Circularity of Plastics: Sustainability, Emerging Materials, and Valorization of Waste Plastic

· ·
· Elsevier
eBook
342
페이지
적용 가능
검증되지 않은 평점과 리뷰입니다.  자세히 알아보기

eBook 정보

Circularity of Plastics: Sustainability, Emerging Materials, and Valorization of Waste Plastic takes an innovative, interdisciplinary approach to circularity and sustainability in plastics, with an emphasis on plastic waste and end-of-life treatment and options for recycling, re-use, valorization and development of biomass-based polymers. The book introduces key concepts of sustainable materials, the circular economy, and lifecycle assessment, and discusses challenges in the valorization of waste. Other sections cover the upcycling of waste plastic into new materials and fuels, with dedicated chapters exploring state-of-the-art techniques for conversion to new sustainable polymers, fuel, fine chemicals and carbon nanomaterials. Emerging technologies used to produce functional polymers from renewable feedstocks, including CO2, biomass, natural polymers, polylactic acid (PLA), and polyhydroxyalkanoate-based materials (PHAs) are then explored, with a final chapter focusing on applications of sustainable materials, challenges, and future perspectives. This is a valuable resource for researchers, scientists, engineers, R&D professionals, and advanced students from a range of disciplines and backgrounds, with an interest in sustainable materials, circularity in plastics, and polymer waste and valorization. - Explains the fundamental concepts of sustainable materials, circular economy, lifecycle assessment, and valorization of plastic waste - Presents cutting-edge methods for the conversion or upcycling of waste to sustainable polymers, fuel and fine chemicals, and carbon nanomaterials - Provides detailed coverage of the development of functional polymers from a range of sustainable and renewable resources

저자 정보

Dr. Zibiao Li obtained his PhD in Biomedical Engineering from National University of Singapore (NUS). Currently, he is working as a senior research scientist at the Institute of Materials Research and Engineering (IMRE), A*STAR, Singapore. He is currently the Head of Advanced Sustainable Materials Department in IMRE. His research interests are focused on biodegradable functional polymeric materials design, structural properties investigations and their hybrid fabrications for high performance applications in consumer care and healthcare. He has published over 120 journal papers, 2 books, 5 book chapters, 15 technological disclosures / Patents, mainly in the area of biodegradable and sustainable materials.

Dr Jason Y. C. Lim obtained his PhD in Inorganic Chemistry from the University of Oxford, U.K. Thereafter, he obtained a postdoctoral position at the same institute under the supervision of Professor Charlotte K. Williams, working on metal-free organocatalysis for the synthesis of polylactic acid, a leading biopolymer with vast commercial applications in today’s world. His current research interests at IMRE, Singapore, include development of novel catalysts to replace toxic heavy-metal catalysts used for polymer synthesis, chemical valorisation and upcycling of waste plastics, development of new sustainable polymers for biomedical applications, as well as ion sensors for agritech nutrient monitoring to reduce over-application of fertilisers. At the time of writing, he has authored/ co-authored 25 peer-reviewed papers in top chemistry and materials science journals.

Dr Chen-Gang Wang obtained his Ph.D. in organic and polymeric materials under the supervision of Professor Toshikazu Takata from Tokyo Institute of Technology, Japan. After working in chemical industry for two years, he moved to Nanyang Technological University as a research fellow in Professor Atsushi Goto’s group and promoted to senior research fellow at 2019. His current position is a research scientist in Advanced Sustainable Materials Department in IMRE/A*STAR, Singapore. His research expertise focuses primarily on polymer science and materials. His current research interests include development of biomass-based polymers and the polymerization methods, design and synthesis of degradable/decomposable polymers, and creation of structurally complex polymer materials for advanced applications. He has (co)authored 23 peer-reviewed papers in top chemistry and materials science journals.

이 eBook 평가

의견을 알려주세요.

읽기 정보

스마트폰 및 태블릿
AndroidiPad/iPhoneGoogle Play 북 앱을 설치하세요. 계정과 자동으로 동기화되어 어디서나 온라인 또는 오프라인으로 책을 읽을 수 있습니다.
노트북 및 컴퓨터
컴퓨터의 웹브라우저를 사용하여 Google Play에서 구매한 오디오북을 들을 수 있습니다.
eReader 및 기타 기기
Kobo eReader 등의 eBook 리더기에서 읽으려면 파일을 다운로드하여 기기로 전송해야 합니다. 지원되는 eBook 리더기로 파일을 전송하려면 고객센터에서 자세한 안내를 따르세요.