首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >A Paper-Based Analytical Device Based on Combination of Thin Film Microextraction and Reflection Scanometry for Sensitive Colorimetric Determination of Ni(II) in Aqueous Matrix
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A Paper-Based Analytical Device Based on Combination of Thin Film Microextraction and Reflection Scanometry for Sensitive Colorimetric Determination of Ni(II) in Aqueous Matrix

机译:一种基于薄膜微萃取和反射扫描法的敏感比色法测定水基质中Ni(II)的组合的纸张 - 基于纸张的分析装置

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摘要

In this research, the thin film microextraction method was applied for the extraction of Ni(II) ion from aqueous matrixes. Chemically modified cellulosic filter paper with phosphorus was used as a thin film extractor. After extraction, the thin film was treated with a solution of dimethylglyoxime. The colored film was captured by flatbed scanner and the absorbance of the images was extracted by some suitable software. Under the optimum conditions and at the pH 7.0, with the sample volume of 100 mL, the stirring rate of 800 rpm, and the extraction time of 50 min, the calibration curve was obtained in the range of 0.05-5 mg/L Ni(II) (R-2 = 0.989). Limit and relative standard deviation were achieved to be 18 A mu g/L and less than 6.7%, respectively. Relative recoveries were obtained in the range of 87%-105%. Finally, the proposed method was found to be simple and cost-effective, with adequate analytical performance for the rapid detection of Ni(II) in river and wastewater samples.
机译:在该研究中,施加薄膜微萃取方法用于从含水基质中提取Ni(II)离子。 用磷的化学改性纤维素滤纸用作薄膜提取器。 萃取后,用二甲基乙基肟溶液处理薄膜。 通过平板扫描仪捕获彩色膜,并通过一些合适的软件提取图像的吸光度。 在最佳条件下和pH 7.0处,样品体积为100mL,搅拌速率为800rpm,提取时间为50分钟,获得校准曲线在0.05-5 mg / L Ni( II)(R-2 = 0.989)。 实现极限和相对标准偏差分别为18.Aμmg/ L且小于6.7%。 获得的相对回收率在87%-105%的范围内得到。 最后,发现该方法是简单且经济效益的,具有足够的分析性能,用于快速检测河流和废水样品中的Ni(II)。

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