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Hybrid UV/COP advanced oxidation process using ZnO as a catalyst immobilized on a stone surface for degradation of acid red 18 dye

机译:杂交UV / COP先进的氧化方法使用ZnO作为固定在石头表面上的催化剂,以降解酸红18染料

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Azo dyes are the largest group of synthetic organic dyes which containing the linkage CNNC and used in various industries such as textile industries leather articles, and some foods. Azo dyes are resistant compounds against the biodegradation processes. The purpose of this research was hybrid UV/COP advanced oxidation process using ZnO as a catalyst immobilized on a stone surface for degradation of acid red 18 (AR18) Dye. In the hybrid process using some parameters such as the dye initial concentration, pH, contact time and catalyst concentration, the process efficiency was investigated. In order to the dye removal, the sole ozonation process (SOP), catalytic ozonation process (COP) and photocatalytic process (UV/ZnO) were used. The ZnO nanoparticles were characterized by XRD, SEM and TEM analyses. ?The maximum dye removal was achieved 97% at the dye initial concentration 25?mg/L, catalyst concentration 3?g/L, contact time 40?min and pH 5. As a real sample, the Yazdbaf textile factory wastewater was selected. After that, the physicochemical quality was evaluated. As well as, in the optimal conditions, the AR18 dye removal efficiency was achieved 65%. The kinetic results demonstrated that the degradation reaction was fitted bypseudo-first-order kinetic. The UV/COP hybrid process had high efficiency for removal of resistant dyes from the textile wastewater.Advantages of this technique were as follows:?ZnO nanoparticles were synthesized as catalyst by thermal method and were immobilized on the stones.?pH changes had no significant effect on the removal efficiency.?In the kinetic studies, the decomposition reaction followedpseudo-first order kinetic.
机译:AZO染料是最大的合成有机染料组,含有联系CNNC,并用于各种行业,如纺织工业皮革制品,以及一些食物。偶氮染料是抵抗生物降解过程的耐药化合物。该研究的目的是使用ZnO作为固定在石表面上的催化剂的杂交UV / COP先进的氧化方法,用于降解酸红18(AR18)染料。在使用诸如染料初始浓度,pH,接触时间和催化剂浓度的一些参数的杂化过程中,研究了过程效率。为了去除染料,使用唯一的臭氧处理(SOP),催化臭氧处理方法(COP)和光催化过程(UV / ZnO)。通过XRD,SEM和TEM分析表征ZnO纳米粒子。 ?在染料初始浓度25〜mg / L,催化剂浓度3μl,接触时间40Ω·m和pH 5.作为实际样品,选择了最大染料去除97%。作为真实样品,选择了yazdbaf纺织品厂废水。之后,评估物理化学质量。除了在最佳条件下,AR18染料去除效率达到65%。动力学结果表明,降解反应越次级动力学。 UV / COP杂化方法具有高效率,用于从纺织废水中去除抗性染料。该技术的adadvares如下:α纳米颗粒通过热法合成为催化剂,并固定在石头上。效果不显着作者:王莹,王莹,王莹,王莹,王莹,王莹,王莹,王莹,王玮

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