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Lead and Chromium Adsorption from Water using L-Cysteine Functionalized Magnetite (Fe3O4) Nanoparticles

机译:L-半胱氨酸功能化磁铁矿(Fe3O4)纳米粒子从水中吸附铅和铬

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摘要

L-Cysteine functionalized magnetite nanoparticles (L-Cyst-Fe3O4 NPs) were synthesized by chemical co-precipitation using Fe2+ and Fe3+ as iron precursors, sodium hydroxide as a base and L-Cysteine as functionalized agent. The structural and morphological studies were carried out using X-ray powder diffraction, transmission electron microscopy, dynamic light scattering, scanning electron microscopy and energy dispersive X-ray spectroscopy, Fourier transform infrared spectroscopy, and UV-Vis spectrophotometric techniques. The zeta potential of bare Fe3O4 and functionalized L-Cyst-Fe3O4 NPs were +28 mV and −30.2 mV (pH 7.0), respectively. The positive surface charge changes to negative imply the presence of L-Cyst monolayer at particle interface. Band gap energy of 2.12 eV [bare Fe3O4NPs] and 1.4 eV [L-Cyst-Fe3O4 NPs] were obtained. Lead and chromium removal were investigated at different initial pHs, contact time, temperatures and adsorbate-adsorbent concentrations. Maximum Cr6+ and Pb2+ removal occurred at pH 2.0 and 6.0, respectively. Sorption dynamics data were best described by pseudo-second order rate equation. Pb2+ and Cr6+ sorption equilibrium data were best fitted to Langmuir equation. Langmuir adsorption capacities of 18.8 mg/g (Pb2+) and 34.5 mg/g (Cr6+) at 45 °C were obtained. Regeneration of exhausted L-Cyst-Fe3O4 NPs and recovery of Pb2+/Cr6+ were demonstrated using 0.01 M HNO3 and NaOH. L-Cyst-Fe3O4 NPs stability and reusability were also demonstrated.
机译:以Fe 2 + 和Fe 3 + 为铁前驱体,以氢氧化钠为化学前体,通过化学共沉淀法合成了L-半胱氨酸官能化的磁铁矿纳米粒子(L-Cyst-Fe3O4 NPs)。碱和半胱氨酸作为官能化剂。使用X射线粉末衍射,透射电子显微镜,动态光散射,扫描电子显微镜和能量色散X射线光谱,傅里叶变换红外光谱和UV-Vis分光光度法进行了结构和形态研究。裸露的Fe3O4和功能化的L-Cyst-Fe3O4 NP的zeta电位分别为+28 mV和-30.2 mV(pH 7.0)。正表面电荷变为负表面电荷表示在颗粒界面处存在L-Cyst单层。获得的带隙能为2.12 eV [裸Fe3O4NPs]和1.4 eV [L-Cyst-Fe3O4 NPs]。在不同的初始pH,接触时间,温度和被吸附物-吸附剂浓度下研究了铅和铬的去除。在pH 2.0和6.0时,最大的Cr 6 + 和Pb 2 + 去除率最高。吸附动力学数据最好用伪二阶速率方程来描述。 Pb 2 + 和Cr 6 + 吸附平衡数据最适合Langmuir方程。在45°C下,Langmuir的吸附容量为18.8 mg / g(Pb 2 + )和34.5 mg / g(Cr 6 + )。用0.01 M的HNO3和NaOH溶液证明了耗尽的L-Cyst-Fe3O4 NP的再生和Pb 2 + / Cr 6 + 的回收。还证实了L-Cyst-Fe3O4 NP的稳定性和可重复使用性。

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