Instituto de Química, Universidade Federal do Rio Grande do Sul, Av. Bento Gonçalves, 9500, Porto Alegre 91501-970, RS, Brazil.
Laboratório de Análises de Resíduos de Pesticidas (LARP), Departamento de Química, Universidade Federal de Santa Maria, Av. Roraima, 1000, Santa Maria 97105-900, RS, Brazil.
Molecules. 2022 Jul 23;27(15):4721. doi: 10.3390/molecules27154721.
The analysis of chemical oxygen demand (COD) plays an important role in measuring water pollution, but it normally has a high ecological price. Advances in image acquisition and processing techniques enable the use of mobile devices for analytical purposes. Here, the PhotoMetrix PRO application was used for image acquisition and multivariate analysis. Statistical analysis showed no significant difference in the results compared to the standard method, with no adverse effect of the volume reduction. The cost of analysis and waste generation were reduced by one third, while the analysis time was reduced by one fifth. The miniaturized method was successfully employed in the analysis of several matrices and for the evaluation of advanced oxidation processes. The AGREE score was improved by 25% due to miniaturization. For these reasons, the miniaturized PhotoMetrix PRO method is a suitable option for COD analysis, being less hazardous to the environment due to reductions in the chemicals used and in waste generation.
化学需氧量(COD)的分析在衡量水污染方面起着重要作用,但通常具有较高的生态代价。图像采集和处理技术的进步使得移动设备能够用于分析目的。在这里,使用了 PhotoMetrix PRO 应用程序进行图像采集和多元分析。统计分析显示,与标准方法相比,结果没有显著差异,体积减小没有不利影响。分析成本和废物生成减少了三分之一,而分析时间减少了五分之一。该微型化方法成功地应用于多种基质的分析和高级氧化工艺的评估。由于微型化,AGREE 评分提高了 25%。由于这些原因,微型化的 PhotoMetrix PRO 方法是 COD 分析的一个合适选择,由于减少了所用化学品的使用和废物的产生,对环境的危害较小。