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Optimization of an open-focused microwave oven digestion procedure for determination of metals in diesel oil by inductively coupled plasma optical emission spectrometry

机译:电感耦合等离子体发射光谱法测定柴油中金属的开放式微波消解工艺的优化

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This work reports the optimization of a focused microwave assisted procedure for the wet acid dissolution of diesel oil in order to allow the determination of metals in the samples by inductively coupled plasma optical emission spectrometry (ICP-OES). The dissolution process was monitored by measuring residual carbon content (RCC), also by ICP-OES, in the final solutions obtained after application of digestion program. All experimental work was performed using a commercial sample of diesel oil containing 85.74 ± 0.13% of carbon. The initial dissolution program comprised three steps: (ⅰ) carbonization with H_2SO_4; (ⅱ) oxidation with HNO_3 and (ⅲ) final oxidation with H_2O_2. During work it was verified that the first step played an important role on the dissolution process of this kind of sample. It is therefore, necessary to give a detailed optimization of such step. Employing the optimized conditions it was possible to digest 2.5 g of diesel oil with a 40 min-heating program. At these conditions, residual carbon content was always lower than 5%. Optimized methodology was applied in the determination of metals in three diesel oil samples by ICP-OES. Recovery tests were also performed by adding 10 μg of metals, as organic standards, to the samples before digestion. Recovery percentages always higher than 90% were obtained for the metals of interest (Al, Cu, Fe and Ni), except for Zn, which presented recoveries between 70 and 78%.
机译:这项工作报告了针对柴油湿酸溶解的聚焦微波辅助程序的优化,以便通过电感耦合等离子体发射光谱法(ICP-OES)测定样品中的金属。通过测量应用消解程序后获得的最终溶液中的残留碳含量(RCC),也通过ICP-OES监测溶解过程。所有实验工作均使用含有85.74±0.13%碳的商业柴油样品进行。初始溶解程序包括三个步骤:(1)用H_2SO_4碳化; (ⅱ)用HNO_3氧化,(ⅲ)用H_2O_2最终氧化。在工作过程中,已证实第一步对此类样品的溶解过程起了重要作用。因此,有必要对该步骤进行详细的优化。利用优化的条件,可以通过40分钟的加热程序来消化2.5 g柴油。在这些条件下,残余碳含量始终低于5%。通过ICP-OES将优化的方法学应用于三个柴油样品中金属的测定。还通过在消化之前向样品中添加10μg金属作为有机标准品来进行回收率测试。感兴趣的金属(Al,Cu,Fe和Ni)的回收率始终高于90%,而Zn的回收率在70%至78%之间。

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