Arabzadeh S, Ghaedi M, Ansari A, Taghizadeh F, Rajabi M
Department of Chemistry, Islamic Azad University, Firouzabad Branch, Firouzabad, Islamic Republic of Iran.
Department of Chemistry, Yasouj University, Yasouj, Islamic Republic of Iran
Hum Exp Toxicol. 2015 Feb;34(2):153-69. doi: 10.1177/0960327114532383. Epub 2014 May 20.
Palladium nanoparticles (Pd-NPs) and nickel oxide nanoparticles (NiO-NPs) were synthesized and loaded on activated carbon (AC). This novel material successfully used for the removal of methylene blue (MB) dye from aqueous medium. Full characterization of both material using X-ray diffraction, transmission electron microscopy, scanning electron microscopy and Brunauer-Emmet-Teller analyses for Pd-NP show their high surface area (>1340 m(2)/g) and low pore size (<20 Å) and average particle size lower than 45 Å and for NiO-NP show their high surface area (>1316.1554 m(2)/g) and low pore size (<20 Å) and average particle size lower than 46 Å in addition to high reactive atom and presence of various functional groups. These unique properties make them possible for efficient removal of MB. In batch experimental set-up, optimum conditions for maximum removal of MB by both adsorbents were attained following searching effect of variables such as central composite design. The Langmuir isotherm was found to be highly recommended for fitting the experimental equilibrium data. The kinetic of adsorption of MB on both adsorbents strongly can be fitted by a combination of pseudo-second order and intraparticle diffusion pathway. The experimental result achieved in this article shows the superiority of Pd-NP-AC for MB removal than NiO-NP-AC, so the maximum adsorption capacities of Pd-NP-AC and NiO-NP-AC were 555.5 mg/g and 588.2 mg/g, respectively.
合成了钯纳米颗粒(Pd-NPs)和氧化镍纳米颗粒(NiO-NPs),并将它们负载在活性炭(AC)上。这种新型材料成功用于从水介质中去除亚甲基蓝(MB)染料。使用X射线衍射、透射电子显微镜、扫描电子显微镜和Brunauer-Emmet-Teller分析对这两种材料进行全面表征,结果表明Pd-NP的高表面积(>1340 m²/g)、低孔径(<20 Å)、平均粒径小于45 Å,而NiO-NP除了具有高活性原子和各种官能团外,其高表面积(>1316.1554 m²/g)、低孔径(<20 Å)、平均粒径小于46 Å。这些独特性能使其有可能高效去除MB。在分批实验装置中,通过搜索诸如中心复合设计等变量的影响,获得了两种吸附剂去除MB的最佳条件。发现Langmuir等温线非常适合拟合实验平衡数据。MB在两种吸附剂上的吸附动力学可以通过准二级和颗粒内扩散途径的组合很好地拟合。本文获得的实验结果表明,Pd-NP-AC去除MB的性能优于NiO-NP-AC,因此Pd-NP-AC和NiO-NP-AC的最大吸附容量分别为555.5 mg/g和588.2 mg/g。