School of Chemical Technology, Hefei University of Technology, Hefei, Anhui 230009, PR China.
School of Chemical Technology, Hefei University of Technology, Hefei, Anhui 230009, PR China.
J Hazard Mater. 2014 Jan 30;265:158-65. doi: 10.1016/j.jhazmat.2013.12.002. Epub 2013 Dec 7.
In this work, mesoporous hydroxylapatite (meso-HA) nanofibers were prepared via calcination process with polyvinyl alcohol/HA (PVA/HA) hybrid nanofibers fabricated by electrospinning technique as precursors, and the removal efficiency of meso-HA nanofibers toward Co(II) was evaluated via sorption kinetics and sorption isotherms. Furthermore, the sorption behaviors of Co(II) on meso-HA nanofibers were explored as a function of pH, ionic strength, and thermodynamic parameters. There existed hydrogen bonds between HA and PVA matrix in precursor nanofibers which could change into meso-HA nanofibers with main pore diameter at 27nm and specific surface area at 114.26m(2)/g by calcination process. The sorption of Co(II) on meso-HA was strongly dependent on pH and ionic strength. Outer-sphere surface complexation or ion exchange was the main mechanisms of Co(II) adsorption on meso-HA at low pH, whereas inner-sphere surface complexation was the main adsorption mechanism at high pH. The sorption kinetic data were well fitted by the pseudo-second-order rate equation. The sorption isotherms could be well described by the Langmuir model. The thermodynamic parameters (ΔH°, ΔS° and ΔG°) calculated from the temperature-dependent sorption isotherms suggested that the sorption process of Co(II) on meso-HA nanofibers was spontaneous and endothermic.
在这项工作中,通过煅烧工艺制备了介孔羟基磷灰石(meso-HA)纳米纤维,以电纺技术制备的聚乙烯醇/HA(PVA/HA)杂化纳米纤维为前驱体。通过吸附动力学和吸附等温线评估了介孔 HA 纳米纤维对 Co(II)的去除效率。此外,还研究了 Co(II)在介孔 HA 纳米纤维上的吸附行为,考察了 pH、离子强度和热力学参数的影响。前驱体纳米纤维中存在 HA 和 PVA 基质之间的氢键,通过煅烧工艺可将其转变为具有 27nm 主孔径和 114.26m²/g 比表面积的介孔 HA 纳米纤维。Co(II)在介孔 HA 上的吸附强烈依赖于 pH 和离子强度。在低 pH 下,外球表面络合或离子交换是 Co(II)吸附在介孔 HA 上的主要机制,而在高 pH 下,内球表面络合是主要的吸附机制。吸附动力学数据很好地符合准二级速率方程。吸附等温线可以很好地用朗缪尔模型描述。从温度依赖的吸附等温线上计算得到的热力学参数(ΔH°、ΔS°和ΔG°)表明,Co(II)在介孔 HA 纳米纤维上的吸附过程是自发的和吸热的。