Effect of Synthesis Method and Reaction Conditions on Ciprofloxacin Adsorption from Aqueous Solutions by MoS_2 Materials

  • 馮 雪寧
    九州大学大学院総合理工学府水環境工学研究室
  • Omar Falyouna
    物質・材料研究機構エネルギー・環境材料研究センター先進蓄電池研究開発拠点
  • 万代 俊彦
    物質・材料研究機構エネルギー・環境材料研究センター先進蓄電池研究開発拠点 物質・材料研究機構エネルギー・環境材料研究センター電池材料分野
  • エルジャマル オサマ
    九州大学大学院総合理工学研究院水環境工学研究室

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説明

This study investigates the adsorption performance of MoS_2 nanomaterials under various conditions for the removal of ciprofloxacin (CIP) from water. Antibiotics are essential for treating infections, but their persistence in water and the resulting antibiotic resistance pose environmental risks. CIP is commonly found in water systems, necessitating effective removal methods. MoS_2, a material that has garnered significant attention in recent years, is widely used across various fields and shows promising characteristics as an adsorbent. In this experiment, the adsorption performance of commercial molybdenum disulfide was compared with hydrothermally synthesized MoS_2 nanomaterials, with structural analysis conducted using XRD and SEM. The results demonstrated that the synthesized MoS_2 nanomaterials, with smaller particle sizes, exhibited more stable and rapid CIP adsorption, fitting well with a pseudo-second-order kinetic model. These findings suggest that MoS_2 nanomaterials are effective and stable adsorbents for CIP removal from water.

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詳細情報 詳細情報について

  • CRID
    1390583790035389184
  • DOI
    10.5109/7323352
  • HANDLE
    2324/7323352
  • ISSN
    24341436
  • 本文言語コード
    en
  • 資料種別
    conference paper
  • データソース種別
    • JaLC
    • IRDB
    • Crossref
  • 抄録ライセンスフラグ
    使用可

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