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首页> 外文期刊>Journal of Cleaner Production >Microfibrillated nanocellulose from balsa tree as potential reinforcement in the preparation of 'green' composites with castor seed cake
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Microfibrillated nanocellulose from balsa tree as potential reinforcement in the preparation of 'green' composites with castor seed cake

机译:轻木中的轻纤纳米纤维素可增强蓖麻籽饼“绿色”复合材料的制备

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摘要

The search for and development of eco-friendly materials such as 'green' composites results from twin issues of sustainability and 'environmental impact'. Towards achieving this goal, the use of industrial residues such as plant fibers as reinforcement along with natural polymers has been yielding good results. However, due to limitations of industrial uptake of these materials in structural applications, reducing the size of fibers below the normal micro level offers advantages because of the improved behavior and functionality exhibited by the nano-sized cellulosic fibrous materials. Considering successful previous efforts to develop biodegradable composites using castor seed cake, this paper focuses on the possibility of developing 'green' composites using this material as matrix and nanocellulose prepared from balsa tree as reinforcement. The preparation of nanofibrillar cellulose through mechanical fibrillation and its characterization as well as preparation of nanocomposites by thermo-molding with a matrix plasticized by glycerin are presented. The incorporation of nanocellulose resulted in increased flexural modulus, swelling thickness, and water absorption with increasing addition of nanocellulose, while both apparent density and flexural strength remained unchanged. The observed properties are discussed based on fractographic studies. (C) 2017 Elsevier Ltd. All rights reserved.
机译:诸如“绿色”复合材料之类的环保材料的寻找和开发源于可持续性和“环境影响”的双重问题。为了实现这一目标,使用工业残留物(例如植物纤维)作为增强剂以及天然聚合物已取得了良好的效果。然而,由于在结构应用中工业上对这些材料的吸收的限制,将纤维的尺寸减小到正常的微米水平以下提供了优点,因为纳米级纤维素纤维材料表现出改善的性能和功能。考虑到以前使用蓖麻籽饼开发可生物降解复合材料的成功尝试,本文重点探讨了使用该材料作为基质和由轻木作为增强材料制备的纳米纤维素开发“绿色”复合材料的可能性。介绍了通过机械原纤化制备纳米原纤维纤维素及其表征,以及通过与甘油增塑的基质热成型制备纳米复合材料的方法。纳米纤维素的掺入增加了纳米纤维素的添加,从而增加了挠曲模量,膨胀厚度和吸水率,而表观密度和挠曲强度均保持不变。根据分形学研究讨论了观察到的性质。 (C)2017 Elsevier Ltd.保留所有权利。

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