materials: The State-of-the-Art offers a pioneering approach to address the multifaceted challenges in the production of lignin-derived materials. This comprehensive book covers the creation of value-added products such as carbon materials, nanoparticles, energy storage materials, and bioplastics. It promotes collaboration between academia and industry, bridging the gap between theoretical knowledge and practical expertise. Featuring advanced lignin isolation techniques, tools for lignin characterization, and pragmatic aspects of lignin-based materials, the book incorporates the latest research and industrial advancements.
Additionally, the book addresses the contentious questions surrounding lignin isolation techniques, providing advanced strategies that have the potential to replace conventional methods in the industry. It serves as a comprehensive resource for analytical tools for lignin characterization and presents solutions for more in-depth knowledge. Furthermore, it aims to improve economic viability and sustainability in lignocellulosic biomass utilization, and guides sustainable decision-making with environmental and economic assessments. This book is a vital resource for those exploring advancements in lignin-based materials.
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Meysam Madadi is an Associate Professor at the School of Biotechnology, Jiangnan University (Wuxi, China), where he leads research in sustainable biomass conversion and waste valorization technologies. He earned his Ph.D. in Biomass and Bioenergy from Huazhong Agricultural University (Wuhan, China), establishing a strong foundation in renewable energy systems. With expertise spanning pretreatment technologies, catalytic pyrolysis, and green chemistry approaches, Dr. Madadi has developed innovative methods for converting agricultural and industrial waste into value-added biofuels, biochemicals, and functional biomaterials. His significant scholarly contributions include over 60 SCI-indexed publications in prestigious journals such as Nature Food, Renewable and Sustainable Energy Reviews, Chemical Engineering Journal, and Green Chemistry. Recognized for his research excellence, Dr. Madadi was awarded the competitive Jiangsu High-Level Talent title in 2024, one of the province's most prestigious academic honors. His additional distinctions include the Excellent Young Researcher award from Jiangnan University (2023) and Excellent Postdoctoral Fellow recognition from Jiangsu Province (2022). Through his interdisciplinary work combining biotechnology, chemical engineering, and environmental science, Dr. Madadi continues to advance sustainable solutions for global energy and waste management challenges while fostering international research collaborations
Mahdy Elsayed received his master's degree in Biosystems Engineering from the Agricultural Engineering Department at Cairo University, Egypt, and a Ph.D. in Environmental and Energy Engineering from the College of Engineering at Huazhong Agricultural University, China. His primary research interests lie in biosystems engineering and biorefineries, with a focus on cleaner and sustainable production of biofuels and bioproducts. Currently, he serves as an Associate Professor at the Department of Environmental Engineering, School of Architecture and Civil Engineering, Chengdu University, China. His interdisciplinary expertise lies in energy and environmental engineering. Dr. Elsayed is currently dedicated to researching the pretreatment and conversion of biowaste, along with other second-generation feedstocks, for efficient utilization in biofuel production. He is the Editor of the Book Volumes " Biogas - Recent Advances and Integrated Approaches", published by IntechOpen. Dr. Elsayed has published over 45 publications, including book chapters, original research papers, and reviews in journals such as Progress in Energy and Combustion Sciences, Renewable and Sustainable Energy Reviews, Chemical Engineering Journal, and Environmental Chemistry Letters (h-index: 22, i10 index: 27; June 2025, Google Scholar).
Mortaza Aghbashlo is a Professor of Biosystems Engineering at the University of Tehran (Iran) and a Visiting Professor at Henan Agricultural University (China), where he helps lead an international platform for high-profile research collaborations. He has authored more than 300 publications, including papers and reviews in Nature Food, Joule, Progress in Energy and Combustion Sciences, Trends in Biotechnology, Biotechnology Advances, Nano Energy, and Renewable & Sustainable Energy Reviews. As of June 2025 (Google Scholar), his work has attracted 26,200 citations, with an h-index of 88 and an i10-index of 291. Dr Aghbashlo was named a Web of Science Highly Cited Researcher in the Cross-Field category (2021). He co-edited the Springer Nature volumes Biodiesel: From Production to Combustion and Fungi in Fuel Biotechnology (both 2018). His editorial service includes membership on the boards of Progress in Energy and Combustion Sciences (Elsevier), Biofuel Research Journal (BRJ), and e-Prime (Elsevier), as well as a term as Associate Editor of Cleaner Environmental Systems (Elsevier). He has also guest-edited special issues for Journal of Hazardous Materials and Environmental Research.
Lignin-driven Advanced Materials: The State-of-the-Art takes a pioneering approach to comprehensively address the multifaceted challenges in lignin-driven materials production, and covers topics including the creation of value-added products such as carbon materials, nanoparticles, energy storage materials, bioplastics, and advanced techno-economic and life cycle assessments. The book bridges the gap between theoretical knowledge and practical expertise by promoting collaboration between academia and industry, and sheding light on pragmatic aspects of lignin-based materials, incorporating the latest research and industrial advancements. The book addresses contentious questions, which serve as focal issues requiring resolution: (1) Lignin isolation techniques: In addition to traditional methods of lignin isolation, the book features several advanced strategies for extracting lignin from lignocellulosic materials that hold the potential to replace conventional methods in the industry. (2) Tools for lignin characterization: The book serves as a comprehensive resource describing in detail analytical tools for lignin characterization, and presenting solutions to provide more in-depth knowledge to readers in academia and industry. (3) Lignin-driven Advanced materials: The book's goal is to advance the creation of materials based on lignin, aiming to improve economic viability and sustainability in lignocellulosic biomass utilization. (4) Environmental and economic assessment: The book seeks to provide a basis for estimating and interpreting environmental and economic indicators, guiding sustainable decision-making in such operations. Lignin-driven Advanced Materials: The State-of-the-Art acts as a vital resource for readers seeking to explore the latest advancements in the realm of lignin-based materials.
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