By Angelo Basile, Alfredo Cassano, Navin K Rastogi
Advances in Membrane applied sciences for Water remedy: fabrics, methods and functions provides an in depth assessment of complex water remedy tools concerning membranes, that are more and more obvious as potent replacements for a variety of traditional water remedy methods.
The textual content starts off with studies of novel membrane fabrics and advances in membrane operations, then examines the tactics concerned with enhancing membrane functionality.
Final chapters hide the appliance of membrane applied sciences to be used in water remedy, with precise discussions on municipal wastewater and reuse within the cloth and paper industries.
- Provides a close assessment of complex water remedy equipment regarding membranes
- Coverage contains developments in membrane fabrics, development in membrane functionality, and their purposes in water treatment
- Discusses using membrane applied sciences within the creation of consuming water, desalination, wastewater remedy, and recovery
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Extra info for Advances in Membrane Technologies for Water Treatment: Materials, Processes and Applications
Schadler, L. S. (2003). Surface modiﬁcation of multiwalled carbon nanotubes: Toward the tailoring of the interface in polymer composites. Chemistry of Materials, 15, 3198e3201. , & Nagai, H. (2008). Structure control of asymmetric poly(vinyl butyral)TiO2 composite membrane prepared by nonsolvent induced phase separation. Journal of Applied Polymer Science, 108, 713e723. , Madaeni, S. , & Daraei, P. (2011). Preparation, characterization and performance of polyethersulfone/organically modiﬁed montmorillonite nanocomposite membranes in removal of pesticides.
2005). Fouling resistant membranes in desalination and water recovery. Desalination, 183, 301e306. , & Sirkar, K. K. (2011). Facile fabrication of superior nanoﬁltration membranes from interfacially polymerized CNT-polymer composites. Journal of Membrane Science, 375, 81e87. , & Marajofsky, A. (2009). Iron oxide adsorbers for arsenic removal: A low cost treatment for rural areas and mobile applications. Desalination, 248, 184e192. , & Fidalgo de Cortalezzi, M. M. (2010). Fabrication and characterization of iron oxide ceramic membranes for arsenic removal.
Characterization of chitosan/ montmorillonite membranes as adsorbents for Bezactiv Orange V-3R dye. Journal of Hazardous Materials, 209e210, 256e263. , & Marchese, J. (2003). Effect of hydrophilicity on fouling of an emulsiﬁed oil wastewater with PVDF/PMMA membranes. Journal of Membrane Science, 226, 203e211. Ochoa, N. , & Hernandez, A. (2001). Pore size distributions based on AFM imaging and retention of multidisperse polymer solutes characterisation of polyethersulfone UF membranes with dopes containing different PVP.