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首页> 外文期刊>Lab on a chip >In situ generation of plasma-activated aerosols via surface acoustic wave nebulization for portable spray-based surface bacterial inactivation
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In situ generation of plasma-activated aerosols via surface acoustic wave nebulization for portable spray-based surface bacterial inactivation

机译:原位产生等离子体激活的气溶胶,通过表面声波雾化用于便携式喷雾的表面细菌灭活

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The presence of reactive species in plasma-activated water is known to induce oxidative stresses in bacterial species, which can result in their inactivation. By integrating a microfludic chipscale nebulizer driven by surface acoustic waves (SAWs) with a low-temperature atmospheric plasma source, we demonstrate an efficient technique for in situ production and application of plasma-activated aerosols for surface disinfection. Unlike bulk conventional systems wherein the water is separately batch-treated within a container, we show in this work the first demonstration of continuous plasma-treatment of water as it is transported through a paper strip from a reservoir onto the chipscale SAW device. The significantly larger surface area to volume ratio of the water within the paper strip leads to a significant reduction in the duration of the plasma-treatment, while maintaining the concentration of the reactive species. The subsequent nebulization of the plasma-activated water by the SAW then allows the generation of plasma-activated aerosols, which can be directly sprayed onto the contaminated surface, therefore eliminating the storage of the plasma-activated water and hence circumventing the typical limitation in conventional systems wherein the concentration of the reactive species diminishes over time during storage, resulting in a reduction in the efficacy of bacterial inactivation. In particular, we show up to 96% reduction in Escherichia coli colonies through direct spraying with the plasma-activated aerosols. This novel, low-cost, portable and energy-efficient hybrid system necessitates only minimal maintenance as it only requires the supply of tap water and battery power for operation, and is thus suitable for decontamination in home environments.
机译:已知在等离子体活性水中存在反应性物质,用于诱导细菌物种中的氧化应力,这可能导致它们的灭活。通过将由表面声波(锯)驱动的微细芯片型雾化器与低温大气源极源相结合,我们证明了一种有效的技术,用于原位生产和应用等离子体活性气溶胶的表面消毒。与块状常规系统不同,其中水分别批量处理在容器内,我们在这项工作中示出了连续等离子体处理的第一次演示,因为它通过从储存器的纸条传送到芯片筒装置上。纸条内水的体积比的显着更大的表面积导致血浆治疗持续时间显着降低,同时保持反应性物种的浓度。随后通过锯进行等离子体活化水的后续雾化,然后允许产生等离子体活性气溶胶,其可以直接喷射到污染的表面上,因此消除了等离子体活化水的储存,因此避免了常规的典型限制其中活性物质的浓度随时间减少的系统,导致细菌失活的疗效降低。特别是,通过用血浆活性气溶胶直接喷涂,我们在大肠杆菌菌落中显示出高达96%的减少。这种新颖的,低成本,便携式和节能的混合系统需要仅限最小的维护,因为它只需要提供自来水和电池供电的操作,因此适用于家庭环境中的净化。

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