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      Nanocellulose-Based Materials for Water Purification

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          Abstract

          Nanocellulose is a renewable material that combines a high surface area with high strength, chemical inertness, and versatile surface chemistry. In this review, we will briefly describe how nanocellulose is produced, and present—in particular, how nanocellulose and its surface modified versions affects the adsorption behavior of important water pollutants, e.g., heavy metal species, dyes, microbes, and organic molecules. The processing of nanocellulose-based membranes and filters for water purification will be described in detail, and the uptake capacity, selectivity, and removal efficiency will also be discussed. The processing and performance of nanocellulose-based membranes, which combine a high removal efficiency with anti-fouling properties, will be highlighted.

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          THE ADSORPTION OF GASES ON PLANE SURFACES OF GLASS, MICA AND PLATINUM.

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            Key advances in the chemical modification of nanocelluloses.

            Nanocelluloses, including nanocrystalline cellulose, nanofibrillated cellulose and bacterial cellulose nanofibers, have become fascinating building blocks for the design of new biomaterials. Derived from the must abundant and renewable biopolymer, they are drawing a tremendous level of attention, which certainly will continue to grow in the future driven by the sustainability trend. This growing interest is related to their unsurpassed quintessential physical and chemical properties. Yet, owing to their hydrophilic nature, their utilization is restricted to applications involving hydrophilic or polar media, which limits their exploitation. With the presence of a large number of chemical functionalities within their structure, these building blocks provide a unique platform for significant surface modification through various chemistries. These chemical modifications are prerequisite, sometimes unavoidable, to adapt the interfacial properties of nanocellulose substrates or adjust their hydrophilic-hydrophobic balance. Therefore, various chemistries have been developed aiming to surface-modify these nano-sized substrates in order to confer to them specific properties, extending therefore their use to highly sophisticated applications. This review collocates current knowledge in the research and development of nanocelluloses and emphasizes more particularly on the chemical modification routes developed so far for their functionalization.
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              Advanced functional polymer membranes

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                Author and article information

                Contributors
                Role: Academic Editor
                Role: Academic Editor
                Journal
                Nanomaterials (Basel)
                Nanomaterials (Basel)
                nanomaterials
                Nanomaterials
                MDPI
                2079-4991
                05 March 2017
                March 2017
                : 7
                : 3
                : 57
                Affiliations
                Department of Materials and Environmental Chemistry, Stockholm University, SE-10691 Stockholm, Sweden; hugo.voisin@ 123456mmk.su.se (H.V.); peng.liu@ 123456mmk.su.se (P.L.)
                Author notes
                [* ]Correspondence: lennart.bergstrom@ 123456mmk.su.se (L.B.); aji.mathew@ 123456mmk.su.se (A.P.M.); Tel.: +46-8-162-368 (L.B.); +46-8-161-256 (A.P.M.)
                Article
                nanomaterials-07-00057
                10.3390/nano7030057
                5388159
                28336891
                c20c0e1b-b8b1-47a5-9d9c-ab7ea748febf
                © 2017 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 07 December 2016
                : 01 March 2017
                Categories
                Review

                cellulose nanofibers,cellulose nanocrystals,membranes,water purification,adsorption

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