Gładysz-Płaska A, Skwarek E, Budnyak T M, Kołodyńska D
Faculty of Chemistry, Department of Inorganic Chemistry, Maria Curie Skłodowska University, M. Curie Skłodowska Sq. 2, 20-031, Lublin, Poland.
Faculty of Chemistry, Department of Radiochemistry and Colloid Chemistry, Maria Curie Skłodowska University, M. Curie Skłodowska Sq. 3, 20-031, Lublin, Poland.
Nanoscale Res Lett. 2017 Dec;12(1):95. doi: 10.1186/s11671-017-1870-x. Epub 2017 Feb 7.
The paper presents the use of Pyrolox™ containing manganese nano oxides used for the removal of Cu(II), Zn(II), Cd(II), and Pb(II) as well as U(VI) ions. Their concentrations were analyzed using the atomic absorption spectrometer SpectrAA 240 FS (Varian) as well as UV-vis method. For this purpose the static kinetic and equilibrium studies were carried out using the batch technique. The effect of solution pH, shaking time, initial metal ion concentrations, sorbent dosage, and temperature was investigated. The equilibrium data were analyzed using the sorption isotherm models proposed by Freundlich, Langmuir-Freundlich, Temkin, and Dubinin-Radushkevich. The kinetic results showed that the pseudo second order kinetic model was found to correlate the experimental data well. The results indicate that adsorption of Cu(II), Zn(II), Cd(II), and Pb(II) as well as U(VI) ions is strongly dependent on pH. The value of pH 4-7 was optimal adsorption. The time to reach the equilibrium was found to be 24 h, and after this time, the sorption percentage reached about 70%. Kinetics of Cu(II), Zn(II), Cd(II), Pb(II), and U(VI) adsorption on the adsorbent can be described by the pseudo second order rate equation. Nitrogen adsorption/desorption, infrared spectroscopy (FTIR), and scanning electron microscopy (SEM) measurements for adsorbent characterization were performed. Characteristic points of the double layer determined for the studied Pyrolox™ sample in 0.001 mol/dm NaCl solution are pH = 4 and pH < 2.
本文介绍了含锰纳米氧化物的Pyrolox™用于去除铜(II)、锌(II)、镉(II)、铅(II)以及铀(VI)离子的应用。使用原子吸收光谱仪SpectrAA 240 FS(瓦里安公司)以及紫外可见分光光度法对它们的浓度进行了分析。为此,采用分批技术进行了静态动力学和平衡研究。考察了溶液pH值、振荡时间、初始金属离子浓度、吸附剂用量和温度的影响。利用弗罗因德利希、朗缪尔 - 弗罗因德利希、特姆金和杜比宁 - 拉杜舍维奇提出的吸附等温线模型对平衡数据进行了分析。动力学结果表明,伪二级动力学模型与实验数据拟合良好。结果表明,铜(II)、锌(II)、镉(II)、铅(II)以及铀(VI)离子的吸附强烈依赖于pH值。pH值为4 - 7是最佳吸附范围。达到平衡的时间为24小时,此后吸附百分比达到约70%。吸附剂对铜(II)、锌(II)、镉(II)、铅(II)和铀(VI)的吸附动力学可用伪二级速率方程描述。对吸附剂进行了氮气吸附/脱附、红外光谱(FTIR)和扫描电子显微镜(SEM)测量以进行表征。在0.001 mol/dm的NaCl溶液中测定的所研究Pyrolox™样品的双层特征点为pH = 4和pH < 2。