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Effects of Pulsed Low Frequency Electromagnetic Fields on Water Characterized by Light Scattering Techniques: Role of Bubbles

机译:脉冲低频电磁场对光散射技术表征的水的影响:气泡的作用

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摘要

Well-characterized purified water was exposed for 6 h to pulsed low-frequency weak electromagnetic fields. After various time periods, nondegassed and degassed water samples were analyzed by static light scattering. Just after electromagnetic exposure (day 0), a reduction of over 20% in the maximum light scattering intensity at 488 nm wavelength in both nondegassed and degassed samples was observed. By contrast, on day 12 the difference was observed only in nondegassed water samples. The latter effect was attributed to the different geometries of the containers combined with the basic origin of the whole phenomenon due to gas bubbles present in water. By the use of dynamic light scattering, the bubble mean diameter was estimated to be around 300 nm. Our results suggest that the electromagnetic exposure acts on gas nanobubbles present in water and emphasizes the role of the gas/liquid interface. The possibility that exposure to electromagnetic fields disturbs the ionic double-layer that contributes to bubble stabilization in water is discussed.
机译:表征良好的纯净水暴露于脉冲低频弱电磁场6小时。在各个时间段之后,通过静态光散射对未脱气和脱气的水样品进行分析。在电磁暴露后(第0天),在未脱气和脱气的样品中,在488 nm波长处观察到最大光散射强度降低了20%以上。相反,在第12天,仅在未脱气的水样品中观察到了差异。后一种效应归因于容器的不同几何形状,再加上由于水中存在气泡而导致的整个现象的基本起因。通过使用动态光散射,气泡平均直径估计为300 nm左右。我们的结果表明,电磁暴露作用于水中存在的气体纳米气泡,并强调了气/液界面的作用。讨论了暴露于电磁场干扰离子双层的可能性,该离子双层有助于水中的气泡稳定。

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