使用纳米材料融合聚合物的抗菌可生物降解卫生护垫

C. Pasha, Sridhar Aravind, Asma Begum, Shaik Muzammil Pasha
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引用次数: 0

摘要

背景和目的:如今,人们经常使用卫生护垫和尿布来处理月经和厕所分泌物。市面上销售的月经垫含有有害化学物质聚丙烯酸钠和二恶英。具有抗菌特性的可生物降解卫生护垫是一个新概念。这项研究重点介绍了含有木质纤维素、无化学物质、纳米材料、果胶酮和甲壳素酶涂层、具有持久抗菌活性的卫生护垫和尿布。对制备的尿垫进行了持水量、生物降解性测试、抗菌活性、pH 值、吸水时间和毒性等方面的评估。材料与方法:根据当前新研究的结果,合成了铜、银和锌等纳米粒子并对其进行了表征,制备了果胶酮和壳寡糖酮并将其涂布在琼脂糖上。此外,还对新型垫进行了生物降解性、持水能力、抗菌活性、pH 值、入口时间和毒性测试。结果显示新型垫的吸水率较高(37-40 毫升),进水时间为 3.6 秒,pH 值为中性,具有抗微生物活性且无毒性。新型垫在 3 个月内实现了完全生物降解。结论制备的新型卫生护垫具有较高的持水量、较长的抗微生物活性和中性 pH 值。卫生护垫可完全生物降解且无毒,可用于常规用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antimicrobial and Biodegradable Sanitary Pads with Nanomaterials Fused Polymers
Background and Objective: Sanitary pads and diapers are routinely used nowadays to manage menstrual and toilet secretions. The commercially available menstrual pads contain harmful chemicals sodium polyacrylate and dioxins. Biodegradable pads with antimicrobial properties are a novel concept. This work highlights sanitary pads and diapers containing lignocellulose based, chemical-free, nanomaterial, pectinosone and chitinase-coated pads with long-lasting antimicrobial activity. The prepared pad was evaluated for its water-holding capacity, biodegradability test, antimicrobial activity, pH, inlet time and toxicity. Materials and Methods: Considering the findings of the current novel study, nanoparticles such as copper, silver and zinc were synthesized and characterized, pectinosone and chitinosone were prepared and coated on agarose. Further, the novel pad was examined for biodegradability, water-holding capacity, antimicrobial activity, pH, inlet time and toxicity tests. Results: The novel pad showed a high absorbance (37-40 mL), an inlet time of 3.6 sec, a neutral pH, anti-microbial activity and no toxicity. The complete biodegradability of the novel pad was achieved in 3 months. Conclusion: The prepared novel sanitary pad is having a high-water holding capacity, long duration anti-microbial activity with a neutral pH. The pad is completely biodegradable and non-toxic and is prescribed for routine purposes.
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