Membrane-based Hybrid Processes for Wastewater Treatment (häftad)
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Häftad (Paperback)
Antal sidor
P.P Shah, Maulin / Rodriguez-Couto, Susana
Black & white illustrations
235 x 191 x 37 mm
1226 g
Antal komponenter
3:B&W 7.5 x 9.25 in or 235 x 191 mm Perfect Bound on White w/Gloss Lam
Membrane-based Hybrid Processes for Wastewater Treatment (häftad)

Membrane-based Hybrid Processes for Wastewater Treatment

Häftad Engelska, 2021-06-03
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Membrane-Based Hybrid Processes for Wastewater Treatment analyzes and discusses the potential of membrane-based hybrid processes for the treatment of complex industrial wastewater, the recovery of valuable compounds, and water reutilization. In addition, recent and future trends in membrane technology are highlighted. Industrial wastewater contains a large variety of compounds, such as heavy metals, salts and nutrients, which makes its treatment challenging. Thus, the use of conventional water treatment methods is not always effective. Membrane-based hybrid processes have emerged as a promising technology to treat complex industrial wastewater.

  • Discusses the properties, mechanisms, advantages, limitations and promising solutions of different types of membrane technologies
  • Addresses the optimization of process parameters
  • Describes the performance of different membranes
  • Presents the potential of Nanotechnology to improve the treatment efficiency of wastewater treatment plants (WWTPs)
  • Covers the application of membrane and membrane-based hybrid treatment technologies for wastewater treatment
  • Includes forward osmosis, electrodialysis, and diffusion dialysis
  • Considers hybrid membrane systems expanded to cover zero liquid discharge, salt recovery, and removal of trace contaminants
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Fler böcker av Maulin P P Shah

Övrig information

Maulin Shah is an active researcher and scientific writer for over 20 years. He received a B.Sc. degree in 1999 in Microbiology from Gujarat University in Godhra, Gujarat, India. He also earned his Ph.D. degree in 2005 in Environmental Microbiology from Sardar Patel University in Vallabh Vidyanagar, Gujarat, India. His research interests include biological wastewater treatment, environmental microbiology, biodegradation, bioremediation, & phytoremediation of environmental pollutants from industrial wastewaters. He has published more than 250 research papers in national and international journals of repute on various aspects of microbial biodegradation and bioremediation of environmental pollutants. He is the editor of 55 books of international repute. Susana Rodrguez-Couto (female) got her B.Sc. and M.Sc. in Chemistry (Industrial Chemistry) from the University of Santiago de Compostela in 1992 and her Ph.D. in Chemistry in 1999 from the University of Vigo, obtaining the maximal grade (magna cum laude) and, in addition, she was awarded with the Extraordinary Prize for Doctoral Thesis in Chemistry. She worked as an Associate Professor and an Isidro Parga Pondal Senior Researcher at the University of Vigo (2000-2004), as a Ramn y Cajal Senior Researcher at Rovira i Virgili University (2004-2008) and as an Ikerbasque Research Professor (2009-2019). She has also worked as an Invited Researcher at the Institute from Environmental Biotechnology, Graz University of Technology (Austria) and at the Department of Biological Engineering, University of Minho (Portugal). In 2008, she received the I3 Professor from the Spanish Ministry of Science and Education to the recognition of an outstanding research activity. In March 2021 she is joining LUT School of Engineering Science at Mikkeli, Finland, as a Full Professor in biological water treatment. She has published more than 140 articles in highly reputed international journals (h index 42). She is editor of several journals (3Biotech, Frontiers) and 14 Elsevier books.


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  7. Application of nanotechnology in membrane-based wastewater treatment: a critical review
  8. Application of nanoparticles in polymeric and ceramic membrane structure in wastewater treatment
  9. Anaerobic membrane bioreactor for wastewater treatment: present state of the art
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  18. Hybrid membrane technology: demand of present wastewater scenario
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  21. Environmental aspects of fluoride contamination and treatment of wastewater using hybrid technology
  22. Sustainable biological approach for removal of cyanide from wastewater of a metal-finishing industry
  23. Hybrid membrane technology: an alternative to industrial wastewater treatment
  24. Developments in membrane bioreactor technologies and evaluation on case study applications for recycle and reuse of miscellaneous wastewaters
  25. Modeling aspects of membrane-based industrial wastewater treatment
  26. Aerobic membrane bioreactor for the efficient wastewater treatment: recent advances
  27. Emerging nano enhanced membranebased hybrid processes for complex industrial wastewater treatment
  28. Nanomembranes for ultrapurification and water treatment