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Mechanistic insight into the impact of interaction between goethite and humic acid on the photooxidation and photoreduction of bifenthrin. | LitMetric

AI Article Synopsis

  • Pyrethroid insecticides, like bifenthrin (BF), are harmful to the environment and people due to their buildup from use.
  • Researchers found that goethite (Gt) and humic acid (HA) can help break down BF when exposed to light, but the interaction between the two is complicated.
  • The study showed that while HA can lower the effectiveness of Gt in breaking down BF, it can also help Gt work better by making it absorb more light and react faster.

Article Abstract

Numerous application of pyrethroid insecticides has led to their accumulation in the environment, threatening ecological environment and human health. Its fate in the presence of iron-bearing minerals and natural organic matter under light irradiation is still unknown. We found that goethite (Gt) and humic acid (HA) could improve the photodegradation of bifenthrin (BF) in proper concentration under light irradiation. The interaction between Gt and HA may further enhance BF degradation. On one hand, the adsorption of HA on Gt may decrease the photocatalytic activity of HA through decreasing HA content in solution and sequestering the functional groups related with the production of reactive species. On the other hand, HA could improve the photocatalytic activity of Gt through extending light absorption, lowing of bandgap energy, hindering the recombination of photo-generated charges, and promoting the oxidation and reduction reaction on Gt surface. The increased oxygen vacancies on Gt surface along with the reduction of trivalent iron and the nucleophilic attack of hole to surface hydroxyl group contributed to the increasing photocatalytic activity of Gt. Electron paramagnetic resonance and quenching studies demonstrated that both oxidation species, such as hydroxyl radical (•OH) and singlet oxygen (O), and reducing species, such as hydrogen atoms (H•) and superoxide anion radical (O), contributed to BF degradation in UV-Gt-HA system. Mass spectrometry, ion chromatography, and toxicity assessment indicated that less toxic CHClFO (OH-BF), CHClFO (TFP), CHO (OH-MBP), CHO (MBP acid), CHO (OH-MBP acid), and chloride ions were the main degradation products. The production of OH-BF, MPB, and TFP acid through oxidation and the production of MPB and TFP via reduction were the two primary pathways of BF degradation.

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Source
http://dx.doi.org/10.1016/j.envres.2024.118779DOI Listing

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