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快速直接电化学法测定工业废水中的 Ni(II)。

Rapid and direct electrochemical determination of Ni(II) in industrial discharge water.

机构信息

University of Oulu, Kajaani University Consortium, Measurement Technology Unit CEMIS-Oulu, Kehräämöntie 7, 87400 Kajaani, Finland.

University of Oulu, Kajaani University Consortium, Measurement Technology Unit CEMIS-Oulu, Kehräämöntie 7, 87400 Kajaani, Finland.

出版信息

J Hazard Mater. 2016 Apr 5;306:50-57. doi: 10.1016/j.jhazmat.2015.11.057. Epub 2015 Dec 4.

Abstract

Industrial water contains a number of contaminants, such as organic pollutants and heavy metals, which can significantly affect the quality of soil, ground and environmental waters. We have successfully optimized and tested an electrochemical method and sensor modified with dimethylglyoxime for monitoring of nickel(II). The detection limit was 0.03mg/L and determination limit was 0.09mg/L. Linear concentration range was observed from 0.06 to 0.5mg/L Ni(II) and it is suitable for the analysis of environmental waters. The effect of all parameters important for on-site measurements (such as interferences, presence of dissolved oxygen, temperature) was investigated and considered in the analysis of mine discharge water. Water samples were analyzed without any pretreatment or filtration. A low level of error (5.6%) was observed for analysis demonstrating the usability of the optimized sensor and method for on-site measurements.

摘要

工业用水含有许多污染物,如有机污染物和重金属,这些污染物会显著影响土壤、地下水和环境水的质量。我们成功地优化和测试了一种电化学方法和用丁二酮肟修饰的传感器,用于监测镍(II)。检测限为 0.03mg/L,测定限为 0.09mg/L。在 0.06 至 0.5mg/L Ni(II) 的浓度范围内观察到线性浓度范围,适用于环境水的分析。研究了现场测量中所有重要参数(如干扰、溶解氧存在、温度)的影响,并在矿山排放水的分析中进行了考虑。水样未经任何预处理或过滤即可进行分析。对于分析,观察到低水平的误差(5.6%),表明优化后的传感器和方法可用于现场测量。

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