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Acceleration of Acetone Destruction Process under Synergistic Action of Photocatalytic Oxidation and Barrier Discharge

机译:光催化氧化与阻挡放电协同作用下丙酮的破坏过程加速

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摘要

Separate and joint work of photocatalytic oxidation based on TiO_2 and surface barrier discharge as a source of active oxygen and UV radiation is investigated for acetone vapors destruction under ambient air conditions. Experiments were carried out in a 404 1 airtight Plexiglas chamber and used five different combinations of photocatalyst, barrier discharge and ultraviolet irradiation under identical initial concentration (~ 170 ppm) of acetone. It is shown for the synergistic action of photocatalytic method and barrier discharge that the initial rate of acetone decomposition per watt of input power increases in more than 1.5 times compared to photocatalytic oxidation. Under operation of plasma of barrier discharge, intermediate products are formed such as CO, acetic acid, acetaldehyde and methane nitrate (CH_3NO_3). These products are not detected for photocatalytic oxidation. Some interesting features of kinetics of acetone decomposition and formation of intermediate products with participation of barrier discharge are revealed.
机译:研究了基于TiO_2的光催化氧化和作为活性氧和UV辐射源的表面势垒放电的单独和联合工作,以消除环境空气条件下的丙酮蒸气。实验是在404 1密闭有机玻璃室内进行的,使用了五种不同的光催化剂,势垒放电和紫外线辐射的组合,它们的丙酮浓度相同(〜170 ppm)。对于光催化方法和势垒放电的协同作用表明,与光催化氧化相比,每瓦输入功率的丙酮分解的初始速率提高了1.5倍以上。在阻挡放电的等离子体的操作下,形成中间产物,例如CO,乙酸,乙醛和硝酸甲烷(CH_3NO_3)。未检测到这些产物的光催化氧化。揭示了一些有趣的丙酮分解动力学和中间产物在势垒放电参与下的形成。

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