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An ultra performance liquid chromatography-electrospray ionization-mass spectrometry method for the rapid analysis of nitrate in drinking water

机译:一种用于饮用水中硝酸盐快速分析的超高效液相色谱-电喷雾电离质谱法

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Excess of nutrient load can cause water eutrophication and be harmful to humans. While nitrogen is an important nutrient for crops, its introduction into the soil with fertilizers containing nitrate (NO3a?’) has been a major source of water pollution and monitoring NO3a?’ has become necessary. In the present work, an ultra performance liquid chromatography-mass spectrometry method has been developed for the rapid quantification of NO3a?’ in drinking water with reversed phase chromatography using a Waters Acquity BEH C18 (50 mm ?— 2.1 mm i.d., 1.7 ??m particle size) column and a triple quadrupole mass spectrometer operating in Single Ion Recording mode. The quality parameters of the developed method were established, obtaining a limit of detection of 0.02 ??g La?’1; linearity (r2 0.999) over a concentration range covering 3 orders of magnitude; high precision, with repeatability and reproducibility lower than 3% (n = 5) in terms of relative standard deviation when analyzing a standard (0.05 mg NO3a?’ La?’1) and unspiked drinking water samples with levels of NO3a?’ of 1 ??g La?’1 (metropolitan water) and 3 mg La?’1 (bottled water). These quality parameters show that the proposed method improves the performance of conventional analytical methods used for the analysis of NO3a?’. This method has been applied successfully for determination of NO3a?’ in metropolitan and bottled water from the Kingdom of Saudi Arabia; a total of 25 samples have been analyzed where NO3a?’ was found to be present from levels below the limit of detection to 6.49 mg La?’1.
机译:营养成分过多会导致水富营养化并对人体有害。尽管氮是农作物的重要营养素,但将其与含有硝酸盐(NO3a?')的肥料一起引入土壤已成为水污染的主要来源,因此有必要监测NO3a?'。在目前的工作中,已经开发了一种超高效液相色谱-质谱法,用于使用沃特世Acquity BEH C18(50毫米?-2.1毫米内径,1.7英寸)通过反相色谱法快速定量分析饮用水中的NO3a?'。 m粒径)色谱柱和以单离子记录模式运行的三重四极杆质谱仪。建立了所开发方法的质量参数,检出限为0.02 ?? g La?'1;浓度范围覆盖3个数量级时的线性度(r2> 0.999);分析标准液(0.05 mg NO3a?La'1)和未加标的NO3a?'为1的饮用水样品时,相对标准偏差方面的重复性和再现性低于3%(n = 5)。 -g La 2'(大都市水)和3mg La 2'(瓶装水)。这些质量参数表明,所提出的方法提高了用于分析NO3a?’的常规分析方法的性能。该方法已成功应用于沙特阿拉伯王国的大都市和瓶装水中NO3a?的测定。总共分析了25个样品,发现其中的NO3a?含量低于检出限至6.49 mg La?1。

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