阴离子铬在皮革制革中的作用

IF 0.6 4区 工程技术 Q4 CHEMISTRY, APPLIED Journal of The American Leather Chemists Association Pub Date : 2021-10-01 DOI:10.34314/jalca.v116i10.4618
Abhinandan Kumar, J. Alla, Deepika Arathanaikotti, J. Raj, N. K. Chandrababu
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引用次数: 0

摘要

与其他已知的鞣制剂相比,铬鞣皮革绝对是独一无二的,特别是在热稳定性、成本和与胶原纤维的反应机制方面。本研究在皮革加工脱灰阶段制备了含不同比例有机酸的自碱性铬鞣材料,并进行了应用。这消除了酸洗和碱化步骤的需要。鞣制皮革抵抗高达103和105±2°C的收缩,而传统的铬鞣制皮革抵抗高达108±2°C。研究了阴离子铬在制革过程中的相互作用。结果表明,实验铬鞣材料中阴离子组分的含量高于常规铬鞣材料,应用实验铬鞣材料获得的收缩温度证明阴离子组分确实参与了铬鞣。鞣制皮革结壳并分析其强度和感官特性。
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Role of Anionic Chromium Species in Leather Tanning
Chrome tanned leathers are definitely unique in comparison with leather made from any other known tanning agents, especially in terms of thermal stability, cost and its reactive mechanism with collagen fibers. In our current studies, self basifying chrome tanning materials masked with different percentages of organic acid were prepared and applied after the de-liming stage of leather processing. This eliminated the need for pickling and basification steps. Tanned leathers resisted shrinkage up to 103 and 105±2°C while conventional chrome tanned leathers resisted up to 108±2°C. Also, interaction of anionic chrome species in tanning was studied. It was observed that the percentage of anionic species in the experimental chrome tanning material was higher than conventional chrome tanning material and the shrinkage temperature achieved by application of experimental tanning material proves that anionic species do involve in tanning. Tanned leathers were crusted and analysed for strength and organoleptic properties.
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来源期刊
Journal of The American Leather Chemists Association
Journal of The American Leather Chemists Association 工程技术-材料科学:纺织
CiteScore
1.30
自引率
33.30%
发文量
29
审稿时长
3 months
期刊介绍: The Journal of the American Leather Chemists Association publishes manuscripts on all aspects of leather science, engineering, technology, and economics, and will consider related subjects that address concerns of the industry. Examples: hide/skin quality or utilization, leather production methods/equipment, tanning materials/leather chemicals, new and improved leathers, collagen studies, leather by-products, impacts of changes in leather products industries, process efficiency, sustainability, regulatory, safety, environmental, tannery waste management and industry economics.
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