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Comparison between Solar and Artificial Photocatalytic Decolorization of Textile Industrial Wastewater

机译:纺织工业废水日光和人工光催化脱色的比较

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The photocatalytic decolorization of industrial wastewater was investigated by using TiO_2 and ZnO photocatalysts. Heterogeneous photocatalytic processes applied under natural weathering conditions, in the presence of solar radiation show a promising degradation capability. The complete removal of color could be achieved in a relatively short time of about 20 minutes, when ZnO was used and about 100 minutes when TiO_2 was used under solar irradiation. However, in the presence of artificial UV-light, complete decolorization of textile industrial wastewater was obtained after less than one hour of irradiation when ZnO was used and in less than two hours, when TiO_2 was used at the same temperature. The results indicate that the degree of photocatalytic decolorization of textile industrial wastewater was obviously affected by different parameters. These parameters include catalyst mass, type of catalyst, type of reactor, type of dye, dye concentration, and temperature. The procedure used in this research can be used as an efficient technology for solar photocatalytic decolorization of the colored wastewater discharged from the textile industry under the climatic conditions of most countries.
机译:利用TiO_2和ZnO光催化剂研究了工业废水的光催化脱色。在太阳辐射的存在下,在自然风化条件下应用的非均相光催化过程显示出有希望的降解能力。当使用ZnO时,在大约20分钟的相对短时间内可以完全去除颜色;而在太阳辐射下,使用TiO_2时,则可以在大约100分钟的相对短时间内实现完全脱色。但是,在人造紫外线的存在下,当使用ZnO辐照少于一小时,而在相同温度下使用TiO_2少于两小时,则纺织工业废水完全脱色。结果表明,不同参数对纺织工业废水的光催化脱色程度有明显的影响。这些参数包括催化剂质量,催化剂类型,反应器类型,染料类型,染料浓度和温度。在大多数国家的气候条件下,该研究中使用的程序可用作对纺织工业排放的有色废水进行太阳能光催化脱色的有效技术。

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