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Nature Based Solutions for Wastewater Treatment [Pehme köide]

Edited by , Edited by , Edited by , Edited by , Edited by , Edited by , Edited by , Edited by
  • Formaat: Paperback / softback, 344 pages, kõrgus x laius x paksus: 234x156x18 mm
  • Ilmumisaeg: 15-Aug-2021
  • Kirjastus: IWA Publishing
  • ISBN-10: 178906225X
  • ISBN-13: 9781789062250
Teised raamatud teemal:
  • Formaat: Paperback / softback, 344 pages, kõrgus x laius x paksus: 234x156x18 mm
  • Ilmumisaeg: 15-Aug-2021
  • Kirjastus: IWA Publishing
  • ISBN-10: 178906225X
  • ISBN-13: 9781789062250
Teised raamatud teemal:
There are 2.4 billion people without improved sanitation and another 2.1 billion with inadequate sanitation (i.e. wastewater drains directly into surface waters), and despite improvements over the past decades, the unsafe management of fecal waste and wastewater continues to present a major risk to public health and the environment (UN, 2016). There is growing interest in low cost sanitation solutions which harness natural systems. However, it can be difficult for wastewater utility managers to understand under what conditions such nature-based solutions (NBS) might be applicable and how best to combine traditional infrastructure, for example an activated sludge treatment plant, with an NBS such as treatment wetlands. There is increasing scientific evidence that treatment systems with designs inspired by nature are highly efficient treatment technologies. The cost-effective design and implementation of ecosystems in wastewater treatment is something that exists and has the potential to be further promoted globally as both a sustainable and practical solution. This book serves as a compilation of technical references, case examples and guidance for applying nature-based solutions for treatment of domestic wastewater, and enables a wide variety of stakeholders to understand the design parameters, removal efficiencies, costs, co-benefits for both people and nature and trade-offs for consideration in their local context. Examples through case studies are from across the globe and provide practical insights into the variety of potentially applicable solutions.
List of Abbreviations
1(3)
Editors and Authors 4(1)
Editors 4(1)
Authors (in alphabetical order) 4(1)
Acknowledgements 5(1)
Introduction 6(1)
Application of NBS for wastewater treatment
6(2)
History of using NBS for wastewater treatment
8(1)
Link to the UN Sustainable Development Goals
8(1)
About the Publication
9(1)
Scope
9(4)
Target audience
13(1)
Methodology
13(2)
Factsheets
14(1)
Case studies
15(1)
Nbs for Wastewater Treatment: Factsheets and Case Studies
15(2)
Summary tables
17(6)
Slow-rate soil infiltration system
23(19)
Advanced Wastewater Treatment through Slow-Rate Soil Infiltration System in Lubbock, Texas, USA
27(7)
Wastewater Reuse through a Slow-Rate Soil Infiltration System in Muskegon County, Michigan, USA
34(8)
Rapid-rate soil infiltration system
42(3)
Willow systems
45(12)
Zero-Discharge Wastewater Facilities: Willow Systems
49(8)
Surface aerated ponds
57(4)
Facultative ponds
61(3)
Maturation ponds
64(3)
Anaerobic ponds
67(3)
High-rate anaerobic ponds
70(25)
Wastewater Pond Technology in Mysore, India: A Combination of Facultative and Maturation Ponds
73(6)
Wastewater Pond Technology with Anaerobic, Facultative and Maturation Ponds in Trichy, India
79(7)
Wastewater Treatment Ponds in El Cerrito, Colombia
86(9)
Vertical-flow treatment wetlands
95(26)
Vertical-flow Treatment Wetlands for Pollution Control in Pingshan River Watershed, Shenzhen, China
99(9)
Two-stage Vertical-flow Wetland at the Barenkogelhaus, Austria
108(6)
Vertical-flow Wetland for Matany Hospital, Uganda
114(7)
French vertical-flow treatment wetlands
121(23)
French Vertical-Flow Treatment Wetland in Orhei Municipality, Moldova
125(7)
Challex Treatment Wetland: French System Treatment Wetlands for Domestic Wastewater and Stormwater
132(6)
Taupiniere Treatment Wetland: Unsaturated/Saturated French System Treatment Wetlands for Domestic Wastewater in a Tropical Area
138(6)
Treatment wetland for CSO
144(15)
Treatment Wetland for Combined Sewer Overflows, Kenten, Germany
147(6)
Treatment Wetland for Combined Sewer Overflow at Gorla Maggiore Water Park, Italy
153(6)
Horizontal-flow treatment wetlands
159(17)
Horizontal Subsurface Flow System for Gorgona Penitentiary, Italy
162(5)
Horizontal Treatment Wetland in Karbinci, Republic of North Macedonia
167(4)
Horizontal-flow Wetlands in Chelmna, Czech Republic
171(5)
Aerated treatment wetland
176(15)
Intensified Treatment Wetlands: Forced Aeration in Tarcenay, France
180(6)
Aerated Horizontal Subsurface Flow Wetlands in Jackson Meadow, Marine on St. Croix, Washington County, Minnesota, USA
186(5)
Reciprocating treatment wetlands
191(9)
Reciprocating (Tidal-flow) Treatment Wetland Demonstration, Hawaii, USA
194(6)
Reactive media in treatment wetlands
200(3)
Free water surface treatment wetland
203(24)
Free Water Surface Treatment Wetland in Areata, California, USA
207(7)
Two Free Surface Flow Wetlands for Post-tertiary Treatment of Wastewater in Sweden
214(7)
Free Water Surface System for Tertiary Treatment in Jesi, Italy
221(6)
Natural wetland
227(24)
Namatala Natural Wetland, Uganda
230(7)
Loktak Lake: A Natural Wetland in Manipur, India
237(7)
Natural Wetlands in East Kolkata, India
244(7)
Floating treatment wetland
251(3)
Multi-stage wetland
254(16)
Multi-stage Treatment Wetlands in Dicomano, Italy
257(7)
Hybrid Treatment Wetland in Kastelir, Croatia
264(6)
Sludge treatment reed beds
270(20)
Sludge Treatment Reed Beds in Mojkovac, Montenegro
274(4)
Negrepelisse Treatment Wetland: A Septage Treatment Reed Bed Unit
278(6)
Large-scale Treatment of Sludge in Reed Bed Systems in Denmark and England
284(6)
Living walls
290(14)
Living Walls at Marina Di Ragusa, Italy
294(5)
VertECO®: A Vertical Ecosystem for Wastewater Treatment
299(5)
Rooftop treatment wetland
304(9)
Constructed Wetroof in Tilburg, The Netherlands
308(5)
Hydroponics
313(3)
Aquaponics
316(4)
In-stream restoration
320(11)
Stream Restoration in Baltimore, Maryland, USA
324(7)
Lessons Learned 331(3)
References 334