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Photocatalytic Degradation of Two Commercial Reactive Dyes in Aqueous Phase Using Nanophotocatalysts

机译:纳米光催化剂对水相中两种商业反应染料的光催化降解

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摘要

This study involves the photocatalytic degradation of Reactive Black 5 (RB5) and Reactive Orange 4 (RO4) dyes, employing heterogeneous photocatalytic process. Photocatalytic activity of different semiconductors such as titanium dioxide (TiO2) and zinc oxide (ZnO) has been investigated. An attempt has been made to study the effect of process parameters through amount of catalyst, concentration of dye, and pH on photocatalytic degradation of RB5 and RO4. The experiments were carried out by varying pH (3–11), amount of catalyst (0.25–1.5 g/L), and initial concentration of dye (10–100 mg/L). The optimum catalyst dose was found to be 1.25 and 1 g/L for RB5 and RO4, respectively. In the case of RB5, maximum rate of decolorization was observed in acidic medium at pH 4, whereas the decolorization of RO4 reached maximum in basic region at pH 11. The performance of photocatalytic system employing ZnO/UV light was observed to be better than TiO2/UV system. The complete decolorization of RB5 was observed after 7 min with ZnO, whereas with TiO2, only 75% dye degraded in 7 min. In the case of RO4, 92 and 62% decolorization was noticed in the same duration.
机译:这项研究涉及采用异质光催化工艺对活性黑5(RB5)和活性橙4(RO4)染料进行光催化降解。研究了诸如二氧化钛(TiO2)和氧化锌(ZnO)等不同半导体的光催化活性。已经尝试研究通过催化剂的量,染料的浓度和pH对RB5和RO4的光催化降解的工艺参数的影响。通过改变pH值(3-11),催化剂量(0.25-1.5 g / L)和染料的初始浓度(10-100 mg / L)进行实验。发现对于RB5和RO4,最佳催化剂剂量分别为1.25和1g / L。在RB5的情况下,在pH 4的酸性介质中观察到最大的脱色速率,而在pH 11的碱性区域中RO4的脱色达到最大。使用ZnO / UV光的光催化系统的性能要优于TiO2。 / UV系统。 ZnO在7分钟后观察到RB5完全脱色,而TiO2在7分钟内仅降解了75%的染料。在RO4的情况下,在相同的时间内观察到92%和62%的脱色。

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