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SCIDIR_on1393307442 |
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20231120010750.0 |
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230812s2023 cau o 000 0 eng d |
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|a 1393203862
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|a 9780323952811
|q electronic book
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|a 032395281X
|q electronic book
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|z 9780323952804
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|a (OCoLC)1393307442
|z (OCoLC)1393203862
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|a TD429
|b .Z36 2023
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|a 628.162
|2 23/eng/20230830
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|a Zamparas, Miltiadis G.
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|a Water Management and Circular Economy.
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|a San Diego :
|b Elsevier,
|c 2023.
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|a 1 online resource (478 p.)
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|a text
|b txt
|2 rdacontent
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|a computer
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|2 rdamedia
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|a online resource
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|a Front cover -- Half title -- Title -- Copyright -- Contents -- Contributors -- About the editors -- Preface -- Part I Introduction and Fundamentals -- Chapter 1 Closing the loop in water management -- 1.1 Introduction -- 1.2 Methods -- 1.3 Strategies for circularity in the water sector -- 1.4 Enabling circularity in the water sector -- 1.4.1 Circular business models -- 1.4.2 Digital technologies enabling circular economy: reconnecting with water -- 1.4.3 Enabling circularity in the water sector through real-life experimentation -- 1.5 Conclusion -- References
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|a Chapter 2 Selecting resource recovery technologies and assessment of impacts -- 2.1 Introduction -- 2.2 Technology selection on a regional scale -- 2.2.1 Approach -- 2.2.2 Baseline modeling -- 2.2.3 Market potentials -- 2.2.4 Multi-criteria analysis -- 2.2.5 Quantifying improvements -- 2.2.6 UK wastewater example -- 2.2.7 Transferability -- 2.3 Circularity measurement and assessment to support decision-making -- 2.4 Conclusion -- References -- Chapter 3 Circularity in wastewater allocation as a solution for increased water availability: A focus on optimization methods and applications
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|a 3.1 Introduction -- 3.2 Toward the reduction of wastewater treatment plants's emissions -- 3.3 Wastewater and circular economy -- 3.3.1 Recovery -- 3.3.2 Reuse -- 3.4 Optimization methods and applications -- 3.4.1 Process integration -- 3.4.2 The water source diagram -- 3.4.3 The algebraic method -- 3.4.4 Other methods -- 3.5 Limitations to circular economy frameworks -- 3.6 Conclusion -- Acknowledgment -- References -- Part II Novel wastewater treatment techniques in terms of circular economy
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|a Chapter 4 The use of nature-based solutions for circular water management: International case studies and examples of ecological engineering -- 4.1 The transition to the circular economy -- 4.2 Water as a resource in the circular economy -- 4.3 Nature-based solutions for circular water management -- 4.4 NBS case studies -- 4.4.1 Wastewater treatment and reuse at a single household -- 4.4.2 Wastewater treatment and reuse at a university dormitory -- 4.4.3 Manufacturing industry wastewater treatment and reuse -- 4.4.4 Wastewater treatment and reuse in the oil industry -- 4.5 Conclusions
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|a References -- Chapter 5 Advanced wastewater oxidation processes and their role in water reuse for a circular economy -- 5.1 Introduction -- 5.2 Advanced oxidation processes -- 5.3 Hydrodynamic cavitation -- 5.3.1 Effect of the operative conditions on HC degradation efficiency -- 5.3.2 Experimental activity by using a lab-scale apparatus with a Venturi tube -- 5.3.3 Hybrid technologies for wastewater treatment based on hydrodynamic cavitation -- 5.3.4 Hybrid technologies for water reuse based on hydrodynamic cavitation -- 5.4 Conclusion -- References
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|a Chapter 6 Sustainable management of reused water by the implementation of photo-Fenton and floatation method in petroleum industries
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|a Water reuse
|x Economic aspects.
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|a Circular economy.
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|a Kyriakopoulos, Grigorios L.
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|i Print version:
|a Zamparas, Miltiadis G.
|t Water Management and Circular Economy
|d San Diego : Elsevier,c2023
|z 9780323952804
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776 |
0 |
8 |
|i Print version:
|t WATER MANAGEMENT AND CIRCULAR ECONOMY.
|d [S.l.] : ELSEVIER - HEALTH SCIENCE, 2023
|z 0323952801
|w (OCoLC)1354259969
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856 |
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|u https://sciencedirect.uam.elogim.com/science/book/9780323952804
|z Texto completo
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