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Determination of cadmium, cobalt, copper, lead, nickel and zinc contents in saline produced water from the petroleum industry by ICP OES after cloud point extraction

机译:浊点萃取后ICP OES法测定石油工业盐水生产水中的镉,钴,铜,铅,镍,锌和锌含量。

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The aim of this study was to develop a cloud point extraction (CPE) method to determine simultaneously cadmium, cobalt, copper, nickel, lead and zinc contents in produced water by inductively coupled plasma optical emission spectrometry (ICP OES). A full factorial design with a central point was applied for optimization of experimental conditions. 8-Hydroxyquinoline was used as the chelating agent and Triton X-114 as the surfactant for trace element extraction. ICP OES with an axial view configuration was used in the trace element determination. According to the desirability function, the chelating agent showed a negative influence on the extraction of the studied elements, which means increasing the amount of non-ionic molecules of the chelating agent may cause the opposite effect, since these molecules may be captured by the micelles decreasing the efficiency of extraction. In contrast, the extraction was positively influenced by the surfactant. Therefore, the following parameters were chosen: pH = 6.5; 0.500 mmol L-1 8-hydroxyquinoline; and 0.1% v/v Triton X-114. The influence of salinity on the CPE was investigated. The slopes of the analytical calibration curves in saline media were studied. It was observed that increasing the NaCl concentration from 5 to 50% (w/v) led to a decrease in the angular coefficient of the calibration curves, which implies a decrease in the sensitivity of the method. Sc (2 mg L-1) was added to standards and samples as the internal standard to correct non-spectral interference. The accuracy of the developed method was confirmed by spike recovery tests. The results present good recoveries, exceeding 86%, showing the successful application of the method for the simultaneous determination of Cd, Co, Cu, Ni, Pb and Zn contents in produced water samples. Limits of quantification (LOQ) were determined to be 2.0, 2.2, 3.2, 0.23, 2.2 and 1.9 mu g L-1 for Cd, Co, Cu, Ni, Pb and Zn, respectively.
机译:这项研究的目的是开发一种浊点萃取(CPE)方法,通过电感耦合等离子体发射光谱法(ICP OES)同时测定采出水中的镉,钴,铜,镍,铅和锌含量。具有中心点的全因子设计用于优化实验条件。使用8-羟基喹啉作为螯合剂,使用Triton X-114作为表面活性剂进行痕量元素提取。痕量元素测定中使用具有轴向视图配置的ICP OES。根据所需功能,螯合剂对所研究元素的提取有负面影响,这意味着增加螯合剂中非离子分子的数量可能会产生相反的效果,因为这些分子可能被胶束捕获降低提取效率。相反,萃取受到表面活性剂的积极影响。因此,选择以下参数:pH = 6.5; 0.500 mmol L-1 8-羟基喹啉;和0.1%v / v Triton X-114。研究了盐度对CPE的影响。研究了在盐介质中分析校准曲线的斜率。可以看出,将NaCl浓度从5%增加到50%(w / v)会导致校准曲线的角度系数减小,这意味着该方法的灵敏度降低。将Sc(2 mg L-1)添加到标准品和样品中作为内标,以校正非光谱干扰。尖峰恢复测试证实了所开发方法的准确性。结果具有良好的回收率,超过86%,表明该方法已成功用于同时测定采出水样品中的Cd,Co,Cu,Ni,Pb和Zn含量。 Cd,Co,Cu,Ni,Pb和Zn的定量限(LOQ)分别为2.0、2.2、3.2、0.23、2.2和1.9μg L-1。

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