首页> 外文期刊>Arabian Journal for Science and Engineering >Parametric Study of COD Reduction from Textile Processing Wastewater Using Adsorption on Cypress Cone‑Based Activated Carbon: An Analysis of a Doehlert Response Surface Design
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Parametric Study of COD Reduction from Textile Processing Wastewater Using Adsorption on Cypress Cone‑Based Activated Carbon: An Analysis of a Doehlert Response Surface Design

机译:赛普拉斯圆锥基活性炭吸附对纺织加工废水中COD还原的参数研究:Doehlert响应面设计的分析

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In this study, the performance of a cypress cone-based activated carbon was tested for the COD reduction from industrial textile wastewater. These cypress cones were locally collected after maturation. The Doehlert response surface design was used to simulate and optimize the decrease in COD in treated wastewater. The dominant parameters for COD removal in the effluent were the temperature, the amount of adsorbent and the pH of the initial solution. The obtained model fit the experimental results with high precision (R-2 > 0.93) and low Fisher probability (< 0.0001), which reflected a strong statistical significance. Additionally, the model shows the order of parameters importance as follows: adsorbent amount > temperature > initial pH. Under the optimal conditions predicted by the regression, a maximum COD reduction could be obtained with a temperature of 319 K at pH 12 and an activated carbon concentration of 1.144 g L-1 after 1 h treatment. Meanwhile, the designed adsorbent realized the decrease in colour (80.4%), COD (19%) and turbidity (67.1%) of wastewater. It could be concluded that cypress cone-based activated carbon is promising in the treatment of textile wastewater. The increase in COD removal rate through hybridization of processes is being considered for future research.
机译:在这项研究中,针对工业纺织品废水中的COD降低,测试了柏柏基活性炭的性能。这些柏树球果在成熟后被局部收集。使用Doehlert响应面设计来模拟和优化处理后废水中COD的减少。废水中COD去除的主要参数是温度,吸附剂的量和初始溶液的pH。获得的模型具有较高的精度(R-2> 0.93)和较低的费舍尔概率(<0.0001),符合实验结果,具有很强的统计学意义。另外,该模型显示参数重要性的顺序如下:吸附剂量>温度>初始pH。在回归预测的最佳条件下,处理1 h后,pH值为319 K且活性炭浓度为1.144 g L-1时,COD减少量最大。同时,设计的吸附剂实现了废水的颜色(80.4%),化学需氧量(19%)和浊度(67.1%)的减少。可以得出结论,以柏树为基的活性炭有望用于纺织废水的处理。正在考虑通过工艺杂交增加COD去除率,以用于未来的研究。

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