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Lead and cadmium sorption in water samples using modified nano-sized cobalt aluminate

机译:使用改性的纳米铝酸钴吸附在水中的铅和镉

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摘要

A new nanostructure which is surface-modified cobalt aluminate nanoparticles with silica is used for the separation of cadmium and lead prior to its determination by inductively coupled plasma-mass spectrometry was described. For this purpose, at first, ex-situ modification of cobalt aluminate nanoparticles was made, then lead and cadmium were collected on new sorbent by syringe technique. The effects of experimental conditions on sorption of cadmium and lead were investigated. After the optimization of experimental parameters, a successful separation and determination were obtained with high quantitative recovery (>95%) and precision (<10% RSD). Using the proposed technique, the cadmium and lead concentrations in tap water and drinking water could be practically and rapidly determined in the range of 95% confidence level. The detection limit of the described method for cadmium and lead using sample-matching blanks were 0.053 and 0.117 mu g L-1 (3 sigma, N = 10), respectively. The proposed technique was fast, simple, and economic.
机译:描述了一种新的纳米结构,它是用二氧化硅表面改性的铝酸钴纳米颗粒,用于分离镉和铅,然后通过电感耦合等离子体质谱法测定其。为此,首先对铝酸钴纳米颗粒进行了异位改性,然后通过注射器技术将铅和镉收集在新的吸附剂上。研究了实验条件对镉和铅吸附的影响。优化实验参数后,成功的分离和测定获得了高定量回收率(> 95%)和精密度(<10%RSD)。使用提出的技术,可以在95%置信水平的范围内快速,实用地确定自来水和饮用水中的镉和铅浓度。所描述的使用样品匹配空白的方法对镉和铅的检出限分别为0.053和0.117μgL-1(3西格玛,N = 10)。所提出的技术是快速,简单且经济的。

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