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E-raamat: Waste Engineering and Management: A Sustainable Approach

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The ever increasing global waste generation crisis demands innovative and sustainable solutions that go beyond traditional management practices. This book addresses the key challenges posed by waste across water, air, and land, presenting engineered strategies for sustainable management. Waste Engineering and Management A Sustainable Approach brings together leading international experts to explore advanced valorization technologies, circular economy models, and green engineering innovations that transform waste into wealth.   This comprehensive volume presents a multidisciplinary framework integrating environmental engineering, biotechnology, materials science, and policy perspectives to achieve sustainable waste utilization. By addressing the full spectrum of wastefrom agricultural, municipal, and industrial to electronic, plastic, marine, and hazardousthe book provides actionable pathways toward achieving the United Nations Sustainable Development Goals (SDGs) and building a circular, resource-efficient future. With contributions from renowned scholars and researchers worldwide, the book highlights cutting-edge strategies, real-world case studies, and life-cycle-based approaches to maximize resource recovery and minimize environmental footprints. Whether you are a researcher, engineer, student, or policymaker, this book equips you with the knowledge and tools needed to understand and implement next-generation waste management for a cleaner, greener future.   This edited volume bridges the gap between waste management theory and sustainable engineering practice. It introduces readers to state-of-the-art valorisation technologies and policy mechanisms that can revolutionize waste handling and promote global sustainability. Waste Engineering and Management A Sustainable Approach is an indispensable resource for advancing knowledge, innovation, and practice in environmental and waste management disciplines.
Chapter 1: Introduction to Waste Engineering and Sustainability
Development Goals.
Chapter 2: Sustainable Healthcare and Biomedical Waste
Management.
Chapter 3: Pathways In Construction To Deliver Sdgs 11, 12, And
13 Waste Management For The Built Environment: Unlocking The Circular
Economy.
Chapter 4: Sustainable Agricultural and Food Waste Management.-
Chapter 5: Sustainable Management and Valorization of Electronic Waste.-
Chapter 6: Integrating Microalgae Into Circular Bioeconomy: From Wastewater
Remediation To High-Value Bio-Products.
Chapter 7: Wastewater And Sludge
Valorisation For Resource Recovery.
Chapter 8: From Organic Waste To
Agricultural Wealth: Circular Economy Pathways For The Fertiliser Market.-
Chapter 9: Sustainable Strategies for Industrial Wastewater Management.-
Chapter 10: Smart Wastewater Management and Resource Recovery.
Chapter 11:
Microbiology Approach For Valorization of Waste.
Chapter 12: Industrial
Waste Valorisation and Zero-Waste Strategies.
Chapter 13: Agro-Industrial
Waste Potential Towards A Circular Bioeconomy of Orange Peel.
Chapter 14:
Circular Economy And Waste Valorization: Pathways To Sustainable Technology
And Wealth Creation.
Chapter 15: Waste To Worth: Extraction of Chitosan From
Marine Waste And Its Biomedical Applications.
Chapter 16: Waste To Resource:
Degradation of Air Pollutants Using Solid Catalysts.
Chapter 17: Policy
Frameworks, Regulations, and Governance In Waste Management.
Chapter 18:
Economic, Social, and Environmental Impact of Waste Management.
Chapter 19:
Advances In Digital Technologies For Real-Time Monitoring And Optimization of
Solid Waste-To-Biofuel Conversion Processes.
Chapter 20:  Circular Economy
and Green Policy Integration.
Chapter 21: The Future of Waste Engineering
and Technological Innovations.
Chapter 22: Biotechnology Innovations In
Waste Engineering: A Sustainable Future.
Chapter 23: Circular Waste
Management: Integrating Engineering Practices With Environmental
Responsibility.
Chapter 24: Sustainable Wastewater Management In The Age Of
Plastics: Strategies For Mitigation And Removal.
Dr. Keshava Joshi is the Dean (Administration) and an Associate Professor in the Department of Chemical Engineering at SDM College of Engineering and Technology, Dharwad, Karnataka, India. He obtained his Ph.D. in Chemical Engineering from the National Institute of Technology Karnataka (NITK), Surathkal, specializing in Denitrification in a Spouted Bed Reactor. With over 22 years of academic experience and a decade of active research, his areas of expertise include environmental biotechnology, advanced wastewater treatment, process modelling, and nanotechnology. He has successfully executed a Vision Group of Science and Technology (VGST), Bangalore-sponsored research project (Rs. 20 lakh) as Principal Investigator on Denitrification of Municipal Wastewater using a Spouted Bed Reactor. Additionally, he serves as Co-Principal Investigator for two other VGST-funded projects worth Rs.20 lakh each, focusing on air quality modelling and nanotechnology applications. He has published more than 40 research papers and book chapters in reputed scopus-indexed international journals. He has presented his work at numerous national and international conferences, earning several Best Paper Awards. He also serves as a peer reviewer for many leading scientific journals, contributing actively to the academic and research community.  

Dr. Lokeshwari Navalgund is an Associate Professor in the Department of Chemical Engineering at SDM College of Engineering and Technology, Dharwad, Karnataka, India. She obtained her Ph.D. from the National Institute of Technology Karnataka (NITK), Surathkal, specializing in Air Quality Modelling using Remote Sensing (RS) and Geographic Information Systems (GIS). With over 22 years of academic experience and a decade of dedicated research, Dr. Navalgunds research interests encompass air and water quality modelling, adsorption, advanced wastewater treatment, and nanotechnology. She has published more than 40 research papers and book chapters in reputed scopus-indexed journals. She has actively participated in numerous national and international conferences and has received several Best Paper Awards for her research contributions. Dr. Navalgund has also successfully completed a Vision Group of Science and Technology, Bangalore sponsored research project worth Rs.20 lakh, titled Source Apportionment Studies for Hubli-Dharwad City. She serves as a peer reviewer for several leading journals in the domains of chemical, environmental, and nanotechnology research.   Dr. Nabisab Mujawar Mubarak is an Associate Professor in the Department of Chemical Engineering, College of Engineering, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh 11432, Saudi Arabia. He is a scientific reviewer for numerous journals in Chemical Engineering and Nanotechnology. In research, Dr. Mubarak has published over 460 journal papers and 40 conference proceedings, authored 85 book chapters, and has an H-index of 88. His areas of interest include the synthesis of carbon nanomaterials, the production of magnetic biochar via microwave heating, and wastewater treatment using advanced materials. He received the Curtin Malaysia Most Productive Research Award, the Outstanding Faculty of Chemical Engineering Award, the Best Scientific Research Award in London, and the Exceptional Scientist Award in publication and citation by i-Proclaim, Malaysia. Since 2020, he has also been listed among the top 2% of the world's most influential scientists in the fields of chemistry and energy. The List of the Top 2% of Scientists in the World, compiled and published by Stanford University, is based on international scientific publications, the number of scientific citations for research, and participation in the review and editing of scientific research. Dr. Mubarak is a Fellow Member of the Institution of Engineers Australia, a Chartered Professional Engineer (CPEng) of The Institution of Engineers Australia, and a Chartered Chemical Engineer of the Institute of Chemical Engineering (IChemE), UK. He has published 11 books and is co-editor for ongoing Elsevier-edited books: 1) Nanomaterials for Carbon Capture and Conversion Technique, 2) Advanced Nanomaterials and Nanocomposites for Bioelectrochemical Systems, 3) Water Treatment Using Engineered Carbon Nanotubes,4)  Hybrid Nanomaterials for Sustainable Applications: Case Studies and Applications, 5), Sustainable Nanotechnology for Environmental Remediation, 6) Nanotechnology for Biomedical Applications,7) Nanotechnology for Electronic Applications, 8) Application of Bio-Additives for the Food Industry, 9) Contemporary Nanomaterials in Material Engineering Applications, 10)Fundamentals of Biomaterials: A Supplementary Textbook, 11) Emerging Water Pollutants: Concerns and Remediation Technologies 12) Advances in Treatment Methods Towards Emerging Contaminants Sources, Occurrences and Health Effects.    Prof. Dr. Mohammad Hadi Dehghani is a full professor at the Tehran University of Medical Sciences (TUMS), School of Public Health, Department of Environmental Health Engineering, Tehran, Islamic Republic of Iran. His scientific research interests include environmental science. He is the author of various research studies published in national and international journals and conference proceedings, and head of several research projects at the TUMS. He has authored 20 books, 30 book chapters, and more than 280 full papers published in peer-reviewed journals. He is an editorial board member, guest editor, and reviewer in many internal and international journals and a member of several international science committees worldwide. He is also included in the ESI Top 1% of researchers worldwide. He is a supervisor and advisor for many PhD and MSc theses at the TUMS. He is also currently a member of the Iranian Association of Environmental Health (IAEH) and the Institute for Environmental Research (IER) at TUMS. He is an editor for 16 edited books (English): (1) Soft Computing Techniques in Solid Waste and Wastewater Management, (2) Environmental and Health Management of Novel Coronavirus Disease (COVID-19), (3) Green Technologies for the Defluoridation of Water, (4) Pesticide Remediation Technologies From Water and Wastewater, (5) COVID-19 and Sustainable Development Goals, (6) Industrial Wastewater Treatment: Emerging Technologies for Sustainability, (7) Sustainable Materials for Sensing and Remediation of Noxious Pollutants, (8) Wastewater-Based Epidemiology for the Assessment of Human Exposure to Environmental Pollutants, (9) Water Treatment Using Engineered Carbon Nanotubes, (10) Water, the Environment and the Sustainable Development Goals, (11) Sustainable Remediation Technologies for Emerging Pollutants in Aqueous Environment, (12) Health and Environmental Effects of Ambient Air Pollution, (13) Health Effects of Indoor Air Pollution, (14) Diseases Attributed to Air Pollution, (15) Biotechnology Engineering, (16) Ultrasonic Treatment of Water and Wastewater.   Dr. Vinayaka B. Shet is an Associate Professor in the Department of Biotechnology Engineering, NMAMIT, off-campus centre, Nitte (Deemed to be university), Nitte, Karnataka, India. He holds a Ph.D. in Biotechnology from VTU Belagavi, an M.Tech. in Industrial Biotechnology from the National Institute of Technology Karnataka (NITK), and a B.E. in Biotechnology from P.A. College of Engineering, Mangaluru. He has over 18 years of experience in Academics, 10 years in Research, and 1 year in Industry. He received a young researcher award. He has published over 30 research articles and 10 book chapters and holds two Indian patents. He is a reviewer of various journals. He serves as Coordinator (Accreditation and Compliance) at Nitte (Deemed to be University), Mangaluru, India. His Research Interests include Biomass pretreatment, Bioprocess development, Fermentation, Indian traditional knowledge, Oenology, Optimization, Synthesis of nanoparticles and their applications.