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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Synthesis of Co_3O_4@SiO_2 Core/Shell-Nylon 6 Magnetic Nanocomposite as an Adsorbent for Removal of Congo Red from Wastewater
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Synthesis of Co_3O_4@SiO_2 Core/Shell-Nylon 6 Magnetic Nanocomposite as an Adsorbent for Removal of Congo Red from Wastewater

机译:Co_3O_4 / @ SiO_2芯/壳 - 尼龙6的合成磁性纳米复合物作为废水中去除刚果红色的吸附剂

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In this paper, a Co3O4@SiO2 core-shell magnetic nanoparticle-nylon-6 (CSMN6) was synthesized for the first time and used for the elimination of Congo red dye from wastewater samples. The morphology and the structure of the prepared CSMN6 were studied completely and its adsorption behavior vs. Congo red dye has been investigated. The sorption performance was evaluated using batch studies at room temperature, at varying operating conditions such as solution pH, sorbent dosage, initial dye concentration and contact time. It has been found that the Elovich kinetics model and Langmuir isotherm can describe this process adequately and a maximum adsorption rate of 138.9 mg g(-1) is obtained which may be illustrated by homogeneous physical and chemical adsorption of Congo red on the surface of the adsorbent. Through this process of adsorption with the adsorbent dose of 1.4 g l(-1), more than 86% of the Congo red dye from a solution with the concentration of 50 mg L-1 was eliminated. The saturation magnetization of CSMN6 was 7.8 emu g(-1) and shows paramagnetic properties and could be isolated from the environment using an exterior magnet. The higher temperature was more suitable for the elimination of the Congo red dye. Also, intraparticle rate constant computed for Congo red was 4.87 mg g(-1) min(-1/2) that indicates higher tendency of CSMN6 to remove Congo red from aqueous solutions. The used CSMN6 can be recovered simply by using ethanol and utilized again for eliminating Congo red dye from contaminated water. In these reusing processes, a high yield of 76% may be obtained up to 5 recovery cycles. These results demonstrate that CSMN6 is a considerable candidate for water treatment processes with high effective and repeatable performance.
机译:本文首次合成了CO3O4 // 2烷基核 - 壳磁性纳米粒子-6(CSMN6),用于消除废水样品中的刚果红染料。完全研究了制备的CSMN6的形态和结构,并研究了其吸附行为对刚果红染料。在室温下使用批量生学评估吸附性能,在不同的操作条件下,例如溶液pH,吸附剂剂量,初始染料浓度和接触时间。已经发现,ELOVICH动力学模型和Langmuir等温物可以充分描述该过程,并且获得最大吸附速率为138.9mg g(-1),其可以通过刚果红色的均匀性和化学吸附在表面上吸附剂。通过这种吸附剂的吸附剂剂量为1.4g L(-1),消除了来自浓度为50mg L-1的溶液的86%的刚果红染料。 CSMN6的饱和磁化为7.8 emug(-1),并显示顺磁性,并且可以使用外部磁铁从环境中分离。更高的温度更适合于消除刚果红染料。此外,为刚果红色计算的骨质速率常数为4.87mg g(-1/2)min(-1/2),表明CSMN6的趋势较高,以从水溶液中除去刚果红色。可以仅通过使用乙醇来回收使用的CSMN6并再次用于消除来自受污染的水的刚果红染料。在这些重用方法中,高产率为76%,可以获得高达5个回收循环。这些结果表明,CSMN6是具有高有效和可重复性能的水处理过程的相当大的候选者。

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