4.6 Article

Effect of Salinity on UVA-Vis Light Driven Photo-Fenton Process at Acidic and Circumneutral pH

期刊

WATER
卷 13, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/w13091315

关键词

photo-Fenton; wastewater; chlorides; simulated sunlight; pH effect

资金

  1. Spanish Ministry of Science, Innovation and Universities
  2. AEI
  3. FEDER [RTI2018-097997-B-C31]
  4. ERDF Operational Programme
  5. Department of Economy, Knowledge, Business and University of the Regional Government of Andalusia (Spain) [FEDER-UCA18-108023]
  6. Generalitat Valenciana (Spain) [APOSTD/2019/207]
  7. European Social Fund (ESF)

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The study found that chlorides interfere with the photo-Fenton process in a pH-dependent manner, with more pronounced interference in acidic conditions and slight promotion in neutral environments. Dissolved salts in seawater lead to higher inhibition of pollutant removal compared to NaCl experiments.
In the present work, the treatment of a mixture of six emerging pollutants (acetamiprid, acetaminophen, caffeine, amoxicillin, clofibric acid and carbamazepine) by means of photo-Fenton process has been studied, using simulated sunlight as an irradiation source. Removal of these pollutants has been investigated in three different aqueous matrices distinguished by the amount of chlorides (distilled water, 1 g L-1 of NaCl and 30 g L-1 of NaCl) at a pH of 2.8 and 5.0. Interestingly, the presence of 1 g L-1 was able to slightly accelerate the pollutants removal at pH = 5, although the reverse was true at pH = 2.8. This is attributed to the pH-dependent interference of chlorides on photo-Fenton process, that is more acute in an acidic medium. As a matter of fact, the fastest reaction was obtained at pH = 3.5, in agreement with literature results. Monitoring of hydrogen peroxide consumption and iron in solution indicates that interference with chlorides is due to changes in the interaction between iron and the peroxide, rather than a scavenging effect of chloride for hydroxyl radicals. Experiments were also carried out with real seawater and showed higher inhibition than in the NaCl experiments, probably due to the effect of different dissolved salts present in natural water.

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