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首页> 外文期刊>Journal of the Brazilian Chemical Society >Electrified Water: Liquid, Vapor and Aerosol
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Electrified Water: Liquid, Vapor and Aerosol

机译:电气化水:液体,蒸气和气溶胶

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>Many reports associate electrostatic charge in dielectrics with water, either bulk, finely dispersed in aerosol or as atmospheric vapor. Two widespread but currently controversial assumptions relevant to this topic are the prevalence of electroneutrality and the passive role of water in electrical phenomena, dissipating charge due to its significant electrical conductivity. Early reports from Faraday, Kelvin and their contemporaries also point towards an active role of water as an electrifying agent. Unfortunately, these have been largely ignored or treated as scattered pieces of scientific curiosity, for over a century. New trends in this area have been developing since the late 1990s, due to a number of findings leading to radically new ideas. These derive from the experimental demonstration of widespread occurrence of non-electroneutral water and from charge partition associated with a number of interfacial phenomena, even in electrically shielded environments within grounded enclosures. This is an account on the formation and persistence of electrified water in various natural or anthropic environments, followed by experimental results obtained under well-defined conditions that are revealing different mechanisms for the role of water in charge acquisition and dissipation in dielectrics.
机译:>许多报告都将电介质中的静电荷与水(散装,细分散在气溶胶中或作为大气蒸气)结合在一起。与该主题相关的两个普遍但目前有争议的假设是电子中性的普遍性以及水在电现象中的被动作用,由于其显着的电导率而使电荷消散。法拉第,开尔文及其同代人的早期报道也指出水在电气化方面起着积极作用。不幸的是,一个多世纪以来,这些方法在很大程度上一直被忽略或被视为科学好奇的分散部分。自1990年代后期以来,由于许多发现导致了全新的想法,该领域的新趋势一直在发展。这些来自非电中性水的广泛存在的实验证明,也源自与许多界面现象相关的电荷分配,即使在接地外壳内的电屏蔽环境中也是如此。这是关于在各种自然或人为环境中带电水的形成和持久性的说明,随后是在明确条件下获得的实验结果,这些结果揭示了水在电介质中电荷获取和耗散中作用的不同机制。

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