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Probing the chemical and electrochemical properties of SCWO systems

机译:探索SCWO系统的化学和电化学性质

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摘要

Supereritical water oxidation (SCWO) is currently being developed as a means of destroying resilient, highly toxic waste, such as halogenated hydrocarbons (e.g. polychlorinated biphenyls, PCBs) and the hydrolyzate from chemical agents. The advantages offered by SCWO over incineration, for example, include closed cycle operation and very high destruction efficiencies. The latter are achieved by employing very aggressive oxidizing conditions that are obtained by maintaining a high oxygen fugacity in the system and by operating at elevated temperatures (up to 650 ℃). These conditions are also extraordinarily corrosive towards common structural materials, such as nickel-based alloys and ceramics. This paper reviews some of the properties that define the corrosiveness of SCWO media towards common structural materials and identifies issues that must be resolved before this technology becomes a practical reality. In particular, we show that it is now possible to measure pH and polarization data at temperatures well above the critical temperature, even though the density and viscosity of the medium are more characteristic of a dense gas than they are of water under ambient conditions.
机译:目前正在开发上层水氧化法(SCWO),以销毁有弹性的剧毒废物,例如卤化碳氢化合物(例如多氯联苯,多氯联苯)和化学试剂的水解产物。例如,SCWO在焚化方面提供的优势包括封闭循环操作和极高的销毁效率。后者是通过采用非常剧烈的氧化条件而实现的,该条件通过保持体系中的高氧逸度并在高温(最高650℃)下运行而获得。这些条件也对诸如镍基合金和陶瓷之类的普通结构材料具有极强的腐蚀性。本文回顾了一些定义SCWO介质对常见结构材料的腐蚀性的特性,并确定了在该技术成为现实之前必须解决的问题。尤其是,我们表明,即使在环境条件下,介质的密度和粘度比稠密气体比水更具有特征性,现在可以在远高于临界温度的温度下测量pH和极化数据。

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