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Synergistic Effect of Dielectric Barrier Discharge Plasma and TiO2-Pillared Montmorillonite on the Degradation of Rhodamine B in an Aqueous Solution

机译:介电阻挡排出等离子体和TiO2柱状蒙脱石对水溶液中罗丹明B降解的协同作用

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摘要

Photocatalytic, plasma and combined plasma−photocatalytic processes were applied for the destruction of a model pollutant, Rhodamine B dye, in an aqueous solution (concentration of 40 mg/L). For this purpose TiO2-pillared montmorillonite was used as a photocatalyst (characterized by X-ray analysis and low-temperature nitrogen adsorption/desorption). It was prepared by the method of intercalation of titanium hydroxocomplexes, including hydrothermal activation of the process and preliminary mechanical treatment of the layered substrate. The dielectric barrier discharge (DBD) plasma in the presence of photocatalysts increases the efficiency of dye degradation (100%, 8 s) compared to plasmolysis (94%) and UV photolysis (92%, 100 min of UV irradiation); in contrast to photolysis, destructive processes are more profound and lead to the formation of simple organic compounds such as carboxylic acids. The plasma−catalytic method enhances by 20% the energetic efficiency of the destruction of Rhodamine B compared to DBD plasma. The efficiency of dye destruction with the plasma−catalytic method increases with the improvement of the textural properties of the photocatalyst.
机译:光催化,等离子体和等离子体结合光催化过程被应用于一个模型污染物,若丹明B染料的破坏,在水溶液中(40 mg / L的浓度)。用于此目的的TiO 2的柱状蒙脱石用作光催化剂(特征在于X射线分析和低温氮吸附/解吸附)。它是由钛hydroxocomplexes,包括过程的水热活化和层状衬底的初步机械处理的插层的方法制备。在光催化剂的存在下,电介质阻挡放电(DBD)等离子体时相比增加壁分离(94%)和紫外光解(92%,100分钟UV照射的)染料降解(100%,8秒)的效率;在对比光解的,破坏性的方法是更深刻的,并导致简单的有机化合物的形成,例如羧酸。等离子体催化方法,通过20%若丹明B的破坏的能量效率相比DBD等离子体增强。染料破坏的与等离子体催化方法的效率与光催化剂的纹理特性的提高而增加。

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