抗菌生物材料的开发:紫荆提取物在棉竹混纺织物上的优化方法

Q3 Engineering
S. M. Naseera, Dr. R. Prabha
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引用次数: 0

摘要

目的:研究紫荆花抗菌生物材料的优化方法。提取。紫荆是豆科紫荆科的一种可食用植物。紫荆。通常被称为中国。阿育吠陀医学实践长期以来一直利用紫荆花的叶子、花朵和茎皮来治疗各种疾病。方法:以中草药浓度(1、2、3%)、粘结剂浓度(1、2、3%)和湿吸剂浓度(50、100、200%)为优化参数,制备棉竹织物(50+50棉竹混纺)。采用EN ISO 20645抗菌活性测试技术作为功能测试,在各种最佳设置下检查所有样品。在确定最佳条件后,按照纺织品标准对完成的样品进行了物理和舒适特性测试。结果:在竹棉中,以3%草药浓缩液处理的RUN-16表现出最大的抑制区。织物的计数、厚度、透气性和排汗质量在使用选定的草药浓度后没有显着变化。结果表明,理想的整理条件对织物样品的内在特性没有影响。来自分析的统计资料进一步证实了这一点。结果发现,在所有选择的run中,较高的草药浓度为3%时,对两种测试细菌表现出更强的抗菌抑制区。结论:本实验结果表明,开发的抗菌生物材料具有纺织工业应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Antibacterial Biomaterial: Optimization method of Bauhinia varigata L. Extract on Cotton Bamboo Blended Fabric
Aim: The present study reports the development of antibacterial biomaterial by optimization method of Bauhinia varigata Linn. extract. Bauhinia Variegata is an edible plant belongs to family (Fabaceae/Leguminosae). Bauhinia varigata Linn., commonly referred to as Kanchna. Ayurvedic medical practice has long utilized Bauhinia's leaves, blossoms, and stem bark as a treatment for a variety of illnesses. Methods: Cotton Bamboo fabric (50+50 cotton-bamboo blend) were finished using optimization parameters such as herbal concentrations (1, 2 and 3%), binder concentrations (1, 2 and 3%) and wet pick-up percentages (50, 100 and 200%). The EN ISO 20645 test technique for antibacterial activity was employed as the functional test to examine all the samples under various optimum settings. The completed samples were examined using textile standards for their physical and comfort characteristics after the most optimal condition was determined. Result: In bamboo cotton, RUN-16 finished with 3% herbal concentrates showed maximum inhibitory zones. The fabric's count, thickness, air permeability, and wicking qualities did not significantly change following the application of selected herbal concentrations. It demonstrates that ideal finishing conditions have no effect on the intrinsic characteristics of fabric samples. Statistical information from the analysis further confirmed it. It was found that higher herbal concentrations of 3% in all selected RUNs expressed stronger antibacterial inhibitory zones against the two test bacteria. Conclusion: The obtained results emphasized that the developed antibacterial biomaterial of B. varigata finished fabrics shall be used for technical textile applications.
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来源期刊
推进技术
推进技术 Engineering-Aerospace Engineering
CiteScore
1.40
自引率
0.00%
发文量
6610
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