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首页> 外文期刊>Inorganic Chemistry Communications >Enhanced adsorption of Congo red on microwave synthesized layered Zn-Al double hydroxides and its adsorption behaviour using mixture of dyes from aqueous solution
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Enhanced adsorption of Congo red on microwave synthesized layered Zn-Al double hydroxides and its adsorption behaviour using mixture of dyes from aqueous solution

机译:用水溶液中染料混合物增强微波红壤对微波红壤双氢氧化物及其吸附行为的增强

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摘要

The adsorption of Congo red (CR) dye on to the ZnAl-layered double hydroxides (LDHs) nanoadsorbents synthesized using conventional hydrothermal (HT) and microwave-assisted hydrothermal (MW) methods were investigated. Thorough characterization of LDHs were done by using X-ray diffraction, Fourier-transform infrared spectroscopy, BET surface area, Transmission electron microscopy and CHNS elemental analysis methods. Among the microwave synthesized LDHs, ZnAl-NO3 has shown superior adsorption capacity for Congo red (CR) in aqueous solution than its counter ZnAl-CO3 LDH which was attributed to enhanced porosity and acidic property of the ZnAl-NO3 LDH. Adsorption capacity of the LDH adsorbents has been tested using various concentrations of CR ranging from 100 to 1200 ppm in water and the monolayer adsorption capacity of ZnAl-NO3 was observed as 571.43 mg g(-1). It is important to note that adsorption studies were performed at ambient temperature and without maintaining pH of the solution. We have also studied the adsorption performance of the ZnAl-NO3-LDH for mixture of various anionic and cationic dyes in water using 25-100 ppm concentration of each dye in water. It has showed good adsorption affinity for anionic dyes over cationic dyes. In addition, the adsorption rates of CR onto ZnAI-NO3-MW are rather fast and CR adsorption equilibrium data obeys Langmuir adsorption isotherm model and kinetics data fitted to pseudo second-order kinetic model with correlation coefficients ranging from 0.998 to 0.999.
机译:研究了刚果红色(Cr)染料对使用常规水热(HT)和微波辅助水热(MW)方法合成的ZNAL层叠的双氢氧化物(LDHS)纳米碳糖苷(MW)方法的吸附。通过使用X射线衍射,傅里叶变换红外光谱,BET表面积,透射电子显微镜和CHN元素分析方法来完成LDH的彻底表征。在微波合成的LDH中,ZNAL-NO3显示了水溶液中刚果红色(Cr)的优异的吸附能力,其抗副CO 3 LDH归因于ZNAL-NO3 LDH的增强孔隙率和酸性性能。使用各种浓度的CR测试LDH吸附剂的吸附能力在水中100-1200ppm的浓度进行测试,并且观察到ZNA3的单层吸附能力为571.43mg(-1)。值得注意的是,在环境温度下进行吸附研究,而不保持溶液的pH。我们还研究了使用25-100ppm浓度在水中使用25-100ppm浓度的水中各种阴离子和阳离子染料的混合物的吸附性能。它对阳离子染料的阴离子染料显示出良好的吸附亲和力。此外,Cr到Znai-No3-MW上的吸附率是相当快的,CR吸附平衡数据Obeys Langmuir吸附等温线模型和动力学数据适用于伪二阶动力学模型,其相关系数范围为0.998至0.999。

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