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使用从埃塞俄比亚高岭土合成的高岭土和X型沸石去除纺织废水中的亚甲蓝。

Removal of methylene blue from textile waste water using kaolin and zeolite-x synthesized from Ethiopian kaolin.

作者信息

Mulushewa Zemedkun, Dinbore Wendimagegn Tagesse, Ayele Yihunie

机构信息

Dilla University, College of Natural and Computational Science, Department of Chemistry, Dilla 419, Ethiopia.

Dilla University, University Industry linkage and Technology Transfer Directorate Office, Dilla 419, Ethiopia.

出版信息

Environ Anal Health Toxicol. 2021 Mar;36(1):e2021007-0. doi: 10.5620/eaht.2021007.

Abstract

The wastewater generated from textile factories is linked to one of the main water pollution problems; therefore, it is important to reduce the pollutants in industrial effluents before their discharge into environment. The present study was to investigate the appropriateness zeolite-x and kaolin as effective adsorbents for removal of methylene blue from the textile wastewater. Batch adsorption experiments were carried out to assess parameters that influence the adsorption process. The prepared zeolite-x and kaolin were characterized by Fourier Transform Infrared and X-ray diffraction techniques. The results of this study showed that the particle size is 40.77 nm and 0.45 nm kaolin and zeolite-x respectively. The performance of zeolite-x adsorbent is best at the optimum pH 4 with removal efficiency of 97.77% and kaolin adsorbent at pH 6 with removal efficiency of 86.86%. The optimum contact time was obtained at 60 and 80 minutes for zeolite-x and kaolin respectively. While optimum adsorbent dosage was obtained at 0.4 and 0.6 grams with removal efficiency of 97.12% and 87.75% for the zeolite-x and kaolin adsorption experiment respectively. The confirmed square sum errors values are 1.0×10-4 and 1.0×10-3 for zeolite-x and kaolin, respectively. The Adsorption isotherms results have well fitted to Freundlich isotherm than Langmuir isotherm. The adsorption kinetics results were best fitted the pseudo second order model. The result shows that the zeolite-x has high removal efficiency than kaolin at the same operating conditions. Application of this method can be economically, environmentally, and socially feasible to address wastewater problems. Further research has to be carried out on the removal capacity of this adsorbent for organic dyes not only from the textile industry but also from leather industries and soap industries.

摘要

纺织厂产生的废水与主要的水污染问题之一相关;因此,在工业废水排放到环境之前减少其中的污染物很重要。本研究旨在调查沸石-X和高岭土作为从纺织废水中去除亚甲基蓝的有效吸附剂的适用性。进行了批量吸附实验以评估影响吸附过程的参数。通过傅里叶变换红外光谱和X射线衍射技术对制备的沸石-X和高岭土进行了表征。本研究结果表明,高岭土和沸石-X的粒径分别为40.77纳米和0.45纳米。沸石-X吸附剂在最佳pH值4时性能最佳,去除效率为97.77%,高岭土吸附剂在pH值6时去除效率为86.86%。沸石-X和高岭土的最佳接触时间分别为60分钟和80分钟。而沸石-X和高岭土吸附实验的最佳吸附剂用量分别为0.4克和0.6克,去除效率分别为97.12%和87.75%。沸石-X和高岭土的确定平方和误差值分别为1.0×10⁻⁴和1.0×10⁻³。吸附等温线结果与弗伦德里希等温线的拟合度优于朗缪尔等温线。吸附动力学结果最符合伪二级模型。结果表明,在相同操作条件下,沸石-X的去除效率高于高岭土。应用该方法在经济、环境和社会方面解决废水问题是可行的。必须进一步研究这种吸附剂对不仅来自纺织工业,而且来自皮革工业和肥皂工业的有机染料的去除能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a937/8207001/247b5ac991be/eaht-36-1-e2021007f1.jpg

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