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Chemical and Biological Warfare Protection and Self-Decontaminating Flax Fabrics Based on CaO Nanoparticles

机译:基于CAO纳米粒子的化学和生物战解保护和自净化亚麻织物

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The aim of this research was to develop fibrous structures using flax, functionalized with calcium oxide nanoparticles, with degradation properties and antibacterial activity.Flax samples were successfully functionalized with CaO nanoparticles (CaO NPs) and characterized by ATR-FTIR, FESEM, EDX and TGA techniques. ATR-FTIR and FESEM results clearly indicated the presence of CaO NPs in the flax fabrics' surface.The influence of surface pre-treatments on the effectiveness of the nanoparticles' deposition was also studied. Three different treatments were used: Alkali, Acetylation and Potassium Permanganate. The alkali treatment presented the best results, therefore, only alkali flax samples were used in UV degradation experiments, as well as antibacterial activity analysis.In order to evaluate the efficiency of the developed systems as agents against chemical and biological warfare, the samples' organophosphate degradation ability (using DMMP as a GB mimic) was tested, under UV irradiation. ATR-FTIR results indicated that DMMP was successfully degraded by CaO Flax samples. Antibacterial tests were also performed, using the Halo method, which did not yield the expected results, in the range of tested conditions.
机译:本研究的目的是使用亚麻形成用氧化钙纳米粒子官能团的纤维结构,具有降解性能和抗菌活性。氟化物样品用CaO纳米颗粒(CaO NPS)成功官能化,其特征在于ATR-FTIR,FESEM,EDX和TGA技巧。 ATR-FTIR和FESEM结果清楚地表明了亚麻织物表面中CaO NP的存在。研究了表面预处理对纳米颗粒沉积的有效性的影响。使用了三种不同的处理:碱,乙酰化和高锰酸钾。碱处理呈现了最佳结果,因此,仅用于UV降解实验中的碱亚麻样品,以及抗菌活性分析。为了评估发达的系统的效率作为化学和生物战争的药物,样品的有机磷酸盐在UV照射下测试降解能力(使用DMMP作为GB模拟)。 ATR-FTIR结果表明DMMP通过CAO亚麻样品成功降解。还使用卤素方法进行抗菌试验,其在测试条件的范围内没有产生预期结果。

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