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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Removal of the hazardous dyes through adsorption over nanozeolite-X: Simultaneous model, design and analysis of experiments
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Removal of the hazardous dyes through adsorption over nanozeolite-X: Simultaneous model, design and analysis of experiments

机译:通过在纳米沸石 - X上吸附去除危险染料:同时模型,设计和实验分析

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Dyes are known as important contaminants which can be dangerous to humans, animals, and other living organisms. Therefore, it requires considerable attention to remove them from industrial wastewater before being discharged to the environment. In this study, we synthesized nanozeolite-X (NX) via the hydrothermal crystallization method and utilized it as an adsorbent to remove Methyl Orange (MO), Reactive Blue 15 (RB-15), and Reactive Red 239 (RR-239) dyes simultaneously by an ultrasound-assisted method. The morphology and structure of NX were investigated through scanning electron microscopy (SEM), X-ray diffraction (XRD) and Brunauer-Emmett-Teller (BET) techniques. The effects of independent variables on the adsorption efficiency of dyes mixture were examined with the help of the response surface method (RSM). The second-order quadratic model was used to predict the response of each dye. The importance of various independent variables and their interactions were checked through analysis of variance (R-2 greater than 0.95 and P less than 0.05). The optimization of process variables for maximum absorption by NX was carried out using a quadratic model. According to the optimal conditions from RSM, the best function of the method in 0.4 g NX, pH 6, 5 mg L2(-1), obtained from a mixture of three dyes, and when they were exposed to ultrasound for 1200 s. NX could simultaneously remove more than 93% of the dye mixture in a short time under favorable conditions. Eventually, the local textile factory with the recovery of more than 82% was used to determine MO, RB-15, and RR-239 in water samples, successfully. (C) 2020 Elsevier Ltd. All rights reserved.
机译:染料被认为是对人类、动物和其他生物有害的重要污染物。因此,在将其排放到环境中之前,需要相当注意将其从工业废水中去除。在本研究中,我们通过水热结晶法合成了纳米沸石-X(NX),并将其用作吸附剂,通过超声波辅助方法同时去除甲基橙(MO)、活性蓝15(RB-15)和活性红239(RR-239)染料。通过扫描电子显微镜(SEM)、X射线衍射(XRD)和Brunauer-Emmett-Teller(BET)技术研究了NX的形貌和结构。利用响应面法(RSM)研究了自变量对染料混合物吸附效率的影响。二阶二次模型用于预测每种染料的响应。通过方差分析(R-2大于0.95,P小于0.05)检查各种自变量的重要性及其相互作用。利用二次模型对NX最大吸收的工艺变量进行了优化。根据RSM的最佳条件,该方法在0.4 g NX,pH 6,5 mg L2(-1)中的最佳功能是从三种染料的混合物中获得的,并且当它们暴露在超声波中1200 s时。在有利条件下,NX可以在短时间内同时去除93%以上的染料混合物。最终,当地纺织厂以超过82%的回收率成功地测定了水样中的钼、RB-15和RR-239。(C) 2020爱思唯尔有限公司版权所有。

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