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首页> 外文期刊>Desalination and water treatment >Facile hydrothermally synthesized nanofibrous polyresorcinol@γ-Fe_2O_3 for dispersive ferrofluid adsorption of Cd(Ⅱ): modeling and isotherm study
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Facile hydrothermally synthesized nanofibrous polyresorcinol@γ-Fe_2O_3 for dispersive ferrofluid adsorption of Cd(Ⅱ): modeling and isotherm study

机译:方便的水热合成纳米纤维间苯二酚@γ-Fe_2O_3对Cd(Ⅱ)的分散铁磁流体吸附:建模和等温线研究

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摘要

A novel ferrofluid mediated dispersive adsorption system was developed based on a facile hydrothermally synthesized nanofibrous polyresorcinol@gamma-Fe2O3. The nanocomposite was characterized with energy dispersive X-ray spectroscopy, X-ray diffraction, field emission scanning electron microscopy, vibrating sample magnetometer, Brunauer-Emmett-Teller and Fourier transform infrared techniques. Polysorbate and a new synthetic Schiff base were used as carrier fluid and complexing agent, respectively. To obtain effective parameters (pH, amount of sorbent and ligand and contact time) on adsorption and their interactions, response surface methodology with Box-Behnken design was used. Results confirmed that adsorption efficiency was very sensitive to pH, adsorbent dosage and amount of ligand; however, the efficiency is less sensitive to time. Under optimized conditions (pH 8; contact time 3.8 min; sorbent amount 300 mu L and amount of ligand 1.3 x 10(-5) mol) relative standard deviation (%) and the limit of detection was 4% and 0.13 mu g L-1, respectively. Reusability of the sorbent was achieved with 0.1 mol L-1 of HNO3 solution. Isotherm study revealed that cadmium adsorption followed Langmuir model with maximum capacity of 56.4 mg Moreover, results for Dubinin-Radushkevich and Temkin isotherm models confirmed that cadmium adsorption is a physical process. Finally developed method was used for cadmium preconcentration from water and food samples with satisfactory results.
机译:基于一种方便的水热合成纳米纤维聚间苯二酚@γ-Fe2O3,开发了一种新型的铁磁介导的分散吸附系统。纳米复合材料的特征在于能量色散X射线光谱,X射线衍射,场发射扫描电子显微镜,振动样品磁力计,Brunauer-Emmett-Teller和傅立叶变换红外技术。聚山梨酯和新型合成席夫碱分别用作载液和络合剂。为了获得有关吸附及其相互作用的有效参数(pH,吸附剂和配体的量以及接触时间),采用Box-Behnken设计的响应面方法。结果证实,吸附效率对pH,吸附剂用量和配体量非常敏感。但是,效率对时间不太敏感。在最佳条件下(pH 8;接触时间3.8分钟;吸附剂量300μL,配体量1.3 x 10(-5)mol)相对标准偏差(%),检出限为4%和0.13μgL- 1,分别。用0.1 mol L-1的HNO3溶液实现了吸附剂的可重用性。等温线研究表明,镉吸附遵循Langmuir模型,最大容量为56.4 mg。此外,Dubinin-Radushkevich和Temkin等温线模型的结果证实,镉吸附是一个物理过程。最后开发的方法用于水和食品样品中镉的富集,结果令人满意。

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