磷酸活化戊二醛交联坚固木屑/微纤维纤维素复合板

Wen Wang, Lei Miao, Dong-chu Chen, M. Zhang
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引用次数: 0

摘要

近年来,利用木屑加工复合板受到了广泛关注。为了避免使用化学粘合剂,通常使用天然纤维素基材料作为粘合剂来结合木屑。本文的报告不是利用纳米纤维素,而是描述了一种制备基于微纤维纤维素的坚固复合板的方法,微纤维纤维素是一种低成本的商业产品。为了有效地将木屑和微纤维纤维素交联,采用磷酸活化戊二醛作为催化剂。与未交联的复合板相比,戊二醛和磷酸交联后的复合板的弹性模量和断裂模量分别显著提高到3.45±0.06GPa和36.5±3.5MPa。此外,交联复合板的防潮性也得到了提高。在水中浸泡24小时后,交联复合板的质量膨胀率和厚度膨胀率分别仅变化49%和21%。这些性能甚至超过了由纳米纤维素制备的复合板。本工作中描述的方法可能在商业加工和木屑回收中有应用。
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Robust Wood Sawdust/Microfibrous Cellulose Composite Board Cross-Linked by Phosphoric Acid-Activated Glutaraldehyde
The recycling use of wood sawdust to process composite boards has received much attention in recent years. To avoid the use of chemical adhesives, natural cellulose-based materials were often used as adhesives to combine wood sawdust. Rather than utilizing nanocellulose, the report herein describes a method to prepare a robust composite board that is based on microfibrous cellulose, which is a low-cost commercial product. To effectively cross-link wood sawdust and microfibrous cellulose, phosphoric acid-activated glutaraldehyde was used as catalyst. Compared to its uncross-linked counterpart, the modulus of elasticity and modulus of rupture of the composite board that had been cross-linked by glutaraldehyde and phosphoric acid were significantly strengthened to 3.45±0.06 GPa and 36.5±3.5 MPa, respectively. Moreover, the moisture resistance of the cross-linked composite board was also enhanced. After soaking in water for 24 h, the mass swelling ratio and thickness swelling ratio of cross-linked composite board had only changed 49% and 21%, respectively. These performances even exceeded that of composite board prepared from nanocellulose. The method described in this work may have applications in commercial processing and the recycling of wood sawdust.
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来源期刊
Journal of Biobased Materials and Bioenergy
Journal of Biobased Materials and Bioenergy 工程技术-材料科学:生物材料
自引率
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发文量
60
审稿时长
6 months
期刊最新文献
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