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A novel nano zero-valent iron@chitosan for effective removal of Microcystin-LR: kinetics and adsorption mechanism

机译:一种新型纳米零价铁@壳聚糖,用于有效去除微囊杆菌-LR:动力学和吸附机制

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Microcystin-LR (MC-LR) is one of the most notorious toxins liberated from cyanobacteria in drinking water sources. In this study, a skillful method access to new nanozero-valent iron @chitosan (nZVIMC) was synthesized by a facile one step method. The as-prepared nZVIMC was employed as an adsorbent for the effective removal MC-LR from aqueous solution. Transmission electron microscopy (TEM) demonstrates that nZVIMC is in quasi-spherical shape with size of around 50 nm, effect of variable parameters such as pH, contact time, initial concentration of MC-LR and adsorption properties of nZVIMC on MC-LR was further investigated. Scanning electron microscope (SEM) reveals that the particles are nearly spherical in shape with agglomeration. The results indicated that good adsorption performance was achieved at an initial pH of 5. The adsorption kinetics of nZVIMC was better fitted by pseudo-secondorder kinetics. The adsorption isotherm data was fitted well to Langmuir isotherm and then to Freundlich model, with an adsorption capacity of 68.9 mg/g at 300K. Thus, we believe that nZVIMC can be used as a low cost material for efficient removal of MC-LR from water.
机译:微囊藻毒素(MC-LR)是最声名狼藉毒素的一个从蓝藻在饮用水源中解放出来。在这项研究中,给新nanozero价铁@chitosan一个熟练的方法访问(nZVIMC)通过一个浅显一步法合成。所制备的nZVIMC被用作用于从水溶液中有效去除MC-LR的吸附剂。透射电子显微镜(TEM)表明nZVIMC是准球形的形状与大约50纳米,可变参数如pH,接触时间,MC-LR的初始浓度和nZVIMC的吸附性能在MC-LR的效果的大小是进一步调查。扫描电子显微镜(SEM)表明,颗粒与团聚形状接近球形。结果表明,良好的吸附性能在nZVIMC的吸附动力学更好通过伪二阶动力学嵌合的5的初始pH实现。吸附等温线数据拟合很好地Langmuir等温,然后到Freundlich模型,用68.9毫克/克在300K的吸附能力。因此,我们认为,nZVIMC可用作用于从水中有效去除MC-LR的低成本材料。

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