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首页> 外文期刊>Journal of Cleaner Production >Solvent-free pulverization and surface fatty acylation of pulp fiber for property-enhanced cellulose/polypropylene composites
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Solvent-free pulverization and surface fatty acylation of pulp fiber for property-enhanced cellulose/polypropylene composites

机译:纸浆纤维的无溶剂粉碎和表面脂肪酰化,用于增强性能的纤维素/聚丙烯复合材料

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摘要

Cellulosic fibers have the potential serving as lightweight and bio-based reinforcement in polymer composites but they suffer from difficulties in obtaining adequate dispersion and a strong interface in the matrixes. The hydrophilic and aggregating nature of the cellulose fiber are the main reasons responsible for the poor processing and mechanical performance. Here we proposed that cellulose fibers be subjected to mechanochemical activation and functionalization to prepare surface modified cellulose powders for properties-improved polypropylene (PP) composites. Specifically, mechanochemical ball milling was used to simultaneously pulverize, activate, and surface modify pulp fibers to produce property-tuned cellulose particles for reinforcing. Acetic-oleic mixed anhydrides were used as esterifying agents for improved processing ability and surface hydrophobicity. The mechanochemical esterification, crystallinity and thermal stability of the modified samples were characterized. Cellulose particles with different degree of substitutions (DS) were obtained and then compounded with PP matrix to prepare composite specimens. The melt processability, matrix crystallization behavior, mechanical performance, composite morphology and water absorption of the composites were investigated. The results reveal that cellulose could be effectively esterified during the solvent-free ball milling reaction, with the successful grafting of both the acetyl group and the fatty acyl group. The modified cellulose particles improved the melt processability, promoted the matrix crystallization temperature and decreased the moisture uptake of the composite. Particle composite produced with a higher level of DS exhibited better processability, higher elongation at break, lower modulus, and better water repellency than those of the lower DS particle reinforced one. (C) 2019 Elsevier Ltd. All rights reserved.
机译:纤维素纤维具有在聚合物复合材料中作为轻质和生物基增强材料的潜力,但它们在获得足够的分散性和基质中的牢固界面方面遇到困难。纤维素纤维的亲水性和聚集性是造成不良加工和机械性能的主要原因。在这里,我们建议对纤维素纤维进行机械化学活化和功能化,以制备用于性能改善的聚丙烯(PP)复合材料的表面改性纤维素粉末。具体而言,机械化学球磨用于同时粉碎,活化和表面改性纸浆纤维,以生产用于增强的性能调整纤维素颗粒。乙氧基混合酸酐用作酯化剂,以提高加工能力和表面疏水性。表征了改性样品的机械化学酯化,结晶度和热稳定性。获得具有不同取代度(DS)的纤维素颗粒,然后与PP基质复合以制备复合样品。研究了复合材料的熔融加工性能,基体结晶行为,力学性能,复合材料的形貌和吸水率。结果表明,通过成功接枝乙酰基和脂肪酰基,纤维素可在无溶剂球磨反应中被有效酯化。改性纤维素颗粒改善了熔融加工性能,提高了基体结晶温度并降低了复合材料的吸湿率。与较低DS颗粒增强的那些相比,具有较高DS含量的颗粒复合物表现出更好的加工性能,更高的断裂伸长率,更低的模量和更好的疏水性。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2020年第2期|118811.1-118811.8|共8页
  • 作者

  • 作者单位

    Qingdao Univ Sci & Technol Coll Chem Engn State Key Lab Base Ecochem Engn 53 Zhengzhou Rd Qingdao 266042 Shandong Peoples R China|Washington State Univ Composite Mat & Engn Ctr 2001 East Grimes Way Pullman WA 99164 USA|Chinese Acad Sci Qingdao Inst Bioenergy & Bioproc Technol 189 Songling Rd Qingdao 266101 Shandong Peoples R China;

    Qingdao Univ Sci & Technol Coll Chem Engn State Key Lab Base Ecochem Engn 53 Zhengzhou Rd Qingdao 266042 Shandong Peoples R China;

    South China Agr Univ Coll Mat & Energy 483 Wushan Rd Guangzhou 510642 Guangdong Peoples R China;

    Washington State Univ Composite Mat & Engn Ctr 2001 East Grimes Way Pullman WA 99164 USA;

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

    Cellulose esterification; Polypropylene; Degree of substitution; Processability; Tensile property;

    机译:纤维素酯化;聚丙烯;取代度;可加工性;拉伸性能;

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