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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Miljöteknik

    Sustainable Water Purification

    AvM. R. Islam,M. Safiur Rahman

    Inbunden, Engelska, 2020

    Del i serien Wiley-Scrivener

    2 523 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    This is the only book that takes a zero-waste approach to propose 100% sustainable water purification techniques.Water is synonymous with life. This has been the case since pre-historic time to the modern era. For the first time, humanity faces a crisis that eclipses the energy crisis, which has often incapacitated the global economy. The Climate-Water-Food nexus epitomizes our current civilization that depends on energy as the driver. Many recognize this crisis as a product of fossil fuel production, which allegedly triggered climate change and the "climate change debate." Others predict the onslaught of "water wars" in the coming decades. As the world gears up to another lineup of empty promises and ensuing chaos, this book turns this crisis on its head and shows the source of the water crisis.The science behind the water cycle is described in clear language, without resorting to dogmatic assertions and spurious assumptions. The role of the sun, natural carbon dioxide (CO2) and water and the need to maintain natural processes free from artificial chemicals are discussed in detail. The book makes it clear how most of the currently used purification techniques violates the natural cycle involving sunlight, CO2 and water, and thus become unsustainable.A series of water purification techniques, as usable for drinking, agricultural and industrial applications are presented. The advantages of these techniques and their long-term sustainability are highlighted, with discussion on improvements in the future. Whether for the engineer or scientist working in the field or laboratory or the student, this is a must-have for any engineer, scientist, student, or policymaker.

    Produktinformation

    • Utgivningsdatum:2020-10-02
    • Mått:10 x 10 x 10 mm
    • Vikt:454 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Wiley-Scrivener
    • Antal sidor:352
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119650997

    Utforska kategorier

    • Miljöteknik inom Naturvetenskap och teknik

    Mer om författaren

    M. Safiur Rahman, PhD, is Chief Scientific Officer (CSO) and Professor in the field of environmental analytical chemistry at Bangladesh Atomic Energy Commission. He has extensive experience and has published over 100 scientific articles, book chapters and several books. His expertise is in the areas of drinking water quality improvement and environmental restoration, and he has received several prestigious awards for his academic accomplishments and research. M. R. Islam, PhD, is known as the most published engineer in the world. He has coined terms such as "green petroleum," "sustainable petroleum development," "economics of intangibles," "zero waste engineering," and others. His work has created a paradigm shift in a wide range of applications, spanning various disciplines. His most notable contribution is in the areas sustainability, environmental integrity, the greening of petroleum and pharmaceutical industries, and knowledge modeling, on which topic he has written dozens of books and nearly 800 research papers. His latest work is captured in his latest books: The Science of Climate Change and Economics of Sustainable Energy, both available from Wiley-Scrivener.

    Innehållsförteckning

    • Preface xi1 Introduction1.1 Opening Remarks 11.2 Climate-Water-Food Nexus 51.3 Background 81.4 Insufficiency in Water Purification Processes 91.5 Introduction to Zero Waste Engineering 111.6 Scope of the Book 121.7 Organization and Introduction of the Chapters 122 Water Science2.1 Introduction 152.2 Unique Features of Water 162.3 Natural State of Matter 312.4 Source of Water and Its Role in Sustaining Life 372.4.1 Inorganic Minerals 382.4.2 Organic Contaminants 492.4.3 Radioactive Minerals 492.4.4 Biological 503 Sustainability of Current Water Purification Technologies3.1 Introduction 593.2 Sustainability Criteria 683.3 Sustainability in the Information Age and Environmental Insult 693.3.1 Agriculture and Development 713.3.2 Desertification 723.3.3 Ecosystem Change 723.3.4 Fisheries 723.3.5 Deforestation 733.3.6 Marine Litter 743.3.7 Water Resources 753.4 Biological Processes 773.4.1 Sulfate Reducing Bacteria 803.5 Chemical Precipitation 823.6 Membrane Separation 853.6.1 Microfiltration 883.6.2 Ultrafiltration 903.6.3 Nanofiltration 923.6.4 Reverse Osmosis 953.7 Ion Exchange 973.8 Ozonation 993.9 UV Radiation 1043.10 Adsorption 1073.10.1 Existing Sorbents 1083.10.2 Agricultural Waste 1093.10.3 Industrial By-Products 1143.10.4 Natural Materials 1184 Sustainable Drinking Water Purification Techniques4.1 Introduction 1234.2 Natural Lifestyle 1264.2.1 Environmental Awareness 1314.2.2 Corporatization and Healthcare 1344.2.3 Death and Lifestyle 1354.2.4 Role of Water in Bodily Functions 1404.2.5 A Relevant Anecdote 1474.3 Natural Minerals 1484.3.1 Filters 1494.3.2 Ground Water Recharge 1504.3.3 Aeration 1504.3.4 Brick, Clay and Others 1504.4 Solar UV Treatment 1514.5 Natural Ozonation 1525 Sustainable Purification Techniques for Agricultural Waters5.1 Introduction 1555.2 Organic vs. Chemical Agricultural Practices 1615.2.1 Denaturing for a Profit 1695.2.2 The Consequences 1705.2.3 The Sugar Culture and Beyond 1715.3 Removal of Heavy Metals 1795.3.1 Application of Wood Sawdust for Removal of Heavy Metals 1815.3.1.1 Composition, Structure and Morphology of Wood 1825.3.1.2 Structure and Morphology of Wood 1835.3.1.3 Removal of Heavy Metals Using Wood Saw Dust 1915.3.1.4 Conclusion 2065.4 Removal of Heavy Metals Using Fish Scale 2085.4.1 Fish Scale Collection and Treatment 2085.4.2 Experimental Setup and Procedure 2095.4.2.1 Static Method 2095.4.2.2 Dynamic Method 2115.4.3 Conclusions 2155.5 Solar UV Treatment 2165.5.1 Effects of UV-Radiation 2175.5.2 Effects of Temperature (Infrared Radiation) 2185.5.3 Advantages of Solar Water Disinfection (SoDis) 2185.5.4 Limitations of Solar Water Disinfection 2195.6 Bioremediation for Sustainable Purification of Water 2196 Sustainable Purification Techniques for Industrial Wastes6.1 Removal of Radionuclides 2216.2 Removal of Heavy Metals Precious Metals 2246.2.1 Precious Metals and Heavy Metals Recovery 2256.3 Industry Lifestyle Change 2316.3.1 Mercury 2376.3.2 Sal Ammoniac 2446.3.3 Sulphur 2466.3.4 Arsenic Sulphide 2516.3.5 Refining Techniques 2566.4 The Energy/Water Crisis 2586.4.1 Are Natural Resources Finite and Human Needs Infinite? 2586.4.2 The Finite/Infinite Conundrum 2696.5 Certain Sustainable Technologies 2706.5.1 Direct Use of Solar Energy 2706.5.2 Effective Separation of Solid from Liquid 2746.5.3 Effective Separation of Liquid from Liquid 2756.5.4 Agricultural Waste for Water Purification and Value Addition 2766.5.4.1 Orange Peel 2776.5.4.2 Pomelo Peel 2776.5.4.3 Grapefruit Peel 2786.5.4.4 Lemon Peel 2786.5.4.5 Banana Peel 2796.5.4.6 Cassava Peel 2806.5.4.7 Jackfruit Peel 2816.5.4.8 Pomegranate Peel 2816.5.4.9 Garlic Peel 2826.5.5 A Novel Desalination Technique 2836.5.6 A Novel Separation Technique 2967 Summary and Conclusions7.1 Summary 2997.2 Conclusions 3007.2.1 Chapter 1: Introduction 3007.2.2 Chapter 2: Water Science 3007.2.3 Chapter 3: Sustainability of Current Water Purification Techniques 3017.2.4 Chapter 4: Sustainable Drinking Water Purification Techniques 3017.2.5 Chapter 5: Sustainable Purification Techniques for Agricultural Wastes 3027.2.6 Chapter 6: Sustainable Purification Techniques for Industrial Wastes 302References and Bibliography 303Index 325