Microplastic Monitoring Using Artificial Intelligence (eBook)

Artikelnummer: 978-1-394-45010-7
Einband: PDF
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Revolutionize your approach to environmental protection with this groundbreaking resource, which details how to replace labor-intensive manual analysis with deep learning and explainable AI (XAI) to achieve precise, real-time identification and scalable monitoring of microplastic pollution.

AI-driven microplastic monitoring sits at the intersection of environmental science, artificial intelligence, and data analytics, representing a rapidly developing frontier in both research and industry. Microplastic pollution, which has become a critical environmental and public health concern, is challenging to monitor using traditional techniques due to the vast scale, complexity, and minute size of microplastics. Conventional methods, such as manual filtration, microscopic examination, and chemical analysis, are often labor-intensive, time-consuming, and limited in their ability to provide real-time, large-scale data. This book is a groundbreaking exploration of how artificial intelligence, particularly deep learning and explainable AI (XAI), is revolutionizing microplastic research. It highlights innovative applications of deep learning for precise identification and classification of microplastics, while emphasizing the role of XAI in providing transparency and interpretability to AI-driven methods. By integrating these approaches with advanced sensing technologies and predictive models, the book addresses key limitations of traditional methods, offering robust solutions for scalable and accurate monitoring. Additionally, the book considers the ethical, regulatory, and policy implications of deploying AI in environmental science, providing a balanced perspective on the potential benefits and challenges. With contributions from leading researchers and practitioners, this book is an essential resource for environmental scientists, data scientists, policymakers, and technologists committed to sustainable solutions for combating microplastic pollution.


Revolutionize your approach to environmental protection with this groundbreaking resource, which details how to replace labor-intensive manual analysis with deep learning and explainable AI (XAI) to achieve precise, real-time identification and scalable monitoring of microplastic pollution.

AI-driven microplastic monitoring sits at the intersection of environmental science, artificial intelligence, and data analytics, representing a rapidly developing frontier in both research and industry. Microplastic pollution, which has become a critical environmental and public health concern, is challenging to monitor using traditional techniques due to the vast scale, complexity, and minute size of microplastics. Conventional methods, such as manual filtration, microscopic examination, and chemical analysis, are often labor-intensive, time-consuming, and limited in their ability to provide real-time, large-scale data. This book is a groundbreaking exploration of how artificial intelligence, particularly deep learning and explainable AI (XAI), is revolutionizing microplastic research. It highlights innovative applications of deep learning for precise identification and classification of microplastics, while emphasizing the role of XAI in providing transparency and interpretability to AI-driven methods. By integrating these approaches with advanced sensing technologies and predictive models, the book addresses key limitations of traditional methods, offering robust solutions for scalable and accurate monitoring. Additionally, the book considers the ethical, regulatory, and policy implications of deploying AI in environmental science, providing a balanced perspective on the potential benefits and challenges. With contributions from leading researchers and practitioners, this book is an essential resource for environmental scientists, data scientists, policymakers, and technologists committed to sustainable solutions for combating microplastic pollution.


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VerlagWiley
EinbandPDF
Erscheinungsjahr2026
Seitenangabe384 S.
AusgabekennzeichenEnglisch
Masse51'972 KB
Auflage1. Aufl.
PlattformPDF
AutorKumar, Abhishek (Hrsg.) / Dixit, Pooja (Hrsg.) / Singh Rathore, Pramod (Hrsg.) / Srivastav, Arun Lal (Hrsg.) / Dubey, Ashutosh Kumar (Hrsg.)

Über den Autor Abhishek (Hrsg.) Kumar

Abhishek Kumar Singh is an Associate Professor in the Department of Biotechnology Engineering at Chandigarh University, Punjab, India. He received his Ph.D. degree from S.V. National Institute of Technology, Surat, Gujarat. His research focuses on enzyme engineering, bioreactor design, biodegradable plastics, and biofuels. He has authored numerous research articles in collaboration with national and international researchers and contributed book chapters to reputed international publications. He has also presented his work at several national and international conferences. In addition, he has filed 10 Indian patents, of which 2 have already been granted.Neelam Prabha Negi is a distinguished scientist in the field of biotechnology, currently serving as a Scientist -C at the CSIR-Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), India. Prior to joining CSIR-CIMAP, she served as an Associate Professor (Biotechnology) at Chandigarh University, Mohali, India and as a DST-Women Scientist at Jawaharlal Nehru University (JNU), New Delhi. Negi has successfully led and executed research projects funded by the Science and Engineering Research Board (SERB), Government of India. Her research focuses on the genetic manipulation of plants to improve abiotic stress tolerance and enhance the production of valuable secondary metabolites, integrating approaches from molecular biology, genomics, and biotechnology. She has authored numerous research papers, review articles, and book chapters in reputed international journals and has presented her work at several national and international conferences. Her scientific excellence has been recognized through prestigious awards, including the Mahima Promising Scientist Award in Biotechnology, Young Scientist Award in Biotechnology, Young Scientist Award in Plant sciences by Society of Plant Research and the prestigious Hope E. Hopps Award from the Society for In Vitro Biology, USA (received twice)

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