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    1. Naturvetenskap och teknik
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    3. Maskinteknik och material

    Advanced Functional Materials for Membrane-Assisted Water Purification

    AvSabu Thomas,Prajisha Prabhakar

    Häftad, Engelska, 2027

    Del i serien Woodhead Publishing in Materials

    2 727 kr

    Beställningsvara. Skickas inom 11-20 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Advanced Functional Materials for Membrane-Assisted Water Purification provides readers with a thorough overview of the principles and practices involved in membrane-assisted water purification. It explains the concepts and procedures involved in membrane-assisted water filtration, as well as some of its practical applications. Various types of membranes are discussed, including porous polymeric, ultrafiltration, 3D-printed, biochar-based, hydrogel, air-gap, and more. The morphology, structure, properties, and best-use applications of each are outlined, and other considerations such as preparation techniques, characterization techniques, reverse osmosis, deep eutectic solvents, and modeling techniques are covered as well.

    • Covers the uses, structures, morphologies, and properties of a variety of different membranes, including nanofiltration membranes, additive manufactured membranes, electro-membranes, metal-organic framework (MOF) and covalent-organic framework (COF) membranes, and more
    • Outlines environmental remediation and antifouling techniques via the use of membranes
    • Discusses characterization techniques, reverse osmosis, deep eutectic solvents, and modeling techniques

    Produktinformation

    • Utgivningsdatum:2027-04-01
    • Mått:152 x 229 x undefined mm
    • Format:Häftad
    • Språk:Engelska
    • Serie:Woodhead Publishing in Materials
    • Antal sidor:800
    • Förlag:Elsevier Science
    • ISBN:9780443315602

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Professor Sabu Thomas is currently an Emeritus Professor of Mahatma Gandhi University, Kottayam, Kerala, India. He was the former Vice Chancellor of Mahatma Gandhi University. He is a Senior Professor of Christ University, Bangalore, India. He is also a visiting Professor at the Department of Chemical Sciences, University of Johannesburg, Johannesburg, South Africa, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok, Thailand, and an Adjunct Faculty in the Department of Polymer and Process Engineering, IIT Roorkee, India. He is the Chairman of the TrEST Research Park, Trivandrum, Kerala, India. The H index of Professor Thomas is 163 and he has more than 133,000 citationsPrajisha Prabhakar works at Mahatma Gandhi University in India. Marwa Shalaby works in the Research Institute, National Research Centre, Cairo, Egypt. Frank Lipnizki is Professor in Chemical Engineering with focus on Separation Process in the Department of Chemical Engineering at Lund University, Sweden since 2017. Furthermore, he heads the Membrane Group at Lund University and manages MemLab – the Industrial membrane process research and development centre – at Lund University. Before joing the university Frank Lipnizki was working for 16 years in the membrane industry at Alfa Laval Business Centre Membranes (previously Danish Separation Systems). His main research focuses on the integration and optimisation of separation process in particular membrane processes in the food, biotech, pulp and paper industry as well as water and wastewater treatment plus fouling and cleaning of membranes. Frank Lipnizki’s h-index is 18, with 137 document results (30/June/2020, scholar.google.com), with a total of 1752 citations. Frank Lipnizki prepared has 35 scientific papers in peer to peer journals and 91 papers in international congresses plus 59 seminars and workshop presentations. Furthermore, he edited 3 conference proceedings plus 1 book and contributed 15 book chapters. He is also refree for 32 journals and on the editorial board of three journals. Frank Lipnizki is currently Vice-President of the European Membrane Society and heads the Annex “Membranes in Biorefineries” by IETS – a collaboration program of the International Energy Agency (IEA).

    Innehållsförteckning

    • 1. State of Art and New Challenges in Membrane-Assisted Water Purification2. Morphology, Structure, and Properties of Membrane3. Membrane preparation techniques for water purification4. Creating Porous Polymeric Membranes5. Characterizing Membrane-Assisted Water Purification Techniques6. Recent Progress in Microfiltration and Ultrafiltration Membranes7. Recent Developments for Nanofiltration8. A Brief Introduction to Reverse Osmosis9. Deep eutectic solvents – A new platform in membrane fabrication and membrane-assisted technologies10. Nanochitin in Membrane Assisted Applications11. Recent Trends and Advances in Nanoporous Membranes for Water Purification12. Biochar Based Membranes for Membrane Assisted Water Purification13. Photothermally enabled MXene hydrogel membrane with integrated solar-driven evaporation and photodegradation for efficient water purification14. High-performance porous graphene oxide hollow fiber membranes with tailored pore sizes for water purification15. Downstream variations of air-gap membrane distillation and comparative study with direct contact membrane distillation: A modelling approach16. Modeling Water Treatment Using Membrane-Based Processes17. Solar-assisted membrane technology for water purification18. Eco-friendly methodologies for the remediation of environmentally persistent nanoplastics from industrial effluents and water19. Cost-effective polymer-based membranes for drinking water purification20. High-Performance Boron Nitride-Based Membranes for Water Purification21. Graphitic Materials for Energy-Efficient Membrane Separation22. Recent progress and new perspective of MXene-based membranes for water purification23. The Creation of High-Speed Permeation Membranes24. Nanocellulose based materials for water purification processes25. Photo-oxidation treatment for membrane assisted water purification techniques26. Photocatalytic Membranes with superior performance for water purification concerning environmental and operational factors27. Assessment of Membrane Based Processes Among Existing Environmental Remediation Techniques for Strategic Separation and Inactivation of Viruses28. Field demonstration of an integrated bio-physical process for generating drinking water from endocrine disrupting perchlorate contaminated ground water29. Recent Advances in Nature-Inspired Antifouling Membranes for Water Purification30. Characterizing Membrane-Assisted Water Purification Techniques31. Life Cycle Analysis of Materials for Membrane Assisted Water Purification Techniques32. The Life Cycle Assessment Guided the Development of a Wood-Based Filtration System Designed for Effective Water Purification and the Reclamation of Oil Using Deep Eutectic Solvents33. Lab to Industry Materials for Membrane Assisted Water Purification