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首页> 外文期刊>Analytical methods >Simultaneous separation and preconcentration of lead and cadmium from water and vegetable samples using a diethylenetriamine-modified magnetic graphene oxide nanocomposite
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Simultaneous separation and preconcentration of lead and cadmium from water and vegetable samples using a diethylenetriamine-modified magnetic graphene oxide nanocomposite

机译:使用二亚乙基三胺改性的磁性氧化石墨烯纳米复合材料同时分离和富集水和蔬菜样品中的铅和镉

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摘要

An efficient adsorbent, diethylenetriamine-functionalized magnetic graphene oxide nanocomposite (GO-Fe3O4-DETA), was synthesized through the formation of amide linkage bonds between the amine groups of diethylenetriamine and the oxygen-containing functional groups (e.g., epoxy and carboxyl groups) of graphene oxide. The prepared adsorbent was characterized by scanning electron microscopy, vibrating sample magnetometry and Fourier transform infrared spectroscopy. The synthesized GO-Fe3O4-DETA was applied as an efficient adsorbent for the simultaneous extraction and preconcentration of trace quantities of lead and cadmium ions from water and vegetable samples. Following extraction, the ions were determined by flame atomic absorption spectrometry. Several important parameters influencing the extraction efficiency, such as pH, amount of adsorbent, extraction time, elution conditions, sample volume, interfering ions and adsorption capacity, were studied and optimized. Under the optimum extraction conditions, the calibration curves were linear in the range of 1.35 to 110 mu g L-1 for Pb(II) and 1.40 to 120 mu g L-1 for Cd(II) in the initial solution. The limits of detection were 0.38 mu g L-1 and 0.40 mg L-1 for lead and cadmium, respectively. Precisions, expressed as relative standard deviations, were 1.86% and 2.38% for Pb(II) and Cd(II), respectively. The preconcentration factors were 167 for lead and 150 for cadmium and the maximum adsorption capacity of the modified adsorbent was found to be 172.41 and 59.88 mg g(-1) for lead and cadmium, respectively. The recoveries in the case of real samples varied within the range of 94.4-103.9% confirming the good performance of the method in various water and vegetable samples.
机译:通过在二亚乙基三胺的胺基与羟基的含氧官能团(如环氧和羧基)之间形成酰胺键,合成了一种有效的吸附剂,二亚乙基三胺功能化的磁性氧化石墨纳米复合材料(GO-Fe3O4-DETA)。氧化石墨烯。通过扫描电子显微镜,振动样品磁法和傅里叶变换红外光谱对制备的吸附剂进行表征。合成的GO-Fe3O4-DETA被用作有效的吸附剂,用于同时从水和蔬菜样品中萃取和预富集痕量的铅和镉离子。提取后,通过火焰原子吸收光谱法测定离子。研究和优化了影响萃取效率的几个重要参数,例如pH,吸附剂的量,萃取时间,洗脱条件,样品量,干扰离子和吸附容量。在最佳萃取条件下,初始溶液中的Pb(II)校准曲线在1.35至110μgL-1范围内,而Cd(II)校准曲线在1.40至120μgL-1范围内线性。铅和镉的检出限分别为0.38μg L-1和0.40 mg L-1。 Pb(II)和Cd(II)的精密度以相对标准偏差表示,分别为1.86%和2.38%。铅的预富集系数为167,镉的预富集系数为150,改性吸附剂的最大吸附容量分别为铅和镉,分别为172.41和59.88 mg g(-1)。实际样品的回收率在94.4-103.9%的范围内变化,证实了该方法在各种水和蔬菜样品中的良好性能。

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