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首页> 外文期刊>Polymer engineering and science >Phenol-enriched hydroxy depolymerized lignin by microwave alkali catalysis to prepare high-adhesive biomass composites
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Phenol-enriched hydroxy depolymerized lignin by microwave alkali catalysis to prepare high-adhesive biomass composites

机译:微波碱催化的酚类羟基脱聚木质素制备高粘合剂生物质复合材料

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摘要

Lignin, a by-product produced during pulping and papermaking, is a phenol-rich compound with excellent prospect to be used as a substitute for phenol in phenolic resin adhesive. Phenol-enriched hydroxy depolymerized lignin by microwave alkali catalysis is an effective method to prepare high-adhesive biomass composite. This study investigated the microwave digestion of lignin under different conditions of the alkali catalysis (sodium hydroxide) concentration, power, reaction time, and reaction temperature. The results show that on the condition of sodium hydroxide concentration of 0.3 mol/L, temperature of 170 degrees C, and time of 20 min, the highest phenolic hydroxy content obtained by depolymerization of lignin is 21.68%. SEM shows that the depolymerized lignin has no original basic constituent units and lignin-based phenolic resin has dense uniform pine needle units. Therefore, it has a high bonding strength of 1.934 MPa. The bonding strength and phenol content obtained by the microwave depolymerization method are much higher than those of other modification methods.
机译:木质素是制浆造纸过程中产生的副产物,是一种富含苯酚的化合物,在酚醛树脂胶粘剂中作为苯酚的替代品具有良好的应用前景。微波碱催化富酚羟基解聚木质素是制备高附着力生物质复合材料的有效方法。研究了碱催化(氢氧化钠)浓度、功率、反应时间和反应温度对木质素微波消解的影响。结果表明,在氢氧化钠浓度为0.3mol/L、温度为170℃、时间为20min的条件下,木质素解聚得到的酚羟基含量最高为21.68%。扫描电镜(SEM)显示,解聚木质素没有原始的基本组成单元,木质素基酚醛树脂具有致密均匀的松针单元。因此,其粘结强度高达1.934 MPa。微波解聚法的结合强度和苯酚含量远高于其他改性方法。

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