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首页> 外文期刊>Journal of Molecular Liquids >Fabrication of nickel-iron layered double hydroxides using nickel plating wastewater via electrocoagulation, and its use for efficient dye removal
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Fabrication of nickel-iron layered double hydroxides using nickel plating wastewater via electrocoagulation, and its use for efficient dye removal

机译:通过电凝固镀镍废水制备镍 - 铁层双氢氧化物,及其用于高效染料的用途

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Dye wastewater is one of the most challenging pollutants for environmental protection and safe human health. Therefore, development of high-efficiency, non-toxic, renewable, and low-cost adsorbents for dyestuff wastewater is imperative. Considering the recycling of sludge into a high value-added product and utilizing waste to treat pollution, for the first time, we present a novel electrocoagulation method for fabricating a two-dimensional layered material, Ni-Fe LDH, using nickel plating wastewater as a raw material. The obtained Ni-Fe-10 LDH exhibited excellent removal efficiency for Congo red wastewater, and the theoretical maximum adsorption capacity was 476.19 mg/g, which is a remarkable adsorption ability compared to that of previously reported LDH materials. The analysis based on the structural and morphological characteristics of the sample revealed that the excellent absorption capacity of Ni-Fe10 could be attributed to the mesoporous structure and morphology of the nanosheet, which provided a high surface area, large pore volumes, and numerous adsorption sites. The adsorbed Congo red dye was desorbed using NaOH solution and methanol, and the regenerated Ni-Fe LDH could be reused in multiple regeneration cycles, achieving 78% removal efficiency even after five cycles. The adsorption process of the dye using the Ni-Fe-10 LDH adsorbent coincided with the Langmuir isotherm and pseudo-second-order kinetic models. XRD and infrared analyses indicated that the adsorption mechanism of Ni-Fe-10 mainly depended on the electrostatic attraction accompanied by simultaneous ion exchange and H-bonding. (C) 2021 Elsevier B.V. All rights reserved.
机译:染料废水是环境保护和人类健康安全最具挑战性的污染物之一。因此,开发高效、无毒、可再生、低成本的染料废水吸附剂势在必行。考虑到污泥循环利用成为高附加值产品和利用废物处理污染,我们首次提出了一种以镀镍废水为原料制备二维层状材料Ni-Fe-LDH的电凝聚新方法。所制备的Ni-Fe-10ldh对刚果红废水具有良好的去除效果,理论最大吸附量为476.19mg/g,与之前报道的LDH材料相比具有显著的吸附能力。基于样品结构和形态特征的分析表明,Ni-Fe10的优异吸附能力可归因于纳米片的介孔结构和形态,其提供了高比表面积、大孔体积和众多吸附位点。吸附的刚果红染料用NaOH溶液和甲醇解吸,再生的Ni-Fe-LDH可在多次再生循环中重复使用,即使在五次循环后仍能达到78%的去除率。使用Ni-Fe-10 LDH吸附剂吸附染料的过程符合Langmuir等温线和伪二级动力学模型。XRD和红外分析表明,Ni-Fe-10的吸附机理主要取决于静电吸附,同时伴有离子交换和氢键。(c)2021爱思唯尔B.V.保留所有权利。

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