...
首页> 外文期刊>Journal of Magnesium and Alloys >An efficient and comparative adsorption of Congo red and Trypan blue dyes on MgO nanoparticles: Kinetics, thermodynamics and isotherm studies
【24h】

An efficient and comparative adsorption of Congo red and Trypan blue dyes on MgO nanoparticles: Kinetics, thermodynamics and isotherm studies

机译:在MgO纳米粒子上的刚果红和锥虫蓝染料的高效和比较吸附:动力学,热力学和等温性研究

获取原文

摘要

Cubic phase of MgO nanoparticles were prepared by microwave-assisted combustion synthesis and investigated for the removal of toxic dyes like Congo Red (CR) and Trypan blue (TB). The crystallite size of the MgO nanoparticle was calculated to be 18?nm from XRD pattern. The sample was further characterized by FTIR, TGA and FESEM techniques. The dyes were subjected to prototypical batch adsorption process, including investigation of different parameters like MgO dosage, dye concentration, solution pH, agitation speed and temperature. It was found that, 0.2?g of MgO NPs showed maximum removal efficiency for both the dyes (more than 98%), having 25?ppm of dye concentration at an acidic pH (3–4). The maximum loading capacity of MgO NPs was obtained to be 136?mg/g and 132?mg/g for CR and TB, respectively. Different thermodynamic parameters like ΔG0, ΔH0and ΔS0were measured. The negative ΔH0and the positive ΔS0values for both the dyes correspond to an exothermic process and an increase in randomness of the adsorbent and dye. The isotherm analysis exhibited that the Freundlich model fits better to the experimental equilibrium data, suggesting heterogeneous surface of the nanoparticles. Whereas, the kinetic data revealed a pseudo 2nd order rate for adsorption process.
机译:通过微波辅助燃烧合成制备MgO纳米颗粒的立方相,并研究了刚果红色(Cr)和台盼蓝(TB)等有毒染料。将MgO纳米粒子的微晶尺寸计算为来自XRD图案的18℃。通过FTIR,TGA和FESEM技术进一步表征样品。对染料进行原型批量吸附过程,包括对MgO剂量,染料浓度,溶液pH,搅拌速度和温度等不同参数的研究。结果发现,0.2μg的MgO NPS显示染料(超过98%)的最大去除效率(超过98%),在酸性pH(3-4)处具有25μppm的染料浓度。获得MgO NP的最大负载能力,分别获得136〜Mg / g和132×132〜132毫克/ g。不同的热力学参数,如ΔG0,ΔH0和ΔS0所测量的。两种染料的负ΔH0和阳性δ0Value对应于放热过程和吸附剂和染料随机性的增加。等温分析表明,Freundlich模型适合于实验性平衡数据,表明纳米颗粒的异质表面。虽然,动力学数据显示了用于吸附过程的伪2nd阶速率。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号