<p><UnorderedList Mark="Bullet"> <ItemContent> <p>Montmorillonite/MgAl LDH (MMT/MgAl LDH) novel nanocomposite synthesis.</p> </ItemContent> <ItemContent> <p>The nanocomposite characteristics elucidation by XRD, FTIR, SEM, TGA, and BET analysis.</p> </ItemContent> <ItemContent> <p>Adsorption performance of the MMT/MgAl LDH nanocomposite for Pb²⁺, Cd²⁺, and Cu²⁺removal from water solutions.</p> </ItemContent> <ItemContent> <p>Optimizing the adsorption parameters to achieve a stable and efficient nanoadsorbent.</p> </ItemContent> <ItemContent> <p>Investigating the he adsorption kinetics and isotherms to understand the underlying mechanisms.</p> </ItemContent> <ItemContent> <p>Assessing the regeneration potential of the nanocomposite for practical applications.</p> </ItemContent> </UnorderedList></p>

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Efficient Removal of Heavy Metal Ions Using a Novel Nanocomposite of Montmorillonite/MgAl Double Layer Hydroxide: Synthesis, Characterization, and Adsorption Performance

  • Wesam Abd El-Fattah,
  • Ahlem Guesmi,
  • Naoufel Ben Hamadi,
  • Abdu Subaihi,
  • Ahmed Shahat,
  • Mahmoud F. Mubarak,
  • Hanan A. Ahmed

摘要

Montmorillonite/MgAl LDH (MMT/MgAl LDH) novel nanocomposite synthesis.

The nanocomposite characteristics elucidation by XRD, FTIR, SEM, TGA, and BET analysis.

Adsorption performance of the MMT/MgAl LDH nanocomposite for Pb²⁺, Cd²⁺, and Cu²⁺removal from water solutions.

Optimizing the adsorption parameters to achieve a stable and efficient nanoadsorbent.

Investigating the he adsorption kinetics and isotherms to understand the underlying mechanisms.

Assessing the regeneration potential of the nanocomposite for practical applications.