Pandey Neha, Thakur Chandrakant, Saluja Simran, Ghosh Prabir
Department of Chemical Engineering, NIT, Raipur, 492010, India.
Data Brief. 2019 Jun 5;25:104106. doi: 10.1016/j.dib.2019.104106. eCollection 2019 Aug.
This article contains the experimental and statistical data related to decolourization of Amido Black 10B using photocatalytic process. Box-Behnken experimental design (BBD) has been used to study the influence of operational parameters on photocatalytic oxidation of Amido Black 10B by using zinc oxide (ZnO) as a catalyst. This data set presents a concise description of experimental conditions for variable factors such as initial dye concentration of 100 ppm, oxidant dosage 20 mMol/L and catalyst dose 1g/L at natural pH for 4 hr of reaction time in presence of 12W intensity ultra-violet radiation were optimized for over a response parameter, decolorization efficiency of Amido Black 10B. The effects of decolorization on process variables were investigated by developing a mathematical model, results indicated that ZnO can be used as an efficient catalyst for the decolorization of Amido Black 10B. Analysis of variance (ANOVA) showed a high coefficient of statistical measure value (R = 0.9915) and prediction of the driven regression model was found to be satisfactory.
本文包含了与采用光催化法对氨基黑10B进行脱色相关的实验和统计数据。采用Box-Behnken实验设计(BBD)来研究操作参数对以氧化锌(ZnO)为催化剂的氨基黑10B光催化氧化的影响。该数据集简要描述了可变因素的实验条件,如初始染料浓度为100 ppm、氧化剂用量为20 mMol/L、催化剂用量为1g/L,在自然pH值下,反应时间为4小时,在12W强度的紫外线辐射下,针对响应参数——氨基黑10B的脱色效率进行了优化。通过建立数学模型研究了脱色对工艺变量的影响,结果表明ZnO可作为氨基黑10B脱色的有效催化剂。方差分析(ANOVA)显示统计测量值的系数较高(R = 0.9915),并且发现驱动回归模型的预测结果令人满意。