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一种将废弃橡木粉作为生物组分来制备基于改性大豆油的复合材料的方法。

A Method of Managing Waste Oak Flour as a Biocomponent for Obtaining Composites Based on Modified Soybean Oil.

作者信息

Sienkiewicz Anna, Czub Piotr

机构信息

Department of Chemistry and Technology of Polymers, Faculty of Chemical Engineering and Technology, Cracow University of Technology, Warszawska Str. 24, 31-155 Kraków, Poland.

出版信息

Materials (Basel). 2022 Nov 3;15(21):7737. doi: 10.3390/ma15217737.

Abstract

The aim of the present research was the development of a management method for wood-processing waste that was obtained during the production of parquet flooring. Currently mostly useless, such waste mainly ends up in landfills. The oak waste flour was used as a reinforcement material for epoxy biocomposites based on the polyaddition product of epoxidized soybean oil and bisphenol-A (ESBO_BPA). The biofiller was subjected to mercerization, acetylation, and diisocyanate modification to increase the typically poor compatibility between the highly hydrophilic wood fibers and the hydrophobic polymer matrix. Among the analyzed epoxy biocomposites, which contained about 60% raw materials of natural origin, it was found that the best mechanical properties were recorded for cured samples of the ESBO_BPA composition filled with 5 wt % of oak flour mercerized using a 5% solution of NaOH. It was also proven that a higher concentration of alkali deteriorated the mechanical-strengthening properties of the wood filler. The acetylation of the biofiller independently in the best elimination of hydroxyl groups from its structure also removed irregular strips and smoothed its surface. This resulted in a poorer wettability of the oak flour surface by the polymer and consequently an easier pullout of the filler from the polymer matrix and worse mechanical properties of the wood/epoxy composite. To the best of the authors' knowledge, the present research was the first to examine the possibility of the application of parquet flooring post-production wood flour in biomaterials based on a polyaddition product of epoxidized soybean oil and bisphenol-A.

摘要

本研究的目的是开发一种用于处理在实木复合地板生产过程中产生的木材加工废料的管理方法。目前,这些废料大多无用,主要被填埋处理。橡木废粉被用作基于环氧化大豆油和双酚A(ESBO_BPA)的加成产物的环氧生物复合材料的增强材料。对生物填料进行了丝光处理、乙酰化处理和二异氰酸酯改性,以改善高亲水性木纤维与疏水性聚合物基体之间通常较差的相容性。在所分析的环氧生物复合材料中,其含有约60%的天然来源原材料,结果发现,对于填充有5 wt%经5% NaOH溶液丝光处理的橡木粉的ESBO_BPA组合物的固化样品,其机械性能最佳。还证明了较高浓度的碱会降低木材填料的机械增强性能。生物填料的乙酰化虽然能最好地从其结构中消除羟基,但也去除了不规则条带并使表面光滑。这导致聚合物对橡木粉表面的润湿性变差,从而使填料更容易从聚合物基体中拔出,木材/环氧复合材料的机械性能也更差。据作者所知,本研究首次探讨了将实木复合地板生产后的木粉应用于基于环氧化大豆油和双酚A加成产物的生物材料中的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e508/9656467/d8fce8c4d6c6/materials-15-07737-g001.jpg

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