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Favored surface-limited oxidation of cellulose with Oxone (R) in water

机译:在水中有利于纤维素的表面有限氧化

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摘要

A novel method for favored primary alcohol oxidation of cellulose was developed. Cellulose pulp and Cladophora nanocellulose were oxidized in a one-pot procedure by Oxone (R) (2KHSO(5)center dot KHSO4 center dot K2SO4) and efficient reaction conditions were identified. The effects of the reaction on the morphology, viscosity and chemical structure of the products obtained were studied. The primary alcohol groups were oxidized to carboxyl groups and the content of carboxyl groups was determined by conductometric titration. SEM, capillary-type viscometry and XRD were applied to characterize the products and to investigate the influence of oxidation. For the first time, low-cost and stable Oxone (R) was used as a single oxidant to oxidize cellulose into carboxyl cellulose. The oxidation is an inexpensive and convenient process to produce carboxylic groups on the surface of the cellulose fibers and to make the cellulose fibers charged. Particularly, this method can avoid the use of halogens and potentially toxic radicals and constitute a green route to access carboxylated cellulose. Further, sodium bromide could be used as a co-oxidant to the Oxone (R) and increase the carboxylic acid content by 10-20%. The Oxone (R) oxidation is a promising method for oxidation of cellulose and might facilitate the production of CNC.
机译:开发了一种有利于纤维素的伯醇氧化的新方法。纤维素纸浆和分子酚纳米纤维素通过氧酮(R)(2KHSO(5)中心点KHSO4中心点K2SO4)在单罐过程中氧化,鉴​​定了有效的反应条件。研究了反应对所得产物的形态,粘度和化学结构的影响。将伯醇基团被氧化成羧基,通过导出滴定测定羧基的含量。 SEM,毛细血管型粘度法和XRD被应用于表征产品并调查氧化的影响。首先,使用低成本和稳定的氧胞(R)作为单一氧化剂,以将纤维素氧化成羧基纤维素。氧化是一种在纤维素纤维表面上生产羧基的廉价且方便的方法,并使纤维素纤维加入。特别是,该方法可以避免使用卤素和潜在有毒的自由基,并构成进入羧化纤维素的绿色途径。此外,溴化钠可以用作氧化铁(R)的共氧化剂,并将羧酸含量增加10-20%。氧酮(R)氧化是纤维素氧化的有希望的方法,可以促进CNC的产生。

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  • 来源
    《RSC Advances》 |2017年第64期|共8页
  • 作者单位

    Uppsala Univ Dept Engn Sci Nanotechnol &

    Funct Mat Box 534 S-75121 Uppsala Sweden;

    Uppsala Univ Dept Engn Sci Nanotechnol &

    Funct Mat Box 534 S-75121 Uppsala Sweden;

    Uppsala Univ Dept Engn Sci Nanotechnol &

    Funct Mat Box 534 S-75121 Uppsala Sweden;

    Uppsala Univ Dept Engn Sci Nanotechnol &

    Funct Mat Box 534 S-75121 Uppsala Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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