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Titlebook: Sustainable Membrane Technology for Water and Wastewater Treatment; Alberto Figoli,Alessandra Criscuoli Book 2017 Springer Nature Singapor

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Bart Van der Bruggen,Çiğdem Balçık Canbolat,Jiuyang Lin,Patricia Luis
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Erratum to: Process Intensification: Definition and Application to Membrane Processes,
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Book 2017t scales, covering also the preparation of both polymeric and inorganic membranes. It presents reverse osmosis in desalination, membrane bioreactors for municipal wastewater treatment and pressure-driven industrial wastewater treatment in agrofood and textile fields as examples of industrial membran
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2196-6982 aterials to the final products.Focuses on well-established m.This book analyses the sustainability of membrane operations applied on an industrial scale, as well as that of those under investigation on lab/pilot scales, covering also the preparation of both polymeric and inorganic membranes. It pres
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Sustainability and How Membrane Technologies in Water Treatment Can Be a Contributor, domestic sewer water for municipal wastewater treatment plants, or from various industrial processing plants that produce highly contaminated wastewater. Application of various membrane technologies for wastewater has been growing because they enjoy relative advantage over other technologies in ter
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LCA for Membrane Processes,environmental performance and sustainability of processes that use or are based on membrane technologies. A presentation of the LCA methodology is made, based on the current framework defined by the ISO Standard, focusing on the main aspects and how LCA can be applied to a given product or process s
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Sustainable Route in Preparation of Polymeric Membranes,ation techniques, high flexibility, and low cost. Membrane separation has been recognized as a green sustainable process, the preparation route of polymeric membranes is still based on the use of toxic solvents and fossil-based polymers, which is not yet green and sustainable. Recently, an increasin
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