Usability of simplified UV–Vis spectrophotometric methods for the determination of nitrate in the presence of organic matter and chloride as interfering factors

Autor: Marcela Fernandes Silva, Luana Bermejo de Lima, Carolina de Camargo, Claudia Telles Benatti
Jazyk: angličtina
Rok vydání: 2024
Předmět:
Zdroj: Water Practice and Technology, Vol 19, Iss 3, Pp 1061-1070 (2024)
Druh dokumentu: article
ISSN: 1751-231X
DOI: 10.2166/wpt.2024.043
Popis: The presence of nitrate in groundwater and surface water in concentrations above levels suitable for human consumption is an increasingly common problem. This is mainly due to human activity, such as the excessive use of fertilizers and the inadequate deactivation of pits. Water analysis laboratories very often carry out analyses to determine nitrate to control the presence of this anion in water intended for human consumption. One of the most commonly used methods is spectrophotometry, both with commercially available kits and by direct measurement of specific wavelengths. However, in these methods, the presence of organic matter and chloride can influence the results obtained. Thus, in this study, the applicability of the simplification (without acidification) of two methods for the determination of nitrate in water by ultraviolet–visible absorbance was verified in the presence of the above-mentioned interfering factors, and it was found that the absorbance method at 220 nm corrected for the absorbance at 275 nm, in its simplified form without acidification, can be used with concentrations of organic matter of 20 mg L−1 for high nitrate concentrations (10 mg L−1 NO3-N). HIGHLIGHTS SM-4500 without acidification is suitable for nitrate determination in the presence of chloride and organic matter.; The presence of organic matter up to 20 mg L−1 did not interfere with the analysis of nitrate by the simplified method.; The SM-4500 method should not be used at nitrate concentrations up to 10 and 20 mg L−1 of organic matter.; Avoiding the use of HCl is in line with the fifth principle of green chemistry.;
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