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首页> 外文期刊>IEEE Transactions on Industry Applications >Aqueous Phenol Decomposition by Pulsed Discharges on the Water Surface
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Aqueous Phenol Decomposition by Pulsed Discharges on the Water Surface

机译:水表面脉冲放电分解苯酚水溶液

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摘要

Decomposition of environmental contaminants such as phenol contained in water was investigated using a pulsed high-voltage gas-phase discharge on the water surface (water surface plasma). The discharge consists of streamer channels that spread out over the water surface. Discharge characteristics were dependent upon the distance between the needle-tip electrode and the water surface, the shape of the submerged ground electrode, and the composition of the gas enveloping the electrode. When the electrode-water distance was decreased, the discharge mode changed from corona to streamer, and then, finally, to a water surface discharge when the distance was small. Argon gas was the most effective enveloping gas for decomposing phenol in water (compared to oxygen or air). When the gas flow rate was increased to carry away the active species formed in the gas phase; the decomposition rate did not change in argon, but decreased in oxygen. The shape of the submerged ground electrode influenced the discharge state and the phenol decomposition rate. A ring-shaped ground electrode was more effective for decomposition of phenol than straight or semicircular shapes. Experiments were performed to identify the mechanism(s) responsible for the decomposition of organic materials in water.
机译:使用在水表面(水表面等离子体)上的脉冲高压气相放电研究了水中所含环境污染物(例如苯酚)的分解。排放物包括分布在水面上的拖缆通道。放电特性取决于针尖电极与水表面之间的距离,浸没的接地电极的形状以及包围电极的气体成分。当电极与水的距离减小时,放电模式从电晕变为流光,然后,当距离较小时,最终变为水面放电。氩气是分解水中苯酚(与氧气或空气相比)最有效的包封气体。当增加气体流量以带走气相中形成的活性物质时;氩气的分解速率没有变化,但氧气的分解速率却降低了。浸入式接地电极的形状影响放电状态和苯酚的分解速率。环形接地电极比直或半圆形更有效地分解苯酚。进行了实验以确定导致有机物质在水中分解的机理。

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