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Degradation of toluene gas at the surface of ZnO/SnO2 photocatalysts in a baffled bed reactor

机译:折床反应器中ZnO / SnO 2 光催化剂表面的甲苯气体降解

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摘要

To eliminate volatile organic compounds (VOCs) from contaminated air, a novel medium-scale baffled photocatalytic reactor was designed and fabricated, using immobilized ZnO/SnO2 coupled oxide photocatalysts. Toluene was chosen as a representative pollutant of VOCs to investigate the degradation mechanism and the parameters affecting photocatalytic degradation efficiency. The preliminary experimental results indicate that the degradation efficiency of toluene increased with the increase of the light irradiation dosage, while it decreased with the increase of concentrations of toluene. The degradation efficiency increased rapidly with the increase of the relative humidity in a low humidity range from 0 to 35%, but decreased gradually in a high relative humidity (i.e., >35%). The optimum experimental conditions for toluene degradation is a toluene concentration of 106 mg m−3, a relative humidity of 35%, and an illumination intensity of ca. 6 mW cm−2 at the surface of ZnO/SnO2 photocatalysts. The intermediates produced during the gaseous photocatalytic degradation process were identified using the GC–MS technique. Based on these identified intermediates, the photocatalytic mechanism of toluene into ZnO/SnO2 coupled oxide catalyst was also deduced.
机译:为了消除污染空气中的挥发性有机化合物,利用固定化的ZnO / SnO 2 耦合氧化物光催化剂设计并制造了新型中型折流板光催化反应器。选择甲苯作为挥发性有机化合物的代表性污染物,研究降解机理和影响光催化降解效率的参数。初步的实验结果表明,甲苯的降解效率随光照射剂量的增加而增加,而随甲苯浓度的增加而降低。在低湿度范围从0到35%时,降解效率随相对湿度的增加而迅速增加,而在高相对湿度(即> 35%)中,降解效率逐渐降低。甲苯降解的最佳实验条件是:甲苯浓度为106 mg m -3 ,相对湿度为35%,照度为。在ZnO / SnO 2 光催化剂的表面上6 mW cm −2 。使用GC-MS技术鉴定了在气态光催化降解过程中产生的中间体。基于这些中间体,推导了甲苯对ZnO / SnO 2 偶联氧化物催化剂的光催化机理。

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