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Effects of Sulfuric Acid on the Curing Behavior and Bonding Performance of Tannin–Sucrose Adhesive

机译:硫酸对单宁-蔗糖胶固化性能和粘结性能的影响

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摘要

The development of biomaterials-based adhesives is one of the main research directions for the wood-based material industry. In previous research, tannin and sucrose were used as adhesive to manufacture particleboard. However, the reaction conditions need to be optimized. In this study, sulfuric acid was added to the tannin–sucrose adhesive as a catalyst to improve the curing process. Thermal analysis, insoluble mass proportion, FT-IR, and solid state 13C NMR were used to investigate the effects of sulfuric acid on the curing behavior of tannin and sucrose. Thermal analysis showed weight loss and endotherm temperature reduced from 205 and 215 to 136 and 138 °C, respectively, by adding sulfuric acid. In case of the adhesive with pH = 1.0, the insoluble mass proportion achieved 81% at 160 °C, which was higher than the reference at 220 °C. FT-IR analysis of the uncured adhesives showed that adding sulfuric acid leads to hydrolysis of sucrose; then, glucose and fructose converted to 5-hydroxymehthylfurfural (HMF) and levulinic acid. Dimethylene ether bridges were observed by FT-IR analysis of the cured adhesives. The results of solid state 13C NMR spectrum indicated that 5-HMF participated in the curing process and formed methylene bridges with the C8 position of the resorcinol A-rings of tannin, whereas dimethylene ether bridges were detected as a major chemical chain of the polymer. Lab particleboards were produced using 20 wt % resin content at 180 °C and 10 min press time; the tannin–sucrose adhesive modified with sulfuric acid to pH = 1.0 exhibited better performance than the unmodified tannin–sucrose adhesive; the properties of the boards fulfilled the requirement of Japanese Industrial Standard (JIS) A5908 type 15.
机译:生物材料基胶粘剂的开发是木质材料行业的主要研究方向之一。在先前的研究中,单宁和蔗糖被用作制造刨花板的粘合剂。但是,反应条件需要优化。在这项研究中,将硫酸添加到单宁-蔗糖胶中作为催化剂来改善固化过程。通过热分析,不溶质量比,傅立叶变换红外光谱(FT-IR)和固态 13 NMR,研究了硫酸对单宁和蔗糖固化行为的影响。热分析表明,通过添加硫酸,重量损失和吸热温度分别从205和215降至136和138°C。对于pH = 1.0的胶粘剂,在160°C时不溶物的质量比例达到81%,高于在220°C时的参考值。未固化胶粘剂的FT-IR分析表明,添加硫酸会导致蔗糖水解。然后,葡萄糖和果糖转化为5-羟基甲基糠醛(HMF)和乙酰丙酸。通过固化的粘合剂的FT-IR分析观察到二亚甲基醚桥。固态 13 NMR光谱结果表明,5-HMF参与了固化过程,并形成了单宁间苯二酚A环的C8位置的亚甲基桥,而检测到的二亚甲基醚桥为聚合物的主要化学链。实验室刨花板是在180°C和10分钟的压制时间下,使用20 wt%的树脂制成的;用硫酸改性至pH = 1.0的单宁-蔗糖胶粘剂比未改性的单宁-蔗糖胶粘剂表现出更好的性能;木板的性能满足日本工业标准(JIS)A5908类型15的要求。

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