首页> 美国卫生研究院文献>Molecules >Spruce Bark-Extracted Lignin and Tannin-Based Bioresin-Adhesives: Effect of Curing Temperatures on the Thermal Properties of the Resins
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Spruce Bark-Extracted Lignin and Tannin-Based Bioresin-Adhesives: Effect of Curing Temperatures on the Thermal Properties of the Resins

机译:云杉的树皮提取的木质素和基于单宁的生物蛋白粘合剂:固化温度对树脂热性能的影响

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摘要

In this study, formaldehyde-free bioresin adhesives were synthesised from lignin and tannin, which were obtained from softwood bark. The extraction was done via organosolv treatment and hot water extraction, respectively. A non-volatile, non-toxic aldehyde, glyoxal, was used as a substitute for formaldehyde in order to modify the chemical structure of both the lignin and tannin. The glyoxal modification reaction was confirmed by ATR–FTIR spectroscopy. Three different resin formulations were prepared using modified lignin along with the modified tannin. The thermal properties of the modified lignin, tannin, and the bioresins were assessed by DSC and TGA. When the bioresins were cured at a high temperature (200 °C) by compression moulding, they exhibited higher thermal stability as well as an enhanced degree of cross-linking compared to the low temperature-cured bioresins. The thermal properties of the resins were strongly affected by the compositions of the resins as well as the curing temperatures.
机译:在该研究中,从木质素和单宁合成了无甲醛的嗜虫蛋白粘合剂,该粘合剂是从软木吠肠获得的。分别通过有机溶胶治疗和热水萃取来进行萃取。使用非挥发性,无毒的醛乙醛作为甲醛的替代品,以改变木质素和单宁的化学结构。通过ATR-FTIR光谱证实乙二醛改性反应。使用改性木质素与改性的单宁制备三种不同的树脂制剂。通过DSC和TGA评估改性木质素,单宁和Bioresins的热性质。当通过压缩成型在高温(200℃)下硼酸汀在高温(200℃)中固化时,与低温固化的嗜酸剂蛋白相比,它们表现出更高的热稳定性以及增强的交联度。树脂的热性能受树脂组合物的强烈影响以及固化温度。

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