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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Surface and thermal enhancement of the cellulosic component of thermo mechanical pulp using a rapid method: Iodomethane modification
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Surface and thermal enhancement of the cellulosic component of thermo mechanical pulp using a rapid method: Iodomethane modification

机译:使用快速方法对热机械浆的纤维素成分进行表面和热增强:碘甲烷改性

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The feasibility of employing chemical methods for enhancement of cellulose-based materials is dependent on the availability, price, and green index of the modifying agent. This study details the use of iodomethane, an inexpensive organo halide, to increase the hydrophobicity of thermo mechanical (TMP) samples, which renders them better structural elements for composite materials. For this system, we studied the influence of various concentration of iodomethane, concentration of caustic, and reaction time. Infrared spectroscopy suggested reaction of the organo halide with the hydroxyl groups of cellulose and lignin components of TMP. Pulp samples treated for 4 h or at low caustic concentration showed the least improvements plausibly due to pulp degradation or poor pulp swelling, respectively. On the other hand, pulp treated at 3 h using high concentrations of caustic were characterized with surfaces that were more hydrophobic. Thus, this study outlines a fast and organic solvent-free (clean up) method that can be used to enhance pulp samples for composite applications. (C) 2016 Elsevier Ltd. All rights reserved.
机译:采用化学方法增强纤维素基材料的可行性取决于改性剂的可用性,价格和绿色指数。这项研究详细介绍了使用碘甲烷(一种廉价的有机卤化物)来提高热机械(TMP)样品的疏水性,从而使其成为用于复合材料的更好的结构元素。对于该系统,我们研究了各种碘甲烷浓度,苛性碱浓度和反应时间的影响。红外光谱表明有机卤化物与TMP的纤维素羟基和木质素组分反应。处理4 h或以低苛性碱浓度处理的纸浆样品,分别由于纸浆降解或纸浆溶胀差而导致的改善似乎最少。另一方面,使用高浓度苛性碱处理3 h​​的纸浆的特征是表面疏水性更高。因此,本研究概述了一种快速且无有机溶剂(清洁)的方法,可用于增强纸浆样品以用于复合应用。 (C)2016 Elsevier Ltd.保留所有权利。

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