Determination of persulfate based on the principle of the oxidation of chloride ion.

J Environ Sci (China)

National Engineering Research Center of Industrial Wastewater Detoxication and Resource Recovery, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China. Electronic address:

Published: April 2025

AI Article Synopsis

  • Persulfate (PS) is an important oxidant used to break down organic pollutants, and measuring its concentration accurately is essential for practical applications.
  • Traditional iodometry methods can be unreliable due to interference from hydrogen peroxide (HO), which often skews PS readings.
  • A new method that measures the oxidation of chloride ions (Cl) has been developed, allowing for accurate PS concentration determination without HO interference, showing strong performance in both laboratory and industrial settings.

Article Abstract

Persulfate (PS) is a widely used oxidant for the chemical oxidation of organic pollutants. The accurate measurement of PS concentration is crucial for the practical application process. The iodometry is the most recommended method for PS determination, and its principle is based on the redox reaction between SO and iodide ions. However, hydrogen peroxide (HO), an important intermediate product in the process of PS use, often leads to abnormally high determination concentrations of PS. Given this, a novel method was developed for the determination of PS based on the principle of the oxidation of chloride ion (Cl). The concentration of PS is calculated according to the consumption of Cl concentration, which is not disturbed by HO. The optimized test conditions were explored as: C(H) = 2 mol/L, T = 80℃, C(Cl):C(PS) = 4:1 and t = 30 min. Under the optimized conditions, the limit of detection and the limit of quantification of PS concentration determined by this method were 0.26 and 0.85 g/L, respectively. And the linear range of the PS determination was 1-100 g/L with an error of 0.53%-12.06%. The spike recovery rate for determining PS concentration in the actual wastewater ranged from 94.07%-109.52%. Interfering factors such as HO, Fe, MnO and natural organic matter had almost no effect on the results. This method could not only accurately determine the concentration of PS in industrial wastewater, but also determine the purity of PS industrial products.

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Source
http://dx.doi.org/10.1016/j.jes.2023.11.028DOI Listing

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