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Facile one pot synthesis of zinc oxide nanorods and statistical evaluation for photocatalytic degradation of a diazo dye

机译:一锅法合成氧化锌纳米棒及其对重氮染料光催化降解的统计评估

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In the present work zinc oxide nanorods (ZNRs) have been synthesized to estimate its photocatalytic degradation potential on an industrially used diazo dye and optimization of the total treatment process has been designed. Response surface methodology (RSM) has been used to model the operational parameters for this photocatalytic degradation. The crystallite size (101 plane) of the synthesized ZNR has been found to be 20.99 nm having a band gap energy of 3.45 eV. At elevated pH, the rate of degradation of the photocatalyst was found to be higher than that of acidic pH. The independent variables of the model are time (9.6-122 min), pH (2-12.2), catalyst dose (0.2-0.4 g/L) and dye concentration (88-512 mg/L). It was seen that the degradation efficiency was significantly affected by the initial dye concentration and the pH, the optimal values of the parameters being a pH of 10.67, an initial concentration of 150 mg/L and ZnO dose of 0.37 g/L, the time taken being 88.52 min. The actual degradation efficiency of the dye reached 96.9% at optimized condition, which is quite close to the predicted value of 98.07%.
机译:在本工作中,已经合成了氧化锌纳米棒(ZNRs)以估计其在工业上使用的重氮染料上的光催化降解潜力,并设计了总处理工艺的优化方法。响应表面方法学(RSM)已用于对该光催化降解的操作参数进行建模。已发现合成ZNR的微晶尺寸(101平面)为20.99nm,带隙能量为3.45eV。在升高的pH下,发现光催化剂的降解速率高于酸性pH。该模型的独立变量是时间(9.6-122分钟),pH(2-12.2),催化剂剂量(0.2-0.4 g / L)和染料浓度(88-512 mg / L)。可以看出,降解效率受初始染料浓度和pH的影响很大,参数的最佳值为pH为10.67,初始浓度为150 mg / L和ZnO剂量为0.37 g / L,时间被认为是88.52分钟。在优化条件下,染料的实际降解效率达到96.9%,非常接近预测值98.07%。

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