A novel approach for analyzing the migration behavior of fatliquors within leather

Ruibin Li, Chen Yang, Yuanqing Liu, Yue Yu
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Abstract

Fatliquor migration within the leather matrix may lead to the formation of fatty spew, oil patches and fogging, posing challenges to the production of high-quality leather. Currently, it lacks a straightforward and effective method for analyzing fatliquor migration behavior. This investigation introduces a novel approach for analyzing fatliquor migration by measuring its spreading area on collagen fiber membranes. By applying 300 mg of fatliquor onto 0.5 mm square membranes (10 cm × 10 cm), distinct oil spots were observed, enabling analysis of migration behavior. Using stearic acid as a standard reference compound effectively minimized the influence of different leather sections on fatliquor migration. Fatliquors with low molecular weight, low melting point and high aliphatic ester content exhibited obvious migration potential. Organic-tanned leathers and sulfated fatliquors displayed weak interactions, resulting in easy fatliquor migration within the leather. Conversely, metal-tanned leathers and phosphorylated fatliquors demonstrated strong interactions, effectively hindering migration. This research provides valuable practical and theoretical insights for developing effective strategies to prevent and control fatliquor migration in leather production.

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一种分析油脂在皮革中的迁移行为的新方法
加脂剂在皮革基体内的迁移可能导致脂肪喷涌、油斑和雾气的形成,对高品质皮革的生产构成挑战。目前,还缺乏一种简单有效的方法来分析加脂剂的迁移行为。本研究介绍了一种通过测量加脂剂在胶原纤维膜上的扩散面积来分析加脂剂迁移的新方法。将300 mg加脂剂涂在0.5 mm平方的膜上(10 cm × 10 cm),观察到明显的油斑,从而分析迁移行为。使用硬脂酸作为标准参考化合物,有效地减少了不同皮革部分对加脂剂迁移的影响。低分子量、低熔点、高脂肪脂含量的脂质具有明显的迁移潜力。有机鞣革和硫酸盐加脂剂表现出弱相互作用,导致加脂剂容易在皮革内迁移。相反,金属鞣制皮革和磷酸化脂质表现出强烈的相互作用,有效地阻碍了迁移。该研究为制定有效的策略来预防和控制皮革生产中的加脂剂迁移提供了有价值的实践和理论见解。图形抽象
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文献相关原料
公司名称
产品信息
阿拉丁
olein
阿拉丁
tripalmitin
阿拉丁
laurostearin
阿拉丁
tristearin
阿拉丁
distearin
阿拉丁
monostearin
阿拉丁
methyl stearate
阿拉丁
methyl oleate
阿拉丁
methyl palmitate
阿拉丁
methyl laurate
阿拉丁
oleic acid
阿拉丁
palmitic acid
阿拉丁
lauric acid
阿拉丁
fish oil
阿拉丁
rape oil
阿拉丁
Stearic acid
来源期刊
Journal of Leather Science and Engineering
Journal of Leather Science and Engineering 工程技术-材料科学:综合
CiteScore
12.80
自引率
0.00%
发文量
29
期刊最新文献
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