首页> 外文期刊>Environmental Science and Pollution Research >Facile synthesis of carbon-coated layered double hydroxide and its comparative characterisation with Zn–Al LDH: application on crystal violet and malachite green dye adsorption—isotherm, kinetics and Box-Behnken design
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Facile synthesis of carbon-coated layered double hydroxide and its comparative characterisation with Zn–Al LDH: application on crystal violet and malachite green dye adsorption—isotherm, kinetics and Box-Behnken design

机译:碳涂层分层双氢氧化物的容易合成及其对Zn-Al LDH的比较表征:在晶体紫和孔雀石绿色染料吸附 - 等温,动力学和箱Behnken设计的应用

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The adsorption of crystal violet (CV) and malachite green (MG) dyes using carbon-coated Zn–Al-layered double hydroxide (C–Zn–Al LDH) was investigated in this work. The characterisation of both Zn–Al LDH and C–Zn–Al LDH was performed using XRD, SEM, TEM, EDX, XPS, FTIR, BET and TGA. The results indicated that carbon particles were effectively coated on Zn–Al LDH surface. The average total pore volume and pore diameter of C–Zn–Al LDH were observed as 0.007?cc/g and 3.115?nm. The impact of parameters like initial dye concentration, pH and adsorbent dosage on the dye removal efficiency was confirmed by carrying out Box-Behnken design experiments. Langmuir isotherm was well suited for both CV and MG adsorption among other isotherm models. The adsorption capacity was maximally obtained as 129.87 and 126.58?mg/g for CV and MG respectively. Pseudo-second order fits the adsorption kinetics than any other kinetic models for both the dyes. The thermodynamic study indicates that the adsorption process of CV was exothermic, whereas for MG was endothermic. Electrostatic attraction, H-bonding, n-π and π- π interactions were mainly influenced in the adsorption process. This study concludes that C–Zn–Al LDH is an efficient adsorbent for the CV and MG dye removal from aqueous solutions. Graphical abstract ? Graphical abstract contains text below the minimum required font size of 6pts inside the artwork, and there is no sufficient space available for the text to be enlarged. Please provide replacement figure file.Graphical abstract contains text is rewritten with the maximum required font size inside the artwork and provided sufficient space between the text which is enlarged.The new Graphical abstract is attached as an image in the attachment file for your further usage.
机译:在这项工作中研究了使用碳涂覆的Zn-Al层层双氢氧化物(C-Zn-Al LDH)的晶体紫(CV)和孔雀石绿(Mg)染料的吸附。使用XRD,SEM,TEM,EDX,XPS,FTIR,BET和TGA进行Zn-Al LDH和C-Zn-Al LDH的表征。结果表明,在Zn-Al LDH表面上有效地涂覆碳颗粒。观察到C-Zn-Al LDH的平均总孔体积和孔径为0.007℃/ g和3.115·nm。通过实施箱Behnken设计实验,确认了初始染料浓度,pH和吸附剂量等参数的影响通过实施箱Behnken设计实验。 Langmuir等温线非常适合于其他等温模型的CV和MG吸附。吸附容量分别最大为129.87和126.58〜46.58Ωmg/ g的CV和Mg。伪二次订单适合吸附动力学,而不是两种染料的任何其他动力学模型。热力学研究表明,CV的吸附过程是放热的,而Mg是吸热的。静电吸引,H键合,N-π和π-π相互作用主要影响吸附过程。该研究得出结论,C-Zn-Al LDH是从水溶液中除去CV和Mg染料的有效吸附剂。图形概要 ?图形摘要包含艺术品内6pt的最小所需字体大小的文本,并且没有足够的空间可用于放大的文本。请提供替换图文件。图形摘要包含文本以艺术品内的最大必需字体大小重写,并在放大的文本之间提供了足够的空间。新图形摘要在附件文件中附上了附件中的图像,以获得进一步的使用。

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