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使用 PhotoMetrixPRO 应用程序测定总溶解铁和过氧化氢:一种便携式比色分析工具,用于控制太阳能光芬顿工艺中的重要条件。

Total dissolved iron and hydrogen peroxide determination using the PhotoMetrixPRO application: A portable colorimetric analysis tool for controlling important conditions in the solar photo-Fenton process.

机构信息

Instituto de Química, Universidade Federal do Rio Grande do Sul, Av. Bento Gonçalves, 9500, Porto Alegre, RS, Brazil.

Departamento de Computação, Universidade de Santa Cruz do Sul, Avenida Independência, 2293, Santa Cruz do Sul, RS, Brazil.

出版信息

J Hazard Mater. 2019 Oct 15;378:120740. doi: 10.1016/j.jhazmat.2019.06.017. Epub 2019 Jun 6.

Abstract

The use of the solar photo-Fenton process for water treatment requires monitoring of the main conditions, especially the total dissolved iron concentration and the consumption of hydrogen peroxide. In this study, a new methodology using the PhotoMetrixPRO application was validated for rapid monitoring of total dissolved iron and hydrogen peroxide concentrations, and was tested in the solar photo-Fenton process. A comparison was made between the results obtained using a reference spectrophotometric method and the PhotoMetrixPRO application employing a portable device. Both methods were validated in terms of linearity, sensitivity, precision, robustness, and matrix effects. The degree of dispersion between the series of measurements obtained using UV-vis and portable device tool was low and was in compliance with the established Brazilian and ICH validation criteria. Additionally, PhotoMetrixPRO enabled the use of a smaller sample volume. The total volume generated of each sample is 1 mL, reducing 6 and 10 times the wastes produced in different validated methods. These results evidencing that the miniaturization can provide positive advantages in terms of simplicity, cost effectiveness, and less environmental impact. PhotoMetrixPRO offers significant advantages including rapid analysis, smaller sample volumes, and greater portability and accessibility.

摘要

在水处理中使用太阳光芬顿工艺需要监测主要条件,特别是总溶解铁浓度和过氧化氢的消耗。本研究采用新型 PhotoMetrixPRO 应用程序对总溶解铁和过氧化氢浓度进行了快速监测,并在太阳光芬顿工艺中进行了测试。将使用参考分光光度法获得的结果与使用便携式设备的 PhotoMetrixPRO 应用程序进行了比较。两种方法均在线性、灵敏度、精密度、稳健性和基质效应方面进行了验证。使用 UV-vis 和便携式设备工具获得的测量系列之间的分散程度较低,符合既定的巴西和 ICH 验证标准。此外,PhotoMetrixPRO 还可以使用更小的样品体积。每个样品的总生成体积为 1mL,分别减少了 6 倍和 10 倍不同验证方法产生的废物。这些结果表明,微型化可以在简单性、成本效益和对环境影响较小方面提供积极的优势。PhotoMetrixPRO 具有快速分析、较小的样品体积以及更大的便携性和可访问性等显著优势。

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