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Catalytic enrichment of plasma with hydroxyl radicals in the aqueous phase at room temperature

机译:与羟基催化浓缩的等离子体在室温下激进分子在水相

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Different iron oxide catalysts supported on mesoporous silica were prepared by several techniques including assembly of pre-synthesized nanoparticles, coprecipitation in the presence of the support or impregnation. Characterization showed that iron oxide nanoparticles were dispersed either at the surface of the SiO2 material or within the pores when prepared by dry impregnation. The catalytic performance of these materials for Fenton chemistry was evaluated through kinetic tests in the presence of coumarin as a radical trap for the quantification of the HO radicals produced. The first tests concerned the production of HO radicals from H2O2 by a Fenton-like reaction. The results show that catalysts prepared by dry impregnation in an ethanolic solution show the highest activity toward the production of HO radicals. These catalysts were also engaged in a reaction without external H2O2 using a cold atmospheric pressure plasma jet treatment with the successful purpose of increasing the production of HO radicals in aqueous solution at room temperature and near-neutral pH. Our best catalysts outperformed others reported in the literature in reactions carried out with soluble species or at acidic pH. Moreover, a synergetic effect between the heterogeneous catalyst and the plasma for HO radical production was highlighted. These radicals could be easily used for biomedical or wastewater treatment applications.
机译:不同铁氧化物催化剂支持介孔二氧化硅被几个准备技术包括pre-synthesized组装纳米粒子,共同沉淀的存在支持或浸渍。表明氧化铁纳米粒子分散在二氧化硅的表面准备的材料或毛孔内干燥浸渍。材料化学芬顿评估通过动态测试中香豆素的存在作为一个激进的陷阱的量化何鸿燊自由基产生。何鸿燊从过氧化氢自由基的生产Fenton-like反应。催化剂由浸渍干燥的ethanolic解决方案显示最高的活动向何鸿燊自由基的生产。催化剂也从事没有反应外部使用冷大气压力过氧化氢等离子体射流治疗成功的目的增加HO自由基的产生水溶液在室温和接近中度博士我们最好的催化剂表现其他文献中报道的反应开展与可溶性物种或酸性pH值。此外,之间的协同作用多相催化和等离子体激进的生产高亮显示。激进分子可以很容易地用于生物医学或废水处理的应用程序。

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