Advances in Membrane Technologies for Water Treatment: by Angelo Basile, Alfredo Cassano, Navin K Rastogi

By Angelo Basile, Alfredo Cassano, Navin K Rastogi

Advances in Membrane applied sciences for Water therapy: fabrics, methods and functions provides a close review of complicated water remedy tools concerning membranes, that are more and more noticeable as powerful replacements for quite a number traditional water therapy methods.

The textual content starts with reports of novel membrane fabrics and advances in membrane operations, then examines the strategies concerned with bettering membrane functionality.

Final chapters disguise the appliance of membrane applied sciences to be used in water therapy, with targeted discussions on municipal wastewater and reuse within the fabric and paper industries.

  • Provides a close evaluate of complex water therapy equipment related to membranes
  • Coverage comprises developments in membrane fabrics, development in membrane functionality, and their functions in water treatment
  • Discusses using membrane applied sciences within the construction of ingesting water, desalination, wastewater remedy, and recovery

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Huang, Z. , Chen, K. , Li, S. , Yin, X. , & Xu, H. T. (2008). Effect of ferrosoferric oxide content on the performances of polysulfoneeferrosoferric oxide ultrafiltration membranes. Journal of Membrane Science, 315, 164e171. Huang, Z. , Guo, X. , Guo, C. , & Zhang, Z. (2006). Magnetization influence on the performance of ferrosoferric oxide: Polyacrylonitrile membranes in ultrafiltration of pig blood solution. Bioprocess and Biosystems Engineering, 28, 415e421. Huang, Z. , Xu, H. , & Zhou, K. M. (2012).

Fouling is the most important and well-known problem in membrane separation processes. The urgent need for pretreatment, cleaning, limited recovery, and short lifetime are some negative results of fouling problems. Membrane lifetime and chemical resistance are also related to fouling and consequent cleaning as well as the conditions under which the membranes are employed. Many researchers have concentrated on proposing efficient solutions and strategies to prolong the lifetime and chemical resistance of membranes, improve membrane morphology, increase hydrophilicity, decrease surface roughness, and increase the degree of cross-linking of the polymeric top layer to decrease membrane fouling and increase the chemical resistance and lifetime of the membrane.

Journal of Nanoparticle Research, 11, 25e39. Liu, C. , Zhang, D. , Zhao, X. , & Bai, R. (2010). Modification of membrane surface for anti-biofouling performance: Effect of anti-adhesion and anti-bacteria approaches. Journal of Membrane Science, 346, 121e130. , Moghareh Abed, M. , & Li, K. (2011). Preparation and characterization of poly(vinylidene fluoride) (PVDF) based ultrafiltration membranes using nano g-Al2O3. Journal of Membrane Science, 366, 97e103. , & Mi, B. (2013). Direct observation of bacterial deposition on and detachment from nanocomposite membranes embedded with silver nanoparticles.

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