首页> 外文期刊>International journal of environmental analytical chemistry >Synthesis and characterisation of magnetic activated carbon/diopside nanocomposite for removal of reactive dyes from aqueous solutions: experimental design and optimisation
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Synthesis and characterisation of magnetic activated carbon/diopside nanocomposite for removal of reactive dyes from aqueous solutions: experimental design and optimisation

机译:磁性活性炭/透辉石纳米复合材料的合成和表征,用于从水溶液中去除活性染料:实验设计和优化

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In this work, a series of magnetic activated carbonanodiopside (Fe3O4/AC/Diop) nanocomposites were synthesised and used for the removal of reactive green KE-4BD dye from the aqueous solution. After preparation of nanodiopside by sol-gel method and activated carbon from coconut husk, first, Fe3O4/AC composite was prepared by in situ synthesis of Fe3O4 nanoparticles between activated carbon pores, and then, different percentages of Fe3O4/AC/Diop nanocomposites were prepared by simple mixing of Fe3O4/AC composite and Diop in ethanol. Formation of Fe3O4/AC and Fe3O4/AC/Diop composites was characterised by FTIR, field emission scanning electron microscopy, BET, XRD and vibrating sample magnetometer analyses. Thermogravimetric analysis was used to show the adsorption capacity of the adsorbent more accurately. Effects of amount of adsorbent, initial pH, contact time and dye concentration on reactive green dye removal were also studied using central composite design. Optimal conditions for maximum reactive green KE-4BD dye adsorption (98.35%) process were as follows: pH = 4.90, adsorbent amount: 0.015 g, dye concentration: 37.17 mg/L and contact time: 10.12 min, respectively. In addition, the adsorption kinetics, thermodynamics and isotherms were examined. Adsorption isotherms (q(max): 344.827 mg/g), kinetics and thermodynamics were demonstrated that the sorption processes were better described by the pseudo-second-order equation and the Langmuir equation.
机译:在这项工作中,合成了一系列磁性活性炭/纳米脂质体(Fe3O4 / AC / Diop)纳米复合材料,并用于从水溶液中去除活性绿色KE-4BD染料。采用溶胶-凝胶法从椰子壳中制备纳米级透辉石和活性炭后,首先在活性炭孔之间原位合成Fe3O4纳米粒子,制备出Fe3O4 / AC复合材料,然后制备不同百分比的Fe3O4 / AC / Diop纳米复合材料通过简单地将Fe3O4 / AC复合材料和Diop混合在乙醇中。通过FTIR,场发射扫描电子显微镜,BET,XRD和振动样品磁强计分析对Fe3O4 / AC和Fe3O4 / AC / Diop复合材料的形成进行了表征。热重分析用于更准确地显示吸附剂的吸附容量。还使用中心复合设计研究了吸附剂的量,初始pH,接触时间和染料浓度对反应性绿色染料去除的影响。最大活性绿色KE-4BD染料吸附(98.35%)工艺的最佳条件分别为:pH = 4.90,吸附量:0.015 g,染料浓度:37.17 mg / L,接触时间:10.12 min。此外,还研究了吸附动力学,热力学和等温线。吸附等温线(q(max):344.827 mg / g),动力学和热力学被证明,通过拟二阶方程和Langmuir方程可以更好地描述吸附过程。

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