首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Effective Remediation of an Antibacterial Drug from Aqua Matrix Using cafe_2O_4/ZrO_2 Nanocomposite Derived via Inorganic Chemical Pathway: Statistical Modelling by Response Surface Methodology
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Effective Remediation of an Antibacterial Drug from Aqua Matrix Using cafe_2O_4/ZrO_2 Nanocomposite Derived via Inorganic Chemical Pathway: Statistical Modelling by Response Surface Methodology

机译:通过无机化学途径衍生的CaFe_2O_4 / ZrO_2纳米复合材料有效地修复来自Aqua基质的抗菌药物:响应表面方法统计学建模

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With the rapid development in nanotechnology, the preparation of novel self-assembled nanoscale composite materials and their numerous environmental applications have become a promising area of research among the environmental scientists. In view of above, the present study aims at fabrication of a mesoporous nanoscale material of calcium ferrite-zirconium oxidemagnetic nanocomposite (CF-ZrO-MNC) to explore its application in adsorption-driven remediation process of tetracycline (TC). The characterisation study of the so-prepared CF-ZrO-MNC has revealed the presence of 0.1213 cc/g of mesoporous volume with a specific surface area of 95.32m~2/g.Acomparative study performed between CF-ZrO-MNC,CaFe_2O_4 and ZrO_2 nanoparticles has proven the superior adsorption capability of CF-ZrO-MNC for TC over the pure phases of parent CaFe_2O_4 and ZrO_2 nanoparticles. The optimisation of TC adsorption process was performed by response surface methodology, which has revealed that 98.14% of TC removal can be obtained within 60 min of contact time using 4.0 g/L of CF-ZrO-MNC dose with 40.0 mg/L of TC concentration at solution pH 6.0. The kinetic and isotherm studies have presented pseudo-second-order kinetic and Freundlich isotherm model as the best-fitted models, respectively. The results of Langmuir isotherm model fitting indicated that CF-ZrO-MNC poses 92.59 mg/g of maximum TC adsorption capacity which has been proven to be highly effective as compared to previously reported adsorbents for the remediation of TC from aqueous media.
机译:随着纳米技术的快速发展,新型自组装纳米级复合材料的制备及其许多环境应用已成为环境科学家之间的有希望的研究领域。鉴于上述情况,本研究旨在制造铁素体 - 氧化钙氧化钙氧化物纳米复合材料(CF-ZRO-MNC)的介孔纳米级材料,探讨其在四环素(TC)的吸附驱动的修复过程中的应用。所制备的CF-ZRO-MNC的表征研究表明,在CF-ZRO-MNC,CAFE_2O_4和CAFE_2O_4和CF-ZRO-MNC,CAFE_2O_4和CAFE_2O_4和CAFEATIVE研究中存在0.1213cc / g的介孔体积的存在。 ZrO_2纳米颗粒已证明CF-ZRO-MNC用于TC的优异吸附能力在母体CaFe_2O_4和ZrO_2纳米粒子的纯相中。通过响应表面方法进行TC吸附过程的优化,这揭示了使用4.0g / L的CF-ZRO-MNC剂量在60mg-ZRO-MNC剂量的60分钟内以40.0mg / L TC的接触时间内获得98.14%的TC去除溶液pH6.0浓度。动力学和等温的研究分别呈现了伪二阶动力学和Freundlich等温模型作为最佳拟合模型。 Langmuir等温模型拟合的结果表明,与先前报道的用于从含水介质修复TC的吸附剂相比,CF-ZrO-MNC的最大TC吸附能力呈现出高度有效。

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