首页> 外文期刊>Journal of Experimental Nanoscience >A novel chitosan/polyrhodanine nanocomposite: preparation, characterisation and application for Ni(II) ions removal from aqueous solution
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A novel chitosan/polyrhodanine nanocomposite: preparation, characterisation and application for Ni(II) ions removal from aqueous solution

机译:一种新型壳聚糖/聚罗丹宁纳米复合材料:制备,表征和应用从水溶液中去除Ni(II)离子

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Chitosan/polyrhodanine nanocomposite has been synthesised by in situ chemical oxidation polymerisation of rhodanine in chitosan aqueous solution and characterised by scanning electron microscopy, transmission electron microscopy (TEM), and Fourier transform infrared spectroscopy (FTIR). The FTIR measurement exhibited the existence of relevant functional groups of both polyrhodanine and chitosan in the nanocomposite. The result of TEM image showed the dispersion of polyrhodanine in chitosan matrix performed successfully and the diameter of polyrhodanine nanoparticle estimated smaller than 30 nm. This nanocomposite was used for Ni(II) removal from aqueous solution. Batch adsorption studies were carried out with various Ni(II) concentrations, amount of adsorbent, pH, contact time, and temperature. The pH 8.0 was found to be an optimum pH for Ni(II) adsorption. The Langmuir, Freundlich, and Sips adsorption isotherm model was applied to describe the isotherms. This adsorbent gave the maximum equilibrium uptakes of Ni(II) of and according to the Langmuir and Sips isotherm models, respectively. The thermodynamic data showed that adsorption processes were thermodynamically favourable, and exothermic in nature. Kinetics studies indicated that the removal of Ni(II) ions followed pseudo-second-order kinetics, suggesting that the specific interaction with surface functional groups was the major route of the removal process.
机译:壳聚糖/聚罗丹丹碱纳米复合材料是通过在壳聚糖水溶液中进行罗丹宁的原位化学氧化聚合而合成的,并通过扫描电子显微镜,透射电子显微镜(TEM)和傅里叶变换红外光谱(FTIR)进行表征。 FTIR测量显示纳米复合材料中同时存在聚若丹宁和壳聚糖相关的官能团。 TEM图像的结果显示聚罗丹宁在壳聚糖基质中的分散成功,聚罗丹宁纳米颗粒的直径估计小于30nm。该纳米复合材料用于从水溶液中去除Ni(II)。使用各种浓度的Ni(II),吸附剂数量,pH,接触时间和温度进行批量吸附研究。发现pH 8.0是Ni(II)吸附的最佳pH。用Langmuir,Freundlich和Sips吸附等温线模型描述等温线。分别根据Langmuir和Sips等温线模型,该吸附剂提供的Ni(II)的最大平衡吸收量。热力学数据表明,吸附过程在热力学上是有利的,并且本质上是放热的。动力学研究表明,Ni(II)离子的去除遵循伪二级动力学,这表明与表面官能团的特定相互作用是去除过程的主要途径。

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