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portada Water Treatment. Resource Recovery and Sustainability
Type
Physical Book
Publisher
Year
2025
Pages
270
Format
Hardcover
Dimensions
25.4x17.8 cm
ISBN13
9781032749464

Water Treatment. Resource Recovery and Sustainability

Daniel J. Johnson;Nidal , College Of Engineering, Swansea University, Uk) Hilal (Author) · CRC Press · Hardcover

Water Treatment. Resource Recovery and Sustainability - Daniel J. Johnson;Nidal , College of Engineering, Swansea University, UK) Hilal

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Synopsis "Water Treatment. Resource Recovery and Sustainability"

The book presents latest research in methods for limiting the environmental and economic costs of the processes involved in using non-traditional sources of water, to increase the efficiency of treatment processes and optimize water recovery and reuse, research has focused on recovery of resources from their associated waste streams.

Water Treatment: Resource Recovery and Sustainability provides a comprehensive overview of the latest research in increasing the sustainability of water treatment processes. The use of non-traditional water sources, such as desalination of sea water and reuse of treated wastewater, is increasingly important given the paucity of freshwater resources globally. Only a very small fraction of the Earth’s water is fresh surface water easily available for use, whilst 40% of the global population are classed as living in high water stress areas. As such, increasing effort is being made to tap into non-traditional water sources, such as desalination of sea water and reuse of treated waste water, to make up this shortfall.

This volume presents the latest research in methods for limiting the environmental and economic costs of the processes involved in using non-traditional sources of water, To increase the efficiency of treatment processes and optimize water recovery and reuse, research has focused on recovery of resources from their associated waste streams, including recovery of: heat, pressure and generation of electricity from salinity gradients; nutrients such as nitrogen and phosphates: recovery of valuable minerals including metals concentrated in desalination brine as well as optimization of water recovery and reuse from wastewater sources. This comprehensive volume is aimed at graduate students, researchers and academics working in or teaching within this subject area and will be of interest to water industry professionals.

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