首页> 外文期刊>Transactions of Royal Society of South Africa >Insights into the use of metal complexes of thiourea derivatives as highly efficient adsorbents for ciprofloxacin from contaminated water
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Insights into the use of metal complexes of thiourea derivatives as highly efficient adsorbents for ciprofloxacin from contaminated water

机译:硫脲衍生物金属配合物的洞察,作为来自受污染水的环丙沙星的高效吸附剂

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Despite the wide use of synthesised metal complexes of thiourea and their derivatives in medicine and corrosion inhibition, a paucity of research exists on their application as adsorbents for pollutants. This study was aimed at investigating the adsorption potential of the copper (II) and zinc (II) complexes of 4-nitro-substituted thiourea derivatives of aminophenol for ciprofloxacin (CPF). The metal complexes were synthesised and characterised. Fourier transform infrared spectroscopy, scanning electron microscopy and a BET surface area analyzer were utilised to determine the surface structure and properties of the synthesised adsorbents. Isotherms were conducted by the application of Langmuir, Freundlich and Scatchard models and revealed a heterogeneous multilayer adsorption process. Kinetic evaluation showed best fit with the pseudo second order model (R2?>?0.991) compared to the pseudo first order and Bangham equations. Thermodynamics showed an endothermic spontaneous abstraction process. The metal complexes showed over 80% desorption of CPF using 0.2 M NaOH and were stable over three cycles of regeneration and reuse. This research revealed the potential of the metal complexes of thiourea as adsorbents for CPF supported by the high adsorption capacity compared to other reported adsorbents.
机译:尽管硫脲的合成金属络合物和药物衍生物的衍生物和腐蚀抑制的衍生物相比,但其应用是污染物的吸附剂存在的研究。本研究旨在研究4-硝基取代的氨基苯酚的4-硝基取代的硫脲衍生物的铜(II)和锌(II)复合物的吸附潜力(CPF)。合成和表征金属配合物。傅里叶变换红外光谱,扫描电子显微镜和BET表面积分析仪用于确定合成吸附剂的表面结构和性质。等温机构通过朗米尔,Freundlich和Scatchard模型的应用进行并揭示了异质多层吸附过程。与伪第一顺序和Bangham方程相比,动力学评估显示伪二阶模型(R2?> 0.991)最合适。热力学显示出吸热的自发抽象过程。金属配合物使用0.2米NaOH显示CPF的80%以下,并且在三个再生和再利用的三个循环中稳定。该研究显示,与其他报道的吸附剂相比,硫脲金属配合物作为高吸附容量支持的CPF的吸附剂。

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