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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Membrane capsules with hierarchical Mg(OH)(2) nanostructures as novel adsorbents for dyeing wastewater treatment in carpet industries
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Membrane capsules with hierarchical Mg(OH)(2) nanostructures as novel adsorbents for dyeing wastewater treatment in carpet industries

机译:具有等级Mg(OH)(2)纳米结构的膜胶囊作为新型吸附剂,用于在地毯行业中染色废水处理

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摘要

Dye bearing wastewater poses a serious threat to the aquatic environment due to its appearance and toxicity. The removal of color from wastewater is a major problem for developing countries due to lack of efficiency of the conventional methods and high cost involved for the treatment process. In this research, a novel kind of adsorbents was proposed with high amount of basic dye removal. These adsorbents were named membrane capsules and were utilized for treating industrial textile wastewater in Yaldaye Kavir Co. (Kashan). The membrane capsules were prepared via a cost-efficient technique i.e. electrospraying that their average diameter was 1.1 mm. It was taken advantage of hierarchical Mg(OH)(2) nanostructures as excellent adsorptive filler. These nanostructures were classified in two main morphologies. In the first morphology, the hierarchical nanostructures were cylindrically formed, while the second one took shape like a flower. Mg mapping of these microspherical adsorbents confirmed a perfect dispersion of these nanostructures. The flower-like Mg(OH)(2) nanostructures with 45 nm nanoparticles on their surface showed the best performance for all industrial basic dyes (>90%). The thermodynamic isotherm of adsorption for this optimum membrane capsule was Langmuir type. Also, the adsorptive rate of Basacryl Red GL conformed to second-order kinetical model. (C) 2016 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:由于其外观和毒性,染料轴承废水对水生环境构成严重威胁。由于缺乏常规方法的效率和治疗过程所涉及的高成本,从废水中取出颜色是发展中国家的主要问题。在本研究中,提出了一种具有大量碱性染料的吸附剂。这些吸附剂被命名为膜胶囊,用于治疗Yaldaye Kavir Co.(喀山)的工业纺织废水。通过成本效率的技术制备膜胶囊,即电喷雾它们的平均直径为1.1mm。据优于含有优异吸附填料的分层Mg(OH)(2)纳米结构的优势。这些纳米结构分为两种主要形态。在第一种形态中,等级纳米结构是圆柱形的,而第二个纳米结构呈像花一样呈现形状。这些微球体吸附剂的Mg映射证实了这些纳米结构的完美分散。表面上具有45nm纳米颗粒的花状Mg(OH)(2)纳米结构表现出所有工业碱性染料(> 90%)的最佳性能。对该最佳膜胶囊的吸附热力学等温线是Langmuir型。此外,Basacryl Red GL的吸附率符合二阶术语模型。 (c)2016台湾化工工程师学院。 elsevier b.v出版。保留所有权利。

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