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  • 1
    UID:
    edoccha_BV048886467
    Format: 1 Online-Ressource (XXX, 288 p. 174 illus., 148 illus. in color).
    Edition: 1st ed. 2023
    ISBN: 978-981-1984-64-8
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-63-1
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-65-5
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-66-2
    Language: English
    Keywords: Klimaänderung ; Klimaschutz ; Nachhaltigkeit ; Bauwesen ; Soziobiologie ; Konferenzschrift
    URL: Volltext  (URL des Erstveröffentlichers)
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    UID:
    almahu_9949762862102882
    Format: 1 online resource (284 pages)
    Edition: 1st ed.
    ISBN: 0-443-22317-3
    Note: Front Cover -- Waste-based Zeolite -- Copyright Page -- Contents -- 1 Introduction to zeolite -- 1.1 Background of zeolite -- 1.2 Classification of zeolite -- 1.3 Structure of zeolite -- 1.4 Zeolite formation mechanism and effect of synthesis parameters on the obtained products -- 1.4.1 Zeolitization -- 1.5 Effect of various parameters on zeolite preparation -- 1.5.1 Effect of crystalline time -- 1.5.2 Effect of crystallization temperature -- 1.5.3 Aging time -- 1.5.4 Variation of aging temperature -- 1.5.5 Silica/alumina molar ratio -- 1.5.6 Concentration of alkaline source -- 1.6 Various techniques for zeolite synthesis and their limitations -- 1.6.1 Hydrothermal technique -- 1.6.2 The alkaline fusion-facilitated hydrothermal technique -- 1.6.3 Zeolite preparation via two-stage hydrothermal treatment -- 1.6.4 Molten-salt method -- 1.6.5 Green synthesis (ionothermal) technique -- 1.6.6 Microwave-irradiation technique -- 1.6.7 Ultrasound irradiation technique -- 1.6.8 Ball milling energy approach (solvent-free and solvent-aided synthesis route) -- 1.7 Characterization of zeolite -- 1.7.1 Energy dispersive X-ray spectroscopy -- 1.7.1.1 EDX analysis of zeolite Na-A -- 1.7.1.2 EDX-ray spectroscopy of Na-Y zeolite -- 1.7.2 Electron microscopy analysis for imaging (FESEM) -- 1.7.3 X-ray diffraction analysis -- 1.7.4 Fourier transform infrared spectroscopy -- 1.8 Application of zeolite -- 1.8.1 Catalysis -- 1.8.2 Adsorption -- 1.9 Summary -- References -- 2 Solid waste as a potential source for zeolite synthesis -- 2.1 Introduction -- 2.2 Industrial waste -- 2.2.1 Steel industry slag -- 2.2.1.1 Characterization of steel slag -- 2.2.1.1.1 Physicochemical characterization of BOF slag -- 2.2.1.1.2 Physicochemical characterization of EAF slag -- 2.2.1.1.3 Physicochemical characterization of LF slag -- 2.2.1.2 Scope of zeolite synthesis from steel slag. , 2.2.2 Power plant fly ash (coal fly ash) -- 2.2.2.1 Characterization of coal fly ash -- 2.2.2.1.1 X-ray fluorescence analysis of CFA -- 2.2.2.1.2 XPS analysis of CFA -- 2.2.2.1.3 Field emission scanning electron microscopy analysis of CFA -- 2.2.2.1.4 Scope of zeolite formation from CFA -- 2.3 Municipal solid waste -- 2.3.1 Physicochemical characteristics of municipal waste -- 2.3.1.1 Elemental analysis of MSW -- 2.3.1.2 X-ray fluorescence and field emission scanning electron microscopy analysis of MSW -- 2.3.1.3 Thermogravimetric analysis of MSW -- 2.3.2 Municipal solid waste as a zeolite source -- 2.4 Conclusion -- References -- 3 Preparation of different types of zeolite from steel slag -- 3.1 Zeolite synthesis from various slag sources -- 3.1.1 Blast furnace slag -- 3.1.2 Electric arc furnace slag -- 3.1.3 Linz-Donawitz slag -- 3.2 Major limitations and challenges -- 3.3 Future prospective and conclusion -- References -- 4 Synthesis of zeolite from coal fly ash -- 4.1 Introduction -- 4.2 Classification of coal fly ash -- 4.3 Surface morphology -- 4.4 The crystalline structure of coal fly ash -- 4.5 Zeolite synthesis from coal fly ash utilizing various techniques -- 4.5.1 Traditional hydrothermal method -- 4.5.2 Microwave assistance technique -- 4.5.3 Ultrasound energy technique -- 4.5.4 Fusion followed by hydrothermal treatment -- 4.5.5 Reagents addition method -- 4.6 Critical assessment and future perspective -- References -- 5 Synthesis of zeolite from biomass fly ash -- 5.1 Introduction -- 5.2 Outline of zeolite synthesis -- 5.2.1 Rice husk ash -- 5.2.1.1 Characterization of RHA -- 5.2.1.2 Several types of zeolite synthesis from RHA -- 5.2.2 Sugarcane bagasse fly ash -- 5.2.2.1 Characterization of SBFA -- 5.2.2.2 Zeolite preparation from SBFA -- 5.2.3 Palm oil mill fly ash -- 5.2.3.1 Characterization of POMFA. , 5.2.3.2 Different kinds of zeolite synthesis using POMFA -- 5.2.4 Bamboo leaf -- 5.2.4.1 Preparation of bamboo leaf ash -- 5.2.4.2 Characterization of bamboo leaf and ash -- 5.2.4.3 Zeolite synthesis from bamboo leaf biomass ash -- 5.3 Conclusion and future outlook -- References -- 6 Utilization of municipal solid waste fly ash for zeolite preparation -- 6.1 Introduction -- 6.2 Various techniques to prepare zeolite from municipal solid waste -- 6.2.1 Alkali fusion followed by hydrothermal method -- 6.2.1.1 Effects of operating temperature -- 6.2.1.2 Effects of mineralizer concentration -- 6.2.1.3 Effects of solid-to-liquid ratio -- 6.2.2 Microwave-assisted hydrothermal method -- 6.2.2.1 Effect of microwave-assisted hydrothermal treatment time -- 6.2.2.2 Effects of NaOH concentration -- 6.2.2.3 Effect of Na2SiO3 dosage -- 6.3 Challenges and future recommendation -- 6.4 Conclusion -- 6.5 AI Disclosure -- References -- 7 Zeolite synthesis from miscellaneous waste resources -- 7.1 Introduction -- 7.2 Overview of zeolite synthesis approaches -- 7.3 Zeolite synthesis from various solid wastes -- 7.3.1 Glass waste -- 7.3.2 Alum sludge -- 7.3.3 Coal fly ash -- 7.3.4 Lithium sludge -- 7.3.5 Aluminum scrap -- 7.3.6 Bauxite residue -- 7.3.7 Crushed stone powder -- 7.3.8 Cupola slag -- 7.3.9 Porcelain waste -- 7.3.10 Opal waste rock -- 7.4 Challenges and future recommendations -- 7.5 Conclusion -- AI disclosure -- References -- 8 Various aspects in the application of waste-based zeolite -- 8.1 Introduction -- 8.2 Waste-based zeolites for environmental remediation -- 8.2.1 Hazardous gas removal -- 8.2.1.1 Removal of CO2 -- 8.2.1.2 Removal of sulfur compounds -- 8.2.1.3 Removal of N compounds -- 8.2.1.4 Elimination of volatile organic compounds -- 8.2.1.5 Elimination of Hg vapor -- 8.2.2 Wastewater treatment application -- 8.2.2.1 Removal of heavy metals. , 8.2.2.2 Removal of organic pollutants -- 8.2.2.3 Water softening -- 8.2.3 Zeolites as a potential source of biodiesel production -- 8.3 Limitations and challenges -- 8.4 Conclusion and future perspective -- References -- 9 Differences between commercial zeolite and waste-derived zeolite -- 9.1 Introduction -- 9.2 Characterization study of pure vs synthetic zeolite -- 9.2.1 X-ray diffraction analysis -- 9.2.2 FESEM analysis -- 9.2.3 BET analysis -- 9.2.4 X-ray fluorescence (XRF) analysis -- 9.3 Applications of pure and waste-derived zeolite -- 9.3.1 Catalysis -- 9.3.2 Adsorption experiment -- 9.3.3 Biomedical applications -- 9.4 Summary -- References -- 10 Advancement in zeolite regeneration techniques -- 10.1 Introduction -- 10.2 Regeneration process -- 10.2.1 Chemical regeneration -- 10.2.1.1 Zeolite regeneration -- 10.2.1.2 Optimization for NaClO-NaCl regeneration -- 10.2.2 Biological regeneration -- 10.2.3 Electrochemical process -- 10.3 Challenges and future prospective -- 10.4 Conclusion -- 10.5 AI disclosure -- References -- Index -- Back Cover.
    Additional Edition: ISBN 0-443-22316-5
    Language: English
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  • 3
    UID:
    edocfu_BV048886467
    Format: 1 Online-Ressource (XXX, 288 p. 174 illus., 148 illus. in color).
    Edition: 1st ed. 2023
    ISBN: 978-981-1984-64-8
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-63-1
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-65-5
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-66-2
    Language: English
    Keywords: Klimaänderung ; Klimaschutz ; Nachhaltigkeit ; Bauwesen ; Soziobiologie ; Konferenzschrift
    URL: Volltext  (URL des Erstveröffentlichers)
    Library Location Call Number Volume/Issue/Year Availability
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  • 4
    UID:
    almafu_BV048886467
    Format: 1 Online-Ressource (XXX, 288 p. 174 illus., 148 illus. in color).
    Edition: 1st ed. 2023
    ISBN: 978-981-1984-64-8
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-63-1
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-65-5
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-66-2
    Language: English
    Keywords: Klimaänderung ; Klimaschutz ; Nachhaltigkeit ; Bauwesen ; Soziobiologie ; Konferenzschrift
    URL: Volltext  (URL des Erstveröffentlichers)
    Library Location Call Number Volume/Issue/Year Availability
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  • 5
    UID:
    almafu_9961491825802883
    ISBN: 0-443-21613-4 , 9780443216138 , 0-443-21612-6
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 6
    UID:
    almahu_9949468849602882
    Format: XXX, 288 p. 174 illus., 148 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9789811984648
    Content: This book covers topics that addresses the global environmental issues, their challenges, and mitigation strategies for sustainable development. Some of the major challenges global environment is facing currently are global warming induced climate change because of which various extreme weather events such as flood, drought, cyclone, forest fires have increased. Industrialization with urbanization and human anthropogenic activities have caused detrimental effect on the environment resulting in environmental pollution (air and water pollution), deforestation, degradation of ecosystems, soil erosion, ground water depletion, drinking water scarcity, biodiversity loss, depletion of fossil fuels, etc. Therefore, it has become utmost necessary to switch to significant lifestyle stages along with conservation of natural resources for a sustainable environment. Sustainable environment may be defined as the practice of responsibly managing natural resources and protect overall ecosystem to support health and well-being of present and future generations. One of the major environment sustainability is the use of renewable sources of energy such as solar, wind, hydroelectric, and biomass which will reduce environmental pollution and also minimize resource misuse. At the same time, crop rotation, solid waste management, water treatment, wastewater treatment are some of the sustainable practices we must carry out for a sustainable environment. Hope, the content of the book gives an overview of recent developments, knowledge gaps related to new research areas related to environment and their future prospects.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9789811984631
    Additional Edition: Printed edition: ISBN 9789811984655
    Additional Edition: Printed edition: ISBN 9789811984662
    Language: English
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  • 7
    UID:
    gbv_1850434271
    Format: 1 online resource (300 pages) , Illustrationen
    ISBN: 9789811984648
    Content: Intro -- Foreword -- Preface -- About This Book -- About IIT Guwahati -- From the Desk of Chairman of Technical Committee of NERC 2022 -- North East Research Conclave-2022: Toward Sustainable Science and Technology -- Contents -- About the Editors -- Water Quality and Wastewater Treatment -- Multi-metal Adsorption and Cyclic Desorption Characteristics of Zn+2 and Cu+2 Constituting Multi-component Synthetic Wastewater System Using Commercial Resins -- 1 Introduction -- 2 Methodology and Materials -- 2.1 Chemicals and Reagents -- 2.2 Characterizations and Analysis -- 2.3 Multi-heavy Metal Containing Synthetic Wastewater Solutions -- 2.4 Batch Adsorption Studies -- 2.5 Batch Desorption Studies -- 3 Results and Discussion -- 3.1 Batch Adsorption Characteristics -- 3.2 Equilibrium and Kinetic Model Fitness -- 3.3 Commercialized Resin Characterization -- 3.4 Cyclic Desorption Characteristics -- 4 Conclusions -- References -- Investigation of Microalgae Growth in a Mixture of Kraft Paper Industry Effluent and Biogas Slurry: Wastewater Treatment and Biodiesel Production -- 1 Introduction -- 2 Materials and Methods -- 2.1 Collection of Samples -- 2.2 Pre-treatment of the Effluent -- 2.3 Media Preparation -- 2.4 Microorganism Selection and Growth Condition -- 2.5 The Dry Weight of Algal Biomass -- 2.6 Lipid Extraction (Lipid Percentage) -- 2.7 Biodiesel Production -- 3 Results and Discussions -- 3.1 Microalgal Growth -- 3.2 Physical Parameters of the Prepared Samples (After and Before Being Treated with Algae) -- 3.3 Chemical Parameter of Kraft Paper Mill Effluent and Biogas Slurry -- 3.4 Biomass and Lipid Production -- 3.5 Biodiesel Analysis-NMR Spectroscopy -- 4 Conclusion -- References -- Pharmaceutically Active Compounds' (PhACs) Threat: An Environmental Prospective -- 1 Introduction -- 2 Pharmaceutically Active Compounds (PhACs).
    Note: Description based on publisher supplied metadata and other sources
    Additional Edition: ISBN 9789811984631
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 9789811984631
    Language: English
    Keywords: Konferenzschrift
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  • 8
    UID:
    edocfu_9961491825802883
    ISBN: 0-443-21613-4 , 9780443216138 , 0-443-21612-6
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 9
    UID:
    edoccha_9961491825802883
    ISBN: 0-443-21613-4 , 9780443216138 , 0-443-21612-6
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 10
    UID:
    b3kat_BV048886467
    Format: 1 Online-Ressource (XXX, 288 p. 174 illus., 148 illus. in color)
    Edition: 1st ed. 2023
    ISBN: 9789811984648
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-63-1
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-65-5
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-1984-66-2
    Language: English
    Keywords: Klimaänderung ; Klimaschutz ; Nachhaltigkeit ; Bauwesen ; Soziobiologie ; Konferenzschrift
    URL: Volltext  (URL des Erstveröffentlichers)
    Library Location Call Number Volume/Issue/Year Availability
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