不同干燥温度下阳离子接枝木质素的结构变化

IF 5.6 1区 农林科学 Q1 AGRICULTURAL ENGINEERING
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引用次数: 0

摘要

缩水甘油-三甲基氯化铵(GTMAC)与木质素的反应前景广阔,因为它生成的阳离子木质素衍生物在废水处理、离子交换树脂、染料和纺织品制造等多个领域都有潜在应用。干燥是聚合物制造的一个重要步骤。本研究调查了干燥温度(-55、80、105 和 130ºC)对牛皮纸木质素(KL)和阳离子牛皮纸木质素(CKL)特性的影响。对于 KL,烘箱干燥后可检测到缩合产物。具体来说,在 80 和 105ºC 干燥后,可观察到苯并二恶烷结构和二苯基甲烷型结构。此外,在 105ºC 下干燥的样品的分子量和玻璃化转变温度也有所增加。对于 CKL 来说,除了缩合之外,含氮基团也发生了降解。此外,CKL 样品的分子量随着干燥温度的升高而增加,在 105ºC 时达到峰值分子量,但在 130ºC 干燥后则显著下降。CKL 样品在干燥后的玻璃化转变温度低于 KL。这项研究表明,阳离子接枝木质素的干燥温度是保持材料理想特性的一个重要考虑因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural changes of cationic grafted lignin at different drying temperatures
The reaction of glycidyl-trimethylammonium chloride (GTMAC) with lignin is promising since it generates a cationic lignin derivative with potential applications in various fields, such as wastewater treatment, ion exchange resin, dye, and textile manufacturing. Drying is an important step of polymer fabrication. This work investigates the effect of drying temperatures (-55, 80, 105, and 130ºC) on the properties of kraft lignin (KL) and cationic kraft lignin (CKL). For KL, condensation products were detected after oven-drying. Specifically, after drying at 80 and 105ºC, benzo dioxane structures and diphenylmethane-type structures were observed. Additionally, an increase in molecular weight and glass transition temperature was observed for the samples dried at 105ºC. For CKL, nitrogen-containing groups were degraded in addition to condensation. Additionally, the molecular weight of the CKL samples increased with increasing drying temperature, reaching its peak molecular weight at 105ºC, but it dropped significantly after drying at 130ºC. The CKL samples exhibited lower glass transition temperatures than KL after drying. This work demonstrates that the drying temperature of cationically grafted lignin is an important consideration in conserving the desired properties of the material.
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来源期刊
Industrial Crops and Products
Industrial Crops and Products 农林科学-农业工程
CiteScore
9.50
自引率
8.50%
发文量
1518
审稿时长
43 days
期刊介绍: Industrial Crops and Products is an International Journal publishing academic and industrial research on industrial (defined as non-food/non-feed) crops and products. Papers concern both crop-oriented and bio-based materials from crops-oriented research, and should be of interest to an international audience, hypothesis driven, and where comparisons are made statistics performed.
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