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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Progress in lignin hydrogels and nanocomposites for water purification: Future perspectives
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Progress in lignin hydrogels and nanocomposites for water purification: Future perspectives

机译:木质素水凝胶和纳米复合材料的进展净水:未来的观点

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AbstractLignin is one of the most abundant natural polymers after cellulose and has attracted great attention in academia as well as in industry for miscellaneous applications. Lignin also exhibits very high potential as a renewable sustainable resource for a galaxy of high value biochemicals. Due to the typical structure of lignin, it can be converted into different types of useful products. From a ligno-cellulose bio-refinery prospective point of view, it can be regarded as an economic bio product and can also be used as filler in several polymers to form blends or composites. Recently lignin-based hydrogels have shown excellent performance for removal of various pollutants from water. The adsorption properties of lignin based hydrogels can further be improved by using a combination of nanomaterials and lignin that results in promising hydrogel nanocomposites. In nature, the most abundant structures are formed by the combination of lignin, cellulose and hemicelluloses. In this article, we have attempted to comprehensively review the research work carried out in the direction of usage of lignin-based hydrogel for removal of toxic pollutants including metal ions and dyes.Highlights?Hydrogel synthesized from
机译:<![CDATA [ 抽象 木质素是纤维素后最丰富的天然聚合物之一,并且在学术界以及工业中引起了极大的关注用于杂项应用。木质素还表现出非常高的潜力作为一种高价值生物化学的星系的可再生可持续资源。由于木质素的典型结构,它可以转换成不同类型的有用产品。从木质纤维素生物炼油厂前景来看,它可以被视为经济生物产品,也可以用作几种聚合物中的填料以形成共混物或复合材料。最近基于木质素的水凝胶表明了优异的性能,用于从水中去除各种污染物。通过使用纳米材料和木质素的组合,可以进一步提高木质素基水凝胶的吸附性能,从而导致有前途的水凝胶纳米复合材料。本质上,最丰富的结构是由木质素,纤维素和半纤维素的组合形成的。在本文中,我们试图全面地审查在木质素的水凝胶的使用方向上进行的研究工作,以去除包括金属离子和染料的有毒污染物。 亮点 Hyperogel

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