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March 14, 2026Clean Technologies0 citationsOpen Access

Graphene as a Soil Amendment for the Mitigation of Fungicide Kresoxim-Methyl Pollution

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KSKamyar ShirvanimoghaddamAKAgnieszka KrzyszczakISIlona Sadok

Key Points

  • This research aims to assess graphene's effectiveness in removing kresoxim-methyl from soil and its implications for environmental safety.
  • Employs synthesized and commercial graphenes as soil amendments
  • Measures adsorption capacity of graphene in soils
  • Analyzes adsorption kinetics and surface characteristics
  • 1 wt% graphene increased KM adsorption from 4.77 mg/g to 9.57 mg/g
  • Adsorption efficacy is higher with oxygen-rich graphene materials
  • Adsorption follows pseudo-second-order kinetics indicating surface heterogeneity

Abstract

The global demand for high-quality food is rising due to the increasing population, necessitating intensive farming practices that often involve the extensive use of pesticides, which can accumulate in soils and enter the food chain. This study explores the use of synthesized and commercial graphenes for the removal of kresoxim-methyl (KM), a common strobilurin fungicide, from soil. Adding only 1 wt% of graphene to soil enhanced its partitioning capacity from about 4.77 mg/g for unamended soil to 9.57 mg/g, indicating effective immobilization and reduced environmental risk. The adsorption efficacy was notably higher in materials rich in oxygen-containing functional groups and with a large surface area, highlighting the significance of surface characteristics and porosity. The adsorption followed pseudo-second-order kinetics, underscoring the importance of surface heterogeneity in KM adsorption.

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Cite This Study

Shirvanimoghaddam et al. (2026) studied this question.

synapsesocial.com/papers/69b4fc59b39f7826a300d2b3https://doi.org/10.3390/cleantechnol8020039
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